Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|6075
Gene name
Locationscaffold_515:717..8454
Strand-
Gene length (bp)7737
Transcript length (bp)7344
Coding sequence length (bp)7341
Protein length (aa) 2447

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00454 PI3_PI4_kinase Phosphatidylinositol 3- and 4-kinase 4.8E-48 2136 2376
PF02259 FAT FAT domain 2.0E-34 1560 1897
PF08064 UME UME (NUC010) domain 3.0E-33 913 1015
PF02260 FATC FATC domain 3.4E-15 2416 2447

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|Q9DE14|ATR_XENLA Serine/threonine-protein kinase atr OS=Xenopus laevis GN=atr PE=1 SV=2 1032 2447 0.0E+00
sp|Q02099|RAD3_SCHPO Protein kinase rad3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=rad3 PE=1 SV=2 556 2447 0.0E+00
sp|Q13535|ATR_HUMAN Serine/threonine-protein kinase ATR OS=Homo sapiens GN=ATR PE=1 SV=3 1029 2447 0.0E+00
sp|Q9JKK8|ATR_MOUSE Serine/threonine-protein kinase ATR OS=Mus musculus GN=Atr PE=1 SV=2 1029 2447 0.0E+00
sp|Q59LR2|ATR_CANAL Serine/threonine-protein kinase MEC1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=MEC1 PE=3 SV=1 630 2447 0.0E+00
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Swissprot ID Swissprot Description Start End E-value
sp|Q9DE14|ATR_XENLA Serine/threonine-protein kinase atr OS=Xenopus laevis GN=atr PE=1 SV=2 1032 2447 0.0E+00
sp|Q02099|RAD3_SCHPO Protein kinase rad3 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=rad3 PE=1 SV=2 556 2447 0.0E+00
sp|Q13535|ATR_HUMAN Serine/threonine-protein kinase ATR OS=Homo sapiens GN=ATR PE=1 SV=3 1029 2447 0.0E+00
sp|Q9JKK8|ATR_MOUSE Serine/threonine-protein kinase ATR OS=Mus musculus GN=Atr PE=1 SV=2 1029 2447 0.0E+00
sp|Q59LR2|ATR_CANAL Serine/threonine-protein kinase MEC1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=MEC1 PE=3 SV=1 630 2447 0.0E+00
sp|P38111|ATR_YEAST Serine/threonine-protein kinase MEC1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=MEC1 PE=1 SV=1 520 2446 2.0E-174
sp|Q6FX42|ATR_CANGA Serine/threonine-protein kinase MEC1 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=MEC1 PE=3 SV=1 518 2446 5.0E-169
sp|A2YH41|ATR_ORYSI Serine/threonine-protein kinase ATR OS=Oryza sativa subsp. indica GN=OsI_023634 PE=3 SV=2 922 2443 6.0E-164
sp|Q5Z987|ATR_ORYSJ Serine/threonine-protein kinase ATR OS=Oryza sativa subsp. japonica GN=Os06g0724700 PE=2 SV=1 922 2443 7.0E-164
sp|Q9FKS4|ATR_ARATH Serine/threonine-protein kinase ATR OS=Arabidopsis thaliana GN=ATR PE=2 SV=2 913 2447 1.0E-161
sp|Q6CT34|ATR_KLULA Serine/threonine-protein kinase MEC1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=MEC1 PE=3 SV=1 610 2446 7.0E-159
sp|Q75DB8|ATR_ASHGO Serine/threonine-protein kinase MEC1 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=MEC1 PE=3 SV=3 518 2446 3.0E-149
sp|Q9VXG8|ATR_DROME Serine/threonine-protein kinase ATR OS=Drosophila melanogaster GN=mei-41 PE=1 SV=2 1139 2447 2.0E-145
sp|Q54ER4|ATR1_DICDI Probable serine/threonine-protein kinase atr1 OS=Dictyostelium discoideum GN=atr1 PE=3 SV=1 1468 2444 5.0E-132
sp|Q9Y7K2|TOR2_SCHPO Phosphatidylinositol 3-kinase tor2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tor2 PE=1 SV=2 1428 2446 4.0E-70
sp|Q8SSE7|ATR_ENCCU Probable serine/threonine-protein kinase MEC1 homolog OS=Encephalitozoon cuniculi (strain GB-M1) GN=MEC1 PE=3 SV=2 1874 2447 9.0E-68
sp|Q13315|ATM_HUMAN Serine-protein kinase ATM OS=Homo sapiens GN=ATM PE=1 SV=4 1449 2443 1.0E-62
sp|Q9M3G7|ATM_ARATH Serine/threonine-protein kinase ATM OS=Arabidopsis thaliana GN=ATM PE=2 SV=1 1384 2447 2.0E-61
sp|Q6PQD5|ATM_PIG Serine-protein kinase ATM OS=Sus scrofa GN=ATM PE=3 SV=2 1449 2443 2.0E-61
sp|Q0DJS1|TOR_ORYSJ Serine/threonine-protein kinase TOR OS=Oryza sativa subsp. japonica GN=TOR PE=2 SV=3 1419 2375 4.0E-59
sp|Q95Q95|TOR_CAEEL Target of rapamycin homolog OS=Caenorhabditis elegans GN=let-363 PE=2 SV=3 2099 2446 3.0E-57
sp|Q62388|ATM_MOUSE Serine-protein kinase ATM OS=Mus musculus GN=Atm PE=1 SV=2 1449 2443 8.0E-57
sp|P42346|MTOR_RAT Serine/threonine-protein kinase mTOR OS=Rattus norvegicus GN=Mtor PE=1 SV=1 2114 2446 3.0E-56
sp|Q9JLN9|MTOR_MOUSE Serine/threonine-protein kinase mTOR OS=Mus musculus GN=Mtor PE=1 SV=2 2114 2446 4.0E-56
sp|P42345|MTOR_HUMAN Serine/threonine-protein kinase mTOR OS=Homo sapiens GN=MTOR PE=1 SV=1 2114 2446 6.0E-56
sp|Q5EAK6|ATM_DROME Serine/threonine-protein kinase ATM OS=Drosophila melanogaster GN=tefu PE=2 SV=1 1849 2447 2.0E-55
sp|Q5BHE2|ATM_EMENI Serine/threonine-protein kinase tel1 OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=tel1 PE=3 SV=1 1929 2446 7.0E-55
sp|Q9VK45|TOR_DROME Target of rapamycin OS=Drosophila melanogaster GN=Tor PE=1 SV=1 2114 2446 9.0E-55
sp|Q7RZT9|ATM_NEUCR Serine/threonine-protein kinase tel1 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=mus-21 PE=3 SV=2 1423 2446 2.0E-54
sp|Q6CAD2|ATM_YARLI Serine/threonine-protein kinase TEL1 OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=TEL1 PE=3 SV=1 1933 2446 4.0E-54
sp|O74630|ATM_SCHPO Serine/threonine-protein kinase tel1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tel1 PE=1 SV=1 1717 2446 1.0E-53
sp|Q4WVM7|ATM_ASPFU Serine/threonine-protein kinase tel1 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=tel1 PE=3 SV=2 1874 2446 2.0E-53
sp|O14356|TOR1_SCHPO Phosphatidylinositol 3-kinase tor1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tor1 PE=1 SV=1 2099 2446 3.0E-52
sp|Q2U639|ATM_ASPOR Serine/threonine-protein kinase tel1 OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=tel1 PE=3 SV=1 1874 2446 4.0E-51
sp|P0CP61|ATM_CRYNB Serine/threonine-protein kinase TEL1 OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) GN=TEL1 PE=3 SV=1 1892 2447 5.0E-51
sp|P0CP60|ATM_CRYNJ Serine/threonine-protein kinase TEL1 OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=TEL1 PE=3 SV=1 1892 2447 6.0E-51
sp|Q4IB89|ATM_GIBZE Serine/threonine-protein kinase TEL1 OS=Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) GN=TEL1 PE=3 SV=1 1868 2446 5.0E-50
sp|P35169|TOR1_YEAST Serine/threonine-protein kinase TOR1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TOR1 PE=1 SV=3 2114 2446 8.0E-50
sp|P32600|TOR2_YEAST Serine/threonine-protein kinase TOR2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TOR2 PE=1 SV=3 2100 2446 3.0E-49
sp|Q6BV76|ATM_DEBHA Serine/threonine-protein kinase TEL1 OS=Debaryomyces hansenii (strain ATCC 36239 / CBS 767 / JCM 1990 / NBRC 0083 / IGC 2968) GN=TEL1 PE=3 SV=3 1931 2446 5.0E-49
sp|Q751J3|ATM_ASHGO Serine/threonine-protein kinase TEL1 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=TEL1 PE=3 SV=1 1843 2446 3.0E-48
sp|Q9FR53|TOR_ARATH Serine/threonine-protein kinase TOR OS=Arabidopsis thaliana GN=TOR PE=1 SV=1 2102 2375 1.0E-47
sp|P38110|ATM_YEAST Serine/threonine-protein kinase TEL1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TEL1 PE=1 SV=3 1931 2446 2.0E-45
sp|Q6CP76|ATM_KLULA Serine/threonine-protein kinase TEL1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=TEL1 PE=3 SV=1 1929 2446 5.0E-45
sp|Q5ABX0|ATM_CANAL Serine/threonine-protein kinase TEL1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=TEL1 PE=3 SV=1 2116 2446 5.0E-45
sp|Q86C65|TOR_DICDI Target of rapamycin OS=Dictyostelium discoideum GN=tor PE=1 SV=1 2099 2375 2.0E-44
sp|Q8BKX6|SMG1_MOUSE Serine/threonine-protein kinase SMG1 OS=Mus musculus GN=Smg1 PE=1 SV=3 2099 2375 5.0E-43
sp|Q96Q15|SMG1_HUMAN Serine/threonine-protein kinase SMG1 OS=Homo sapiens GN=SMG1 PE=1 SV=3 2099 2375 6.0E-43
sp|Q6FRZ9|ATM_CANGA Serine/threonine-protein kinase TEL1 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=TEL1 PE=3 SV=1 2082 2446 2.0E-41
sp|Q70PP2|SMG1_DROME Serine/threonine-protein kinase Smg1 OS=Drosophila melanogaster GN=nonC PE=1 SV=2 2101 2375 3.0E-41
sp|Q22258|ATR_CAEEL Serine/threonine-protein kinase ATR OS=Caenorhabditis elegans GN=atl-1 PE=2 SV=2 1687 2443 2.0E-39
sp|Q61CW2|SMG1_CAEBR Serine/threonine-protein kinase smg-1 OS=Caenorhabditis briggsae GN=smg-1 PE=3 SV=3 2098 2399 8.0E-37
sp|O01510|SMG1_CAEEL Serine/threonine-protein kinase smg-1 OS=Caenorhabditis elegans GN=smg-1 PE=1 SV=3 2098 2393 1.0E-35
sp|Q8QGX4|PRKDC_CHICK DNA-dependent protein kinase catalytic subunit OS=Gallus gallus GN=PRKDC PE=2 SV=1 2103 2447 6.0E-32
sp|Q9DEI1|PRKDC_XENLA DNA-dependent protein kinase catalytic subunit OS=Xenopus laevis GN=prkdc PE=2 SV=1 2103 2447 1.0E-31
sp|Q8WN22|PRKDC_CANLF DNA-dependent protein kinase catalytic subunit OS=Canis lupus familiaris GN=PRKDC PE=2 SV=1 2108 2447 8.0E-31
sp|Q54UC0|PRKDC_DICDI DNA-dependent protein kinase catalytic subunit OS=Dictyostelium discoideum GN=dnapkcs PE=3 SV=2 2103 2378 2.0E-29
sp|Q9N3Q4|ATM_CAEEL Serine/threonine-protein kinase ATM OS=Caenorhabditis elegans GN=atm-1 PE=3 SV=3 2085 2447 7.0E-29
sp|P97313|PRKDC_MOUSE DNA-dependent protein kinase catalytic subunit OS=Mus musculus GN=Prkdc PE=1 SV=3 2094 2447 2.0E-28
sp|P78527|PRKDC_HUMAN DNA-dependent protein kinase catalytic subunit OS=Homo sapiens GN=PRKDC PE=1 SV=3 2108 2447 4.0E-28
sp|Q553E9|SMG1_DICDI Probable serine/threonine-protein kinase smg1 OS=Dictyostelium discoideum GN=smg1 PE=3 SV=1 2215 2375 5.0E-25
sp|Q553E9|SMG1_DICDI Probable serine/threonine-protein kinase smg1 OS=Dictyostelium discoideum GN=smg1 PE=3 SV=1 2100 2211 6.0E-12
sp|Q8I8U7|TRA1_DROME Transcription-associated protein 1 OS=Drosophila melanogaster GN=Nipped-A PE=1 SV=3 2122 2447 1.0E-11
sp|P48736|PK3CG_HUMAN Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform OS=Homo sapiens GN=PIK3CG PE=1 SV=3 2109 2338 8.0E-11
sp|Q9HFE8|TRA1_SCHPO Transcription-associated protein 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tra1 PE=3 SV=1 2088 2447 1.0E-10
sp|O02697|PK3CG_PIG Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform OS=Sus scrofa GN=PIK3CG PE=1 SV=2 2109 2338 2.0E-10
sp|Q9JHG7|PK3CG_MOUSE Phosphatidylinositol 4,5-bisphosphate 3-kinase catalytic subunit gamma isoform OS=Mus musculus GN=Pik3cg PE=1 SV=2 2109 2338 2.0E-10
sp|Q9Y4A5|TRRAP_HUMAN Transformation/transcription domain-associated protein OS=Homo sapiens GN=TRRAP PE=1 SV=3 2122 2447 2.0E-10
sp|Q9FR53|TOR_ARATH Serine/threonine-protein kinase TOR OS=Arabidopsis thaliana GN=TOR PE=1 SV=1 1419 2029 5.0E-10
sp|Q80YV3|TRRAP_MOUSE Transformation/transcription domain-associated protein OS=Mus musculus GN=Trrap PE=1 SV=2 2122 2447 5.0E-10
sp|Q9VK45|TOR_DROME Target of rapamycin OS=Drosophila melanogaster GN=Tor PE=1 SV=1 1417 2012 2.0E-09
sp|P42345|MTOR_HUMAN Serine/threonine-protein kinase mTOR OS=Homo sapiens GN=MTOR PE=1 SV=1 1423 1718 2.0E-08
sp|P42346|MTOR_RAT Serine/threonine-protein kinase mTOR OS=Rattus norvegicus GN=Mtor PE=1 SV=1 1423 1718 2.0E-08
sp|Q9JLN9|MTOR_MOUSE Serine/threonine-protein kinase mTOR OS=Mus musculus GN=Mtor PE=1 SV=2 1423 1780 4.0E-08
sp|Q94125|AGE1_CAEEL Phosphatidylinositol 3-kinase age-1 OS=Caenorhabditis elegans GN=age-1 PE=1 SV=6 2106 2334 7.0E-08
sp|P54677|PI4K_DICDI Phosphatidylinositol 4-kinase OS=Dictyostelium discoideum GN=pikD PE=3 SV=3 2132 2374 1.0E-07
sp|P35169|TOR1_YEAST Serine/threonine-protein kinase TOR1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=TOR1 PE=1 SV=3 1419 1785 2.0E-07
sp|Q10064|YAMB_SCHPO Uncharacterized PI3/PI4-kinase family protein C1F5.11c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC1F5.11c PE=3 SV=1 2096 2447 2.0E-07
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GO

GO Term Description Terminal node
GO:0004674 protein serine/threonine kinase activity Yes
GO:0005515 protein binding Yes
GO:0004672 protein kinase activity No
GO:0016772 transferase activity, transferring phosphorus-containing groups No
GO:0005488 binding No
GO:0016301 kinase activity No
GO:0140096 catalytic activity, acting on a protein No
GO:0003824 catalytic activity No
GO:0016740 transferase activity No
GO:0003674 molecular_function No
GO:0016773 phosphotransferase activity, alcohol group as acceptor No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 15 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

Analysis 1: Expression analysis during behavioral modification. Published in De Bekker et al., 2017.

Click here for more information

Sequences

Type of sequenceSequence
Locus Download genbank file of locus
The gene with 5 kb flanks (if sufficient flanking sequence is available). For use in cloning design programs. NOTE: features (genes or exons) that are only partially contained within the sequence are completely excluded.
Protein >Ophio5|6075
MADSIHGRAADRADDVPPSTLAAQLVENISTSAKSSRSDNSSEVWRLYAIIQREKGDARRKTKAEEVDQNHMLIY
VLCLHSLEGIKLDDPFVDRRHIRNEFLKAIKFFIKVINETPTVLKVSEHGQFYRGREPLWVWLLPRLLRFLGHAD
CLDLEPSIVGFLQYLLLLVSRRSHLWAVSASLSLYLRACLTGLLDHLQDPTLTSSNSKTPIHLFLPPLFALNQIL
DETRQEHSQQSTYVIGSVHQALRQAISLSRVLSYPFFCQQPVVFNVPFLSQNGPWMMDSWLDLRHAQRKWHVSAH
SSPMSLIETALNVAKPSAETSDSMQLFPSKANALLVLLCAEMIVCPDDLVRQDSTGEQSRLTYCKAIMAISEASI
RSYTIGRLAASKLVQELTLLSSQHPAIGENTDVWRCTRLLRHVIDVPAHQVLDESMHPAKFENQELRECVERLNL
TFDPPSQIVSGTKRRKISNTDPRTCLLQAIYGALQVKEAEDDDDTVTFEQLFLSGFEGASEDDRCLAIELLSRMC
CVADESISMPGSETRCAICEEEGDPGTVTASSFKSEARLVFCKLVRLPKFLESRRPRIVAMIALRKFVLHCEESG
FLDLERAGFGDVAVPGPGQWCLQSLNSALRELRVAAGRTLPTFIPPSPTPALDEDLLHRNRKCSIALLKKTSDQH
QPRHVETHIMAWAQIGRVATEDELILVLIQLLEYLGSSNGLVSAFAFNELLNLAESRSITPRRLFEPFWKNLAYM
ATKNMVQRPQQSRAIAELLQISVNELLLLIQSHALPWLVLDRQTDVIQKIAEARQEKEPWRPLMDSANLAATLAL
LLVQDADNMEHFTQSRLNDISPHFHSLTLLDLFQAEPVLIALELLRSAAGADPARQQVVHKALHLMATTILRSNK
DAKLKKSNVIGRFLQSHVLGLMARLTDVINDSVSTHPPVLEQRSCIRTLEELIKVCKGYARIARPQMSACLLSAI
AQDALREASFSCWVAMLTNLDEEDVEMLIEPTFFIVNRYWTAFNRCSGRAAQEMLGFLLDKHAPIVTAYIHKIPS
LSHIAELADVESRLSALRPSLATDEALRAFADRVAHDNSGVVHQALTELVPYLRDNQSALYTSAVSQRPDSAVTS
VLRALLDCACKYNGVQSDISRLCVESVGLIGCLDSNRIESVREHRTIVVLDNFEGVGEATDFGLFLLQEVLVPSF
LSATDTKLQGFLSFAMQELLIRCDIKAACAMQNTGMMGGNDVYRKWIALPEYTREIVTPFLTSRYMVAPMAPVTV
EYPIFHLGKPYGNWLRSFVVDLLRNGQNLHADTLFEPLTRVIRVKDLSTAEFLLPYLVLHVLLGPRSSEEDRERV
VGELLVVLRYNPAETASYLEKEEMKKFCHAVFRVLDYAMRWIQAKRAKGRLSSADKENLSRIQAILDGIPAELIA
QRAIDCNEYARALFHLEQDAQKLEQSKREPGDRLQLLERLQHIYANIDEPDGLEGISAHLPALDIKQQILSHKKA
GRWSAAQTWYEMQLAEKPDNVDLQLELLQCFKQGGQHDALLNYVESLRTETSHENNKVMPFAVEAAWVTGRWESL
AKFTSRFHGDVVQDFNMSIATLFDGLHKKCSSEFFSKTVGSVREKIASEMTASATMSLQAAHELLLRCHVLTDLE
IIVSRKPRDDEERRTTMALLDGRLDVIGAYFNDKQYLLGVRRAAMELARPSYTDAEVSSLWVASARLARKTDSLH
RSFNAVLQASRLGDGAATIENAKLLWRDGHHRQAIQMLQGAIERNKFMTQTGMASSVSTAAPTKLTSPQKLVAAR
AQLLLARWLDAAGQSHATALREKYQQPPRTHSAYEKGHFYLGRHYKKILESERPLKVEDQSDNYVIGEITRLVIE
NYIRSLNAGTKYLYQTLPRILTLWLDMGAQVDKPPEGKASLSRELHRRRVEQLNLLHNFLDKYIHRIPAYVFYTA
LPQIVARIAHPNVSVFERLTRIIVKVVESYPRQALWSLIGIMTSKQMTERKARGTQILQALRTVSRKVDGTSYDL
KQLLRAGEKLADQLLVACHNGEFPGNKSVQASLSRDLRFQHKCTPCPLVVPVESSLNATLPAVSEQVRKHKAFSR
DVVTMDCFLDEVLVLSSLAKPRRLTARGSDGKCYMLLIKPKDDLRTDQRLMEFNGIINRALKHDAESSRRQLYIR
TYAVVPLNEECGIIEWVPGIRTMRDILLNLYGSRRIQPDYAALKSLMEEASTSEAKLRIFTDEVLGRFPAILPVW
FMQQFPSPSAWFTARLRYTRTCAVMSMVGTMLGLGDRHGENVTLEEDNGGVFHVDFNCLFDKGLTFQKPERVPFR
LTHNMVAAMGVYGYEGPFRKSSELTLSMLRQQEETLMAILEAFIYDPTLDLQKEKRNGKRGDSGGVKLQPQSVVD
SIRRKVRGLLPNESIPLSVEGQVEELIKQAVDARNLTAMYIGWCPFL
Coding >Ophio5|6075
ATGGCTGACAGCATACACGGCAGGGCGGCCGATAGGGCTGATGATGTGCCGCCGTCAACTCTAGCCGCGCAGCTT
GTCGAGAACATCTCGACCTCGGCCAAGTCCTCCCGATCGGACAACAGCAGCGAAGTCTGGAGATTATACGCCATC
ATCCAGCGCGAAAAGGGCGATGCCCGCAGAAAGACCAAAGCTGAAGAAGTCGACCAGAATCACATGCTCATCTAT
GTGCTCTGCCTCCATTCCCTCGAGGGCATCAAGCTGGACGATCCCTTCGTCGACCGTCGGCACATCCGCAACGAG
TTTTTGAAAGCCATCAAATTCTTTATAAAAGTCATTAATGAGACGCCCACCGTTCTGAAAGTCTCCGAACATGGC
CAATTCTACAGAGGACGAGAGCCTCTTTGGGTCTGGCTGCTTCCGCGCCTCCTCCGATTTCTCGGTCACGCCGAC
TGTCTTGACCTAGAGCCTTCCATCGTGGGATTCTTGCAGTATCTTTTATTATTGGTGTCTCGCAGAAGCCATCTT
TGGGCCGTGTCTGCTTCGCTGAGTCTCTATCTGCGAGCATGCCTGACAGGATTGTTGGACCACCTTCAGGACCCA
ACATTGACATCGTCCAACTCCAAAACTCCTATCCATCTCTTTCTTCCGCCCCTTTTCGCCTTGAACCAGATTCTC
GACGAGACCCGGCAGGAGCACAGCCAGCAGTCCACATATGTCATCGGCTCTGTTCATCAAGCCCTGCGACAGGCC
ATCAGTCTGTCCAGAGTTCTTTCCTATCCGTTCTTCTGTCAACAGCCGGTTGTCTTCAATGTCCCTTTTCTGTCG
CAAAACGGGCCATGGATGATGGACTCGTGGCTCGACCTCAGACACGCGCAGAGAAAATGGCACGTCAGCGCGCAT
AGCTCGCCCATGTCTCTGATCGAGACGGCACTCAACGTTGCCAAGCCATCGGCAGAGACTTCTGACTCTATGCAG
CTCTTTCCGAGCAAGGCAAACGCGTTACTAGTTCTACTTTGTGCCGAGATGATCGTGTGCCCCGATGATCTGGTC
CGTCAGGACTCGACCGGCGAGCAGTCTCGGCTAACCTACTGCAAGGCCATCATGGCCATATCAGAGGCGTCGATC
CGGTCTTATACGATTGGGAGGCTGGCCGCTTCCAAGCTCGTGCAGGAGCTGACTTTGCTTTCGTCCCAGCATCCG
GCGATTGGGGAAAATACTGATGTCTGGAGATGTACCAGACTGCTCCGACATGTCATCGACGTACCCGCTCACCAG
GTGCTGGATGAGTCGATGCATCCTGCCAAGTTTGAGAACCAGGAACTGCGCGAATGCGTCGAACGACTGAATCTC
ACTTTTGATCCACCCAGTCAGATCGTCTCTGGCACAAAGAGAAGGAAAATTTCCAATACAGATCCGCGAACTTGT
CTTTTGCAGGCCATCTATGGAGCCCTTCAGGTCAAGGAGGCTGAAGATGATGACGATACCGTCACGTTCGAGCAA
TTATTCCTAAGCGGTTTCGAGGGAGCTTCCGAGGATGATCGATGTCTTGCAATCGAGCTCCTATCTAGAATGTGC
TGCGTGGCTGACGAGTCCATCTCGATGCCGGGCTCCGAGACGAGATGTGCCATCTGCGAGGAAGAAGGTGACCCG
GGCACAGTAACGGCCTCGAGCTTCAAAAGCGAGGCTCGATTGGTCTTTTGCAAGCTTGTTCGACTGCCAAAGTTC
CTCGAGTCTCGGCGGCCTAGAATCGTTGCTATGATAGCGCTGAGGAAATTCGTGCTTCACTGTGAAGAGAGTGGC
TTCTTAGATCTGGAGAGGGCGGGATTTGGTGATGTCGCCGTACCAGGACCCGGACAATGGTGCCTCCAGTCGCTC
AACAGCGCCCTGCGGGAGCTGCGAGTGGCTGCCGGGAGAACGCTGCCTACTTTCATCCCTCCGAGTCCCACCCCC
GCTCTGGATGAGGACTTGCTGCACCGAAACCGCAAATGCTCCATTGCGTTGCTCAAGAAGACGTCGGACCAGCAT
CAGCCCCGTCATGTTGAGACTCACATCATGGCCTGGGCGCAAATAGGCCGGGTGGCAACCGAGGACGAGCTTATT
CTGGTTCTCATACAGCTGCTAGAGTATCTGGGCAGCAGCAACGGCCTAGTCTCGGCCTTTGCGTTCAACGAGCTG
CTGAATCTCGCCGAGTCTCGTTCGATAACGCCGAGGCGTCTGTTTGAGCCGTTTTGGAAGAATTTGGCCTACATG
GCTACCAAGAACATGGTCCAGCGGCCGCAGCAGAGCCGGGCAATCGCAGAGCTTCTTCAAATCTCCGTCAACGAG
CTTCTCCTCTTGATACAGTCGCACGCACTGCCGTGGCTCGTGCTCGACAGACAGACAGATGTCATCCAGAAGATA
GCAGAGGCCCGGCAAGAAAAGGAGCCCTGGCGTCCGCTCATGGACAGCGCCAACCTGGCTGCTACCCTTGCCTTG
CTGCTTGTGCAGGACGCAGACAACATGGAGCATTTCACTCAATCCCGGCTGAACGACATCTCTCCACACTTTCAC
TCGCTCACCCTCCTGGATCTCTTCCAAGCTGAACCGGTTCTGATTGCCCTGGAGCTCCTGAGATCGGCGGCCGGT
GCCGACCCGGCGCGACAGCAAGTGGTCCACAAGGCTTTGCATCTCATGGCAACGACCATCCTGAGAAGCAACAAG
GACGCAAAGCTCAAGAAGAGCAATGTCATCGGCCGCTTCCTTCAGTCTCACGTCCTCGGTCTCATGGCCCGGCTG
ACCGACGTCATCAACGACTCCGTGTCGACGCATCCACCGGTACTGGAGCAGCGTAGCTGCATCCGCACGTTGGAG
GAGCTGATCAAAGTCTGCAAGGGCTATGCGAGAATTGCGCGGCCGCAGATGTCTGCGTGCCTGCTGTCAGCCATC
GCCCAAGACGCCCTGCGTGAAGCGAGCTTCTCGTGCTGGGTAGCGATGCTCACCAATCTCGACGAAGAGGATGTC
GAGATGCTCATTGAACCAACCTTTTTCATCGTCAACCGGTACTGGACCGCGTTCAATCGATGCTCTGGCCGCGCT
GCACAGGAGATGCTCGGCTTCCTACTGGATAAGCACGCCCCGATCGTCACGGCCTATATACATAAAATCCCTTCG
CTGTCGCACATTGCCGAGTTGGCCGATGTTGAGTCGAGACTGTCGGCGCTGCGGCCCTCGTTGGCGACGGACGAG
GCACTGCGCGCTTTTGCAGACAGAGTTGCGCACGACAACTCCGGAGTCGTCCATCAAGCGTTGACCGAGCTTGTG
CCGTATCTCAGAGACAATCAGAGCGCGCTGTACACGTCCGCCGTCAGCCAGCGTCCGGACAGTGCCGTCACATCT
GTGCTCAGAGCGCTGTTGGACTGTGCCTGTAAATACAACGGCGTCCAGTCAGACATATCACGGCTCTGCGTCGAG
AGCGTGGGCCTTATTGGTTGTCTGGATTCGAATCGAATCGAGAGTGTGAGGGAACACCGCACGATCGTCGTCTTG
GACAATTTCGAAGGGGTGGGAGAGGCAACCGACTTTGGCCTATTCCTTCTACAGGAGGTCCTGGTCCCATCTTTC
CTCTCAGCAACCGATACCAAGCTGCAGGGCTTCCTCTCGTTTGCGATGCAGGAGCTCCTCATTCGGTGCGACATC
AAAGCCGCCTGTGCGATGCAGAACACAGGCATGATGGGCGGCAACGATGTCTACCGCAAATGGATTGCCCTGCCC
GAGTATACGCGGGAAATCGTCACACCGTTTCTGACTTCACGGTACATGGTGGCTCCCATGGCGCCGGTGACGGTC
GAGTATCCAATCTTTCACTTGGGCAAGCCGTACGGCAACTGGCTCCGGTCATTTGTCGTGGATCTCCTCCGGAAC
GGCCAGAACCTGCACGCGGATACACTGTTTGAGCCGCTCACTCGCGTCATCCGCGTCAAGGATCTGTCCACGGCG
GAATTTTTGCTTCCCTACCTGGTACTGCACGTACTTCTCGGGCCCCGTAGCTCTGAAGAAGACAGAGAGCGCGTG
GTGGGCGAGCTTTTGGTTGTCTTGCGATACAACCCGGCAGAGACGGCATCTTACTTGGAAAAGGAGGAGATGAAG
AAGTTTTGTCATGCTGTTTTTCGGGTCCTCGACTACGCCATGAGATGGATCCAGGCGAAGCGGGCAAAGGGCCGC
CTGAGCTCCGCCGATAAAGAAAACCTGTCGAGAATTCAGGCGATACTGGATGGGATTCCTGCCGAGCTCATTGCT
CAACGAGCCATCGATTGCAACGAATACGCCCGAGCGCTATTCCATCTGGAACAAGACGCGCAGAAGCTGGAGCAA
AGCAAGCGAGAGCCCGGCGATCGACTCCAGCTGCTGGAGAGACTGCAGCACATCTATGCGAACATTGACGAGCCG
GACGGACTGGAAGGGATTTCTGCCCACCTACCGGCCCTCGACATCAAACAGCAGATATTGAGTCACAAGAAAGCC
GGAAGGTGGTCGGCGGCACAGACGTGGTATGAGATGCAGCTGGCCGAGAAGCCAGACAACGTCGACCTGCAACTT
GAGCTTTTGCAATGTTTCAAGCAGGGAGGGCAGCACGATGCGCTCCTCAACTACGTCGAAAGTCTGCGGACGGAG
ACCTCTCACGAGAACAACAAAGTGATGCCGTTTGCCGTCGAAGCTGCTTGGGTCACGGGTCGGTGGGAAAGCCTG
GCCAAGTTTACGAGCCGGTTCCACGGAGACGTGGTACAGGACTTTAATATGTCGATTGCGACCCTGTTTGACGGC
CTGCACAAGAAGTGCTCGTCCGAGTTCTTCTCAAAGACTGTTGGGAGCGTGCGGGAAAAGATTGCTTCGGAGATG
ACGGCGTCGGCCACCATGTCCCTCCAAGCGGCTCATGAACTGCTTCTGAGGTGCCACGTCCTCACAGACTTGGAG
ATTATCGTCAGCCGCAAGCCGAGAGATGACGAGGAACGCAGGACGACGATGGCCCTACTAGACGGTCGTCTGGAC
GTCATCGGTGCTTACTTCAATGATAAGCAATACCTCCTCGGCGTCAGGCGGGCAGCCATGGAATTGGCCAGGCCG
AGCTATACCGACGCAGAGGTCTCTTCGCTTTGGGTGGCGAGCGCTCGACTTGCCAGGAAGACGGACTCTCTGCAT
CGATCTTTCAACGCGGTCCTCCAAGCCTCTCGACTCGGAGACGGCGCAGCGACCATCGAAAACGCAAAGCTCCTC
TGGAGAGATGGGCATCACAGGCAGGCCATCCAGATGCTTCAAGGCGCCATCGAGCGGAACAAGTTCATGACGCAG
ACGGGGATGGCATCTTCGGTGAGCACGGCGGCGCCTACCAAGTTGACGTCGCCTCAGAAGCTCGTGGCCGCCAGG
GCGCAGCTGCTCCTCGCCAGGTGGCTCGATGCCGCTGGACAGTCGCATGCCACGGCTCTGCGGGAGAAATACCAA
CAGCCTCCCAGGACTCATTCGGCCTACGAGAAGGGCCACTTTTACCTGGGACGACACTACAAGAAGATTCTGGAG
TCGGAGCGGCCGCTCAAGGTAGAGGACCAGAGCGACAACTACGTGATTGGCGAGATCACCAGGCTCGTCATCGAG
AACTACATCCGATCTCTGAACGCGGGGACCAAGTATCTCTACCAGACACTGCCCAGGATCCTGACGCTCTGGCTC
GACATGGGGGCGCAAGTCGACAAGCCTCCCGAAGGCAAGGCGTCCCTTTCCCGAGAGCTTCACCGGAGACGGGTC
GAGCAGCTCAACCTACTGCACAACTTCCTGGACAAGTACATCCATCGCATCCCGGCCTACGTTTTCTACACGGCG
CTGCCGCAGATTGTGGCCCGGATCGCTCATCCCAACGTGAGCGTCTTTGAGCGGCTGACGCGCATCATCGTCAAG
GTGGTGGAGTCGTATCCGCGGCAGGCCCTCTGGAGTCTCATCGGCATCATGACGTCGAAGCAGATGACGGAGCGC
AAAGCCAGGGGCACGCAGATCTTGCAGGCGCTGAGGACGGTGTCGAGAAAGGTGGACGGGACGTCGTACGACCTG
AAGCAGCTCCTCAGGGCCGGCGAGAAGCTGGCGGATCAGCTCTTGGTGGCCTGCCACAACGGCGAGTTCCCCGGC
AACAAGTCGGTACAGGCCAGCCTCTCGCGAGACTTGCGATTCCAGCACAAGTGCACCCCCTGCCCACTGGTGGTG
CCGGTGGAGAGCTCGCTCAACGCGACGCTGCCGGCGGTGTCGGAGCAGGTGCGGAAGCACAAGGCGTTCTCGCGA
GACGTGGTGACGATGGACTGCTTCCTGGACGAGGTGCTCGTGCTGAGTTCGCTGGCGAAGCCGCGACGTCTGACG
GCTCGAGGGAGCGACGGGAAGTGTTACATGCTGCTGATCAAGCCCAAGGACGACCTGCGGACGGACCAGCGGCTG
ATGGAGTTTAACGGCATCATCAATCGGGCTCTGAAACACGACGCCGAGTCGAGCCGCAGACAGCTGTACATCCGC
ACGTACGCCGTGGTGCCGCTCAACGAGGAGTGCGGCATCATCGAGTGGGTTCCGGGCATCAGGACGATGCGGGAC
ATTCTGCTGAACCTGTACGGATCGCGCCGGATTCAGCCCGACTACGCGGCGCTCAAGAGCCTGATGGAGGAGGCG
TCGACTTCGGAAGCCAAGCTACGGATCTTCACAGACGAAGTCCTGGGACGCTTCCCGGCCATTCTTCCGGTGTGG
TTCATGCAGCAGTTCCCCAGCCCGTCGGCGTGGTTCACGGCGCGGCTGCGATACACGCGGACGTGCGCCGTCATG
TCCATGGTCGGCACCATGCTCGGACTCGGAGACCGACACGGGGAGAACGTGACGCTGGAGGAAGACAACGGCGGC
GTGTTCCACGTCGACTTCAACTGCCTGTTCGACAAGGGCCTGACGTTCCAGAAGCCGGAGCGGGTGCCTTTCCGA
CTGACGCACAACATGGTGGCGGCCATGGGCGTGTACGGCTACGAGGGCCCGTTCCGCAAGTCTTCGGAGCTGACG
CTGAGCATGCTGCGGCAGCAGGAGGAGACGCTGATGGCCATCCTCGAGGCCTTCATCTACGACCCGACGCTGGAC
CTTCAGAAGGAGAAGCGCAACGGCAAGAGAGGCGACTCGGGGGGGGTCAAGCTGCAGCCGCAGAGCGTGGTGGAC
AGCATCCGGAGAAAAGTGCGGGGCTTGCTGCCGAATGAAAGTATCCCGTTGAGCGTCGAGGGACAGGTCGAGGAG
CTGATCAAGCAGGCGGTCGATGCGCGGAATTTGACGGCCATGTATATCGGATGGTGCCCGTTTTTG
Transcript >Ophio5|6075
ATGGCTGACAGCATACACGGCAGGGCGGCCGATAGGGCTGATGATGTGCCGCCGTCAACTCTAGCCGCGCAGCTT
GTCGAGAACATCTCGACCTCGGCCAAGTCCTCCCGATCGGACAACAGCAGCGAAGTCTGGAGATTATACGCCATC
ATCCAGCGCGAAAAGGGCGATGCCCGCAGAAAGACCAAAGCTGAAGAAGTCGACCAGAATCACATGCTCATCTAT
GTGCTCTGCCTCCATTCCCTCGAGGGCATCAAGCTGGACGATCCCTTCGTCGACCGTCGGCACATCCGCAACGAG
TTTTTGAAAGCCATCAAATTCTTTATAAAAGTCATTAATGAGACGCCCACCGTTCTGAAAGTCTCCGAACATGGC
CAATTCTACAGAGGACGAGAGCCTCTTTGGGTCTGGCTGCTTCCGCGCCTCCTCCGATTTCTCGGTCACGCCGAC
TGTCTTGACCTAGAGCCTTCCATCGTGGGATTCTTGCAGTATCTTTTATTATTGGTGTCTCGCAGAAGCCATCTT
TGGGCCGTGTCTGCTTCGCTGAGTCTCTATCTGCGAGCATGCCTGACAGGATTGTTGGACCACCTTCAGGACCCA
ACATTGACATCGTCCAACTCCAAAACTCCTATCCATCTCTTTCTTCCGCCCCTTTTCGCCTTGAACCAGATTCTC
GACGAGACCCGGCAGGAGCACAGCCAGCAGTCCACATATGTCATCGGCTCTGTTCATCAAGCCCTGCGACAGGCC
ATCAGTCTGTCCAGAGTTCTTTCCTATCCGTTCTTCTGTCAACAGCCGGTTGTCTTCAATGTCCCTTTTCTGTCG
CAAAACGGGCCATGGATGATGGACTCGTGGCTCGACCTCAGACACGCGCAGAGAAAATGGCACGTCAGCGCGCAT
AGCTCGCCCATGTCTCTGATCGAGACGGCACTCAACGTTGCCAAGCCATCGGCAGAGACTTCTGACTCTATGCAG
CTCTTTCCGAGCAAGGCAAACGCGTTACTAGTTCTACTTTGTGCCGAGATGATCGTGTGCCCCGATGATCTGGTC
CGTCAGGACTCGACCGGCGAGCAGTCTCGGCTAACCTACTGCAAGGCCATCATGGCCATATCAGAGGCGTCGATC
CGGTCTTATACGATTGGGAGGCTGGCCGCTTCCAAGCTCGTGCAGGAGCTGACTTTGCTTTCGTCCCAGCATCCG
GCGATTGGGGAAAATACTGATGTCTGGAGATGTACCAGACTGCTCCGACATGTCATCGACGTACCCGCTCACCAG
GTGCTGGATGAGTCGATGCATCCTGCCAAGTTTGAGAACCAGGAACTGCGCGAATGCGTCGAACGACTGAATCTC
ACTTTTGATCCACCCAGTCAGATCGTCTCTGGCACAAAGAGAAGGAAAATTTCCAATACAGATCCGCGAACTTGT
CTTTTGCAGGCCATCTATGGAGCCCTTCAGGTCAAGGAGGCTGAAGATGATGACGATACCGTCACGTTCGAGCAA
TTATTCCTAAGCGGTTTCGAGGGAGCTTCCGAGGATGATCGATGTCTTGCAATCGAGCTCCTATCTAGAATGTGC
TGCGTGGCTGACGAGTCCATCTCGATGCCGGGCTCCGAGACGAGATGTGCCATCTGCGAGGAAGAAGGTGACCCG
GGCACAGTAACGGCCTCGAGCTTCAAAAGCGAGGCTCGATTGGTCTTTTGCAAGCTTGTTCGACTGCCAAAGTTC
CTCGAGTCTCGGCGGCCTAGAATCGTTGCTATGATAGCGCTGAGGAAATTCGTGCTTCACTGTGAAGAGAGTGGC
TTCTTAGATCTGGAGAGGGCGGGATTTGGTGATGTCGCCGTACCAGGACCCGGACAATGGTGCCTCCAGTCGCTC
AACAGCGCCCTGCGGGAGCTGCGAGTGGCTGCCGGGAGAACGCTGCCTACTTTCATCCCTCCGAGTCCCACCCCC
GCTCTGGATGAGGACTTGCTGCACCGAAACCGCAAATGCTCCATTGCGTTGCTCAAGAAGACGTCGGACCAGCAT
CAGCCCCGTCATGTTGAGACTCACATCATGGCCTGGGCGCAAATAGGCCGGGTGGCAACCGAGGACGAGCTTATT
CTGGTTCTCATACAGCTGCTAGAGTATCTGGGCAGCAGCAACGGCCTAGTCTCGGCCTTTGCGTTCAACGAGCTG
CTGAATCTCGCCGAGTCTCGTTCGATAACGCCGAGGCGTCTGTTTGAGCCGTTTTGGAAGAATTTGGCCTACATG
GCTACCAAGAACATGGTCCAGCGGCCGCAGCAGAGCCGGGCAATCGCAGAGCTTCTTCAAATCTCCGTCAACGAG
CTTCTCCTCTTGATACAGTCGCACGCACTGCCGTGGCTCGTGCTCGACAGACAGACAGATGTCATCCAGAAGATA
GCAGAGGCCCGGCAAGAAAAGGAGCCCTGGCGTCCGCTCATGGACAGCGCCAACCTGGCTGCTACCCTTGCCTTG
CTGCTTGTGCAGGACGCAGACAACATGGAGCATTTCACTCAATCCCGGCTGAACGACATCTCTCCACACTTTCAC
TCGCTCACCCTCCTGGATCTCTTCCAAGCTGAACCGGTTCTGATTGCCCTGGAGCTCCTGAGATCGGCGGCCGGT
GCCGACCCGGCGCGACAGCAAGTGGTCCACAAGGCTTTGCATCTCATGGCAACGACCATCCTGAGAAGCAACAAG
GACGCAAAGCTCAAGAAGAGCAATGTCATCGGCCGCTTCCTTCAGTCTCACGTCCTCGGTCTCATGGCCCGGCTG
ACCGACGTCATCAACGACTCCGTGTCGACGCATCCACCGGTACTGGAGCAGCGTAGCTGCATCCGCACGTTGGAG
GAGCTGATCAAAGTCTGCAAGGGCTATGCGAGAATTGCGCGGCCGCAGATGTCTGCGTGCCTGCTGTCAGCCATC
GCCCAAGACGCCCTGCGTGAAGCGAGCTTCTCGTGCTGGGTAGCGATGCTCACCAATCTCGACGAAGAGGATGTC
GAGATGCTCATTGAACCAACCTTTTTCATCGTCAACCGGTACTGGACCGCGTTCAATCGATGCTCTGGCCGCGCT
GCACAGGAGATGCTCGGCTTCCTACTGGATAAGCACGCCCCGATCGTCACGGCCTATATACATAAAATCCCTTCG
CTGTCGCACATTGCCGAGTTGGCCGATGTTGAGTCGAGACTGTCGGCGCTGCGGCCCTCGTTGGCGACGGACGAG
GCACTGCGCGCTTTTGCAGACAGAGTTGCGCACGACAACTCCGGAGTCGTCCATCAAGCGTTGACCGAGCTTGTG
CCGTATCTCAGAGACAATCAGAGCGCGCTGTACACGTCCGCCGTCAGCCAGCGTCCGGACAGTGCCGTCACATCT
GTGCTCAGAGCGCTGTTGGACTGTGCCTGTAAATACAACGGCGTCCAGTCAGACATATCACGGCTCTGCGTCGAG
AGCGTGGGCCTTATTGGTTGTCTGGATTCGAATCGAATCGAGAGTGTGAGGGAACACCGCACGATCGTCGTCTTG
GACAATTTCGAAGGGGTGGGAGAGGCAACCGACTTTGGCCTATTCCTTCTACAGGAGGTCCTGGTCCCATCTTTC
CTCTCAGCAACCGATACCAAGCTGCAGGGCTTCCTCTCGTTTGCGATGCAGGAGCTCCTCATTCGGTGCGACATC
AAAGCCGCCTGTGCGATGCAGAACACAGGCATGATGGGCGGCAACGATGTCTACCGCAAATGGATTGCCCTGCCC
GAGTATACGCGGGAAATCGTCACACCGTTTCTGACTTCACGGTACATGGTGGCTCCCATGGCGCCGGTGACGGTC
GAGTATCCAATCTTTCACTTGGGCAAGCCGTACGGCAACTGGCTCCGGTCATTTGTCGTGGATCTCCTCCGGAAC
GGCCAGAACCTGCACGCGGATACACTGTTTGAGCCGCTCACTCGCGTCATCCGCGTCAAGGATCTGTCCACGGCG
GAATTTTTGCTTCCCTACCTGGTACTGCACGTACTTCTCGGGCCCCGTAGCTCTGAAGAAGACAGAGAGCGCGTG
GTGGGCGAGCTTTTGGTTGTCTTGCGATACAACCCGGCAGAGACGGCATCTTACTTGGAAAAGGAGGAGATGAAG
AAGTTTTGTCATGCTGTTTTTCGGGTCCTCGACTACGCCATGAGATGGATCCAGGCGAAGCGGGCAAAGGGCCGC
CTGAGCTCCGCCGATAAAGAAAACCTGTCGAGAATTCAGGCGATACTGGATGGGATTCCTGCCGAGCTCATTGCT
CAACGAGCCATCGATTGCAACGAATACGCCCGAGCGCTATTCCATCTGGAACAAGACGCGCAGAAGCTGGAGCAA
AGCAAGCGAGAGCCCGGCGATCGACTCCAGCTGCTGGAGAGACTGCAGCACATCTATGCGAACATTGACGAGCCG
GACGGACTGGAAGGGATTTCTGCCCACCTACCGGCCCTCGACATCAAACAGCAGATATTGAGTCACAAGAAAGCC
GGAAGGTGGTCGGCGGCACAGACGTGGTATGAGATGCAGCTGGCCGAGAAGCCAGACAACGTCGACCTGCAACTT
GAGCTTTTGCAATGTTTCAAGCAGGGAGGGCAGCACGATGCGCTCCTCAACTACGTCGAAAGTCTGCGGACGGAG
ACCTCTCACGAGAACAACAAAGTGATGCCGTTTGCCGTCGAAGCTGCTTGGGTCACGGGTCGGTGGGAAAGCCTG
GCCAAGTTTACGAGCCGGTTCCACGGAGACGTGGTACAGGACTTTAATATGTCGATTGCGACCCTGTTTGACGGC
CTGCACAAGAAGTGCTCGTCCGAGTTCTTCTCAAAGACTGTTGGGAGCGTGCGGGAAAAGATTGCTTCGGAGATG
ACGGCGTCGGCCACCATGTCCCTCCAAGCGGCTCATGAACTGCTTCTGAGGTGCCACGTCCTCACAGACTTGGAG
ATTATCGTCAGCCGCAAGCCGAGAGATGACGAGGAACGCAGGACGACGATGGCCCTACTAGACGGTCGTCTGGAC
GTCATCGGTGCTTACTTCAATGATAAGCAATACCTCCTCGGCGTCAGGCGGGCAGCCATGGAATTGGCCAGGCCG
AGCTATACCGACGCAGAGGTCTCTTCGCTTTGGGTGGCGAGCGCTCGACTTGCCAGGAAGACGGACTCTCTGCAT
CGATCTTTCAACGCGGTCCTCCAAGCCTCTCGACTCGGAGACGGCGCAGCGACCATCGAAAACGCAAAGCTCCTC
TGGAGAGATGGGCATCACAGGCAGGCCATCCAGATGCTTCAAGGCGCCATCGAGCGGAACAAGTTCATGACGCAG
ACGGGGATGGCATCTTCGGTGAGCACGGCGGCGCCTACCAAGTTGACGTCGCCTCAGAAGCTCGTGGCCGCCAGG
GCGCAGCTGCTCCTCGCCAGGTGGCTCGATGCCGCTGGACAGTCGCATGCCACGGCTCTGCGGGAGAAATACCAA
CAGCCTCCCAGGACTCATTCGGCCTACGAGAAGGGCCACTTTTACCTGGGACGACACTACAAGAAGATTCTGGAG
TCGGAGCGGCCGCTCAAGGTAGAGGACCAGAGCGACAACTACGTGATTGGCGAGATCACCAGGCTCGTCATCGAG
AACTACATCCGATCTCTGAACGCGGGGACCAAGTATCTCTACCAGACACTGCCCAGGATCCTGACGCTCTGGCTC
GACATGGGGGCGCAAGTCGACAAGCCTCCCGAAGGCAAGGCGTCCCTTTCCCGAGAGCTTCACCGGAGACGGGTC
GAGCAGCTCAACCTACTGCACAACTTCCTGGACAAGTACATCCATCGCATCCCGGCCTACGTTTTCTACACGGCG
CTGCCGCAGATTGTGGCCCGGATCGCTCATCCCAACGTGAGCGTCTTTGAGCGGCTGACGCGCATCATCGTCAAG
GTGGTGGAGTCGTATCCGCGGCAGGCCCTCTGGAGTCTCATCGGCATCATGACGTCGAAGCAGATGACGGAGCGC
AAAGCCAGGGGCACGCAGATCTTGCAGGCGCTGAGGACGGTGTCGAGAAAGGTGGACGGGACGTCGTACGACCTG
AAGCAGCTCCTCAGGGCCGGCGAGAAGCTGGCGGATCAGCTCTTGGTGGCCTGCCACAACGGCGAGTTCCCCGGC
AACAAGTCGGTACAGGCCAGCCTCTCGCGAGACTTGCGATTCCAGCACAAGTGCACCCCCTGCCCACTGGTGGTG
CCGGTGGAGAGCTCGCTCAACGCGACGCTGCCGGCGGTGTCGGAGCAGGTGCGGAAGCACAAGGCGTTCTCGCGA
GACGTGGTGACGATGGACTGCTTCCTGGACGAGGTGCTCGTGCTGAGTTCGCTGGCGAAGCCGCGACGTCTGACG
GCTCGAGGGAGCGACGGGAAGTGTTACATGCTGCTGATCAAGCCCAAGGACGACCTGCGGACGGACCAGCGGCTG
ATGGAGTTTAACGGCATCATCAATCGGGCTCTGAAACACGACGCCGAGTCGAGCCGCAGACAGCTGTACATCCGC
ACGTACGCCGTGGTGCCGCTCAACGAGGAGTGCGGCATCATCGAGTGGGTTCCGGGCATCAGGACGATGCGGGAC
ATTCTGCTGAACCTGTACGGATCGCGCCGGATTCAGCCCGACTACGCGGCGCTCAAGAGCCTGATGGAGGAGGCG
TCGACTTCGGAAGCCAAGCTACGGATCTTCACAGACGAAGTCCTGGGACGCTTCCCGGCCATTCTTCCGGTGTGG
TTCATGCAGCAGTTCCCCAGCCCGTCGGCGTGGTTCACGGCGCGGCTGCGATACACGCGGACGTGCGCCGTCATG
TCCATGGTCGGCACCATGCTCGGACTCGGAGACCGACACGGGGAGAACGTGACGCTGGAGGAAGACAACGGCGGC
GTGTTCCACGTCGACTTCAACTGCCTGTTCGACAAGGGCCTGACGTTCCAGAAGCCGGAGCGGGTGCCTTTCCGA
CTGACGCACAACATGGTGGCGGCCATGGGCGTGTACGGCTACGAGGGCCCGTTCCGCAAGTCTTCGGAGCTGACG
CTGAGCATGCTGCGGCAGCAGGAGGAGACGCTGATGGCCATCCTCGAGGCCTTCATCTACGACCCGACGCTGGAC
CTTCAGAAGGAGAAGCGCAACGGCAAGAGAGGCGACTCGGGGGGGGTCAAGCTGCAGCCGCAGAGCGTGGTGGAC
AGCATCCGGAGAAAAGTGCGGGGCTTGCTGCCGAATGAAAGTATCCCGTTGAGCGTCGAGGGACAGGTCGAGGAG
CTGATCAAGCAGGCGGTCGATGCGCGGAATTTGACGGCCATGTATATCGGATGGTGCCCGTTTTTGTGA
Gene >Ophio5|6075
ATGGCTGACAGCATACACGGCAGGGCGGCCGATAGGGCTGATGATGTGCCGCCGTCAACTCTAGCCGCGCAGCTT
GTCGAGAACATCTCGACCTCGGCCAAGTCCTCCCGATCGGACAACAGCAGCGAAGTCTGGAGATTATACGCCATC
ATCCAGCGCGAAAAGGGCGATGCCCGCAGAAAGACCAAAGCTGAAGAAGTCGACCAGAATCACATGCTCATCTAT
GTGCTCTGCCTCCATTCCCTCGAGGGCATCAAGCTGGACGATCCCTTCGTCGACCGTCGGCACATCCGCAACGAG
TTTTTGAAAGCCATCAAATTCTTTATAAAAGTCATTAATGAGACGCCCACCGTTCTGAAAGTCTCCGAACATGGC
CAATTCTACAGAGGACGAGAGCCTCTTTGGGTCTGGCTGCTTCCGCGCCTCCTCCGATTTCTCGGTCACGCCGAC
TGTCTTGACCTAGAGCCTTCCATCGTGGGATTCTTGCAGTATCTTTTATTATTGGTGTCTCGCAGAAGCCATCTT
TGGGCCGTGTCTGCTTCGCTGAGTCTCTATCTGCGAGCATGCCTGACAGGTACGTGCCAGGCCACAGCCCTCTAA
CATCGTCCCTGACTATCAGCTTGTAGGATTGTTGGACCACCTTCAGGACCCAACATTGACATCGTCCAACTCCAA
AACTCCTATCCATCTCTTTCTTCCGCCCCTTTTCGCCTTGAACCAGATTCTCGACGAGACCCGGCAGGAGCACAG
CCAGCAGTCCACATATGTCATCGGCTCTGTTCATCAAGCCCTGCGACAGGCCATCAGTCTGTCCAGAGTTCTTTC
CTATCCGTTCTTCTGTCAACAGCCGGTTGTCTTCAATGTCCCTTTTCTGTCGCAAAACGGGCCATGGATGATGGA
CTCGTGGCTCGACCTCAGACACGCGCAGAGAAAATGGCACGTCAGCGCGCATAGCTCGCCCATGTCTCTGATCGA
GACGGCACTCAACGTTGCCAAGCCATCGGCAGAGACTTCTGACTCTATGCAGCTCTTTCCGAGCAAGGCAAACGC
GTTACTAGTTCTACTTTGTGCCGAGATGATCGTGTGCCCCGATGATCTGGTCCGTCAGGACTCGACCGGCGAGCA
GTCTCGGCTAACCTACTGCAAGGCCATCATGGCCATATCAGAGGCGTCGATCCGGTCTTATACGATTGGGAGGCT
GGCCGCTTCCAAGCTCGTGCAGGAGCTGACTTTGCTTTCGTCCCAGCATCCGGCGATTGGGGAAAATACTGATGT
CTGGGTAAGATTTTCCCGACTTAGAGCGCGGTATGGCAGCTTACAACGGACAGAGATGTACCAGACTGCTCCGAC
ATGTCATCGACGTACCCGCTCACCAGGTGCTGGATGAGTCGATGCATCCTGCCAAGTTTGAGAACCAGGAACTGC
GCGAATGCGTCGAACGACTGAATCTCACTTTTGATCCACCCAGTCAGATCGTCTCTGGCACAAAGAGAAGGAAAA
TTTCCAATACAGATCCGCGAACTTGTCTTTTGCAGGCCATCTATGGAGCCCTTCAGGTCAAGGAGGCTGAAGATG
ATGACGATACCGTCACGTTCGAGCAATTATTCCTGTGAGCGTTTGTTCGACATTGTTGAGTGGGCGCTAACGTTT
CCATAGAAGCGGTTTCGAGGGAGCTTCCGAGGATGATCGATGTCTTGCAATCGAGCTCCTATCTAGAATGTGCTG
CGTGGCTGACGAGTCCATCTCGATGCCGGGCTCCGAGACGAGATGTGCCATCTGCGAGGAAGAAGGTGACCCGGG
CACAGTAACGGCCTCGAGCTTCAAAAGCGAGGCTCGATTGGTCTTTTGCAAGCTTGTTCGACTGCCAAAGTTCCT
CGAGTCTCGGCGGCCTAGAATCGTTGCTATGATAGCGCTGAGGAAATTCGTGCTTCACTGTGAAGAGAGTGGCTT
CTTAGATCTGGAGAGGGCGGGATTTGGTGATGTCGCCGTACCAGGACCCGGACAATGGTGCCTCCAGTCGCTCAA
CAGCGCCCTGCGGGAGCTGCGAGTGGCTGCCGGGAGAACGCTGCCTACTTTCATCCCTCCGAGTCCCACCCCCGC
TCTGGATGAGGACTTGCTGCACCGAAACCGCAAATGCTCCATTGCGTTGCTCAAGAAGACGTCGGACCAGCATCA
GCCCCGTCATGTTGAGACTCACATCATGGCCTGGGCGCAAATAGGCCGGGTGGCAACCGAGGACGAGCTTATTCT
GGTTCTCATACAGCTGCTAGAGTATCTGGGCAGCAGCAACGGCCTAGTCTCGGCCTTTGCGTTCAACGAGCTGCT
GAATCTCGCCGAGTCTCGTTCGATAACGCCGAGGCGTCTGTTTGAGCCGTTTTGGAAGAATTTGGCCTACATGGC
TACCAAGAACATGGTCCAGCGGCCGCAGCAGAGCCGGGCAATCGCAGAGCTTCTTCAAATCTCCGTCAACGAGCT
TCTCCTCTTGATACAGTCGCACGCACTGCCGTGGCTCGTGCTCGACAGACAGACAGATGTCATCCAGAAGATAGC
AGAGGCCCGGCAAGAAAAGGAGCCCTGGCGTCCGCTCATGGACAGCGCCAACCTGGCTGCTACCCTTGCCTTGCT
GCTTGTGCAGGACGCAGACAACATGGAGCATTTCACTCAATCCCGGCTGAACGACATCTCTCCACACTTTCACTC
GCTCACCCTCCTGGATCTCTTCCAAGCTGAACCGGTTCTGATTGCCCTGGAGCTCCTGAGATCGGCGGCCGGTGC
CGACCCGGCGCGACAGCAAGTGGTGAGTGGAGGCGGACCCTCGACCGTCTACGTGCTGATAGGAGACAGGTCCAC
AAGGCTTTGCATCTCATGGCAACGACCATCCTGAGAAGCAACAAGGACGCAAAGCTCAAGAAGAGCAATGTCATC
GGCCGCTTCCTTCAGTCTCACGTCCTCGGTCTCATGGCCCGGCTGACCGACGTCATCAACGACTCCGTGTCGACG
CATCCACCGGTACTGGAGCAGCGTAGCTGCATCCGCACGTTGGAGGAGCTGATCAAAGTCTGCAAGGGCTATGCG
AGAATTGCGCGGCCGCAGGTATGGAAGAGAAACCCAGACAGTCTTTTGTCGCAGCTGACATTGCTCTAGATGTCT
GCGTGCCTGCTGTCAGCCATCGCCCAAGACGCCCTGCGTGAAGCGAGCTTCTCGTGCTGGGTAGCGATGCTCACC
AATCTCGACGAAGAGGATGTCGAGATGCTCATTGAACCAACCTTTTTCATCGTCAACCGGTACTGGACCGCGTTC
AATCGATGCTCTGGCCGCGCTGCACAGGAGATGCTCGGCTTCCTACTGGATAAGCACGCCCCGATCGTCACGGCC
TATATACATAAAATCCCTTCGCTGTCGCACATTGCCGAGTTGGCCGATGTTGAGTCGAGACTGTCGGCGCTGCGG
CCCTCGTTGGCGACGGACGAGGCACTGCGCGCTTTTGCAGACAGAGTTGCGCACGACAACTCCGGAGTCGTCCAT
CAAGCGTTGACCGAGCTTGTGCCGTATCTCAGAGACAATCAGAGCGCGCTGTACACGTCCGCCGTCAGCCAGCGT
CCGGACAGTGCCGTCACATCTGTGCTCAGAGCGCTGTTGGACTGTGCCTGTAAATACAACGGCGTCCAGTCAGAC
ATATCACGGCTCTGCGTCGAGAGCGTGGGCCTTATTGGTTGTCTGGATTCGAATCGAATCGAGAGTGTGAGGGAA
CACCGCACGATCGTCGTCTTGGACAATTTCGAAGGGGTGGGAGAGGCAACCGACTTTGGCCTATTCCTTCTACAG
GAGGTCCTGGTCCCATCTTTCCTCTCAGCAACCGATACCAAGCTGCAGGGCTTCCTCTCGTTTGCGATGCAGGAG
CTCCTCATTCGGTGCGACATCAAAGCCGCCTGTGCGATGCAGAACACAGGCATGATGGGCGGCAACGATGTCTAC
CGCAAATGGATTGCCCTGCCCGAGTATACGCGGGAAATCGTCACACCGTTTCTGACTTCACGGTACATGGTGGCT
CCCATGGCGCCGGTGACGGTCGAGTATCCAATCTTTCACTTGGGCAAGCCGTACGGCAACTGGCTCCGGTCATTT
GTCGTGGATCTCCTCCGGAACGGCCAGAACCTGCACGCGGATACACTGTTTGAGCCGCTCACTCGCGTCATCCGC
GTCAAGGATCTGTCCACGGCGGAATTTTTGCTTCCCTACCTGGTACTGCACGTACTTCTCGGGCCCCGTAGCTCT
GAAGAAGACAGAGAGCGCGTGGTGGGCGAGCTTTTGGTTGTCTTGCGATACAACCCGGCAGAGACGGCATCTTAC
TTGGAAAAGGAGGAGATGAAGAAGTTTTGTCATGTGAGTCTGCAGTCTCTCGGCCCATGGTGTATGCTGACGAGG
TTCAGGCTGTTTTTCGGGTCCTCGACTACGCCATGAGATGGATCCAGGCGAAGCGGGCAAAGGGCCGCCTGAGCT
CCGCCGATAAAGAAAACCTGTCGAGAATTCAGGCGATACTGGATGGGATTCCTGCCGAGCTCATTGCTCAACGAG
CCATCGATTGCAACGAATACGCCCGAGCGCTATTCCATCTGGAACAAGACGCGCAGAAGCTGGAGCAAAGCAAGC
GAGAGCCCGGCGATCGACTCCAGCTGCTGGAGAGACTGCAGCACATCTATGCGAACATTGACGAGCCGGACGGAC
TGGAAGGGATTTCTGCCCACCTACCGGCCCTCGACATCAAACAGCAGATATTGAGTCACAAGAAAGCCGGAAGGT
GGTCGGCGGCACAGACGTGGTATGAGATGCAGCTGGCCGAGAAGCCAGACAACGTCGACCTGCAACTTGAGCTTT
TGCAATGTTTCAAGCAGGGAGGGCAGCACGGTCAGTGACAAACCCCCCTGGATGAGATTCTGCTCTAACGTGGCA
ATAGATGCGCTCCTCAACTACGTCGAAAGTCTGCGGACGGAGACCTCTCACGAGAACAACAAAGTGATGCCGTTT
GCCGTCGAAGCTGCTTGGGTCACGGGTCGGTGGGAAAGCCTGGCCAAGTTTACGAGCCGGTTCCACGGAGACGTG
GTACAGGACTTTAATATGTCGATTGCGACCCTGTTTGACGGCCTGCACAAGAAGTGCTCGTCCGAGTTCTTCTCA
AAGACTGTTGGGAGCGTGCGGGAAAAGATTGCTTCGGAGATGACGGCGTCGGCCACCATGTCCCTCCAAGCGGCT
CATGAACTGCTTCTGAGGTGCCACGTCCTCACAGACTTGGAGATTATCGTCAGCCGCAAGCCGAGAGATGACGAG
GAACGCAGGACGACGATGGCCCTACTAGACGGTCGTCTGGACGTCATCGGTGCTTACTTCAATGATAAGCAATAC
CTCCTCGGCGTCAGGCGGGCAGCCATGGAATTGGCCAGGTGAGTTGTTGCCGGAATCGCGAGACTGAGAACGACG
GCTAAGGAAGACAGGCCGAGCTATACCGACGCAGAGGTCTCTTCGCTTTGGGTGGCGAGCGCTCGACTTGCCAGG
AAGACGGACTCTCTGCATCGATCTTTCAACGCGGTCCTCCAAGCCTCTCGACTCGGAGACGGCGCAGCGACCATC
GAAAACGCAAAGCTCCTCTGGAGAGATGGGCATCACAGGCAGGCCATCCAGATGCTTCAAGGCGCCATCGAGCGG
AACAAGTTCATGACGCAGACGGGGATGGCATCTTCGGTGAGCACGGCGGCGCCTACCAAGTTGACGTCGCCTCAG
AAGCTCGTGGCCGCCAGGGCGCAGCTGCTCCTCGCCAGGTGGCTCGATGCCGCTGGACAGTCGCATGCCACGGCT
CTGCGGGAGAAATACCAACAGCCTCCCAGGACTCATTCGGCCTACGAGAAGGGCCACTTTTACCTGGGACGACAC
TACAAGAAGATTCTGGAGTCGGAGCGGCCGCTCAAGGTAGAGGACCAGAGCGACAACTACGTGATTGGCGAGATC
ACCAGGCTCGTCATCGAGAACTACATCCGATCTCTGAACGCGGGGACCAAGTATCTCTACCAGACACTGCCCAGG
ATCCTGACGCTCTGGCTCGACATGGGGGCGCAAGTCGACAAGCCTCCCGAAGGCAAGGCGTCCCTTTCCCGAGAG
CTTCACCGGAGACGGGTCGAGCAGCTCAACCTACTGCACAACTTCCTGGACAAGTACATCCATCGCATCCCGGCC
TACGTTTTCTACACGGCGCTGCCGCAGATTGTGGCCCGGATCGCTCATCCCAACGTGAGCGTCTTTGAGCGGCTG
ACGCGCATCATCGTCAAGGTGGTGGAGTCGTATCCGCGGCAGGCCCTCTGGAGTCTCATCGGCATCATGACGTCG
AAGCAGATGACGGAGCGCAAAGCCAGGGGCACGCAGATCTTGCAGGCGCTGAGGACGGTGTCGAGAAAGGTGGAC
GGGACGTCGTACGACCTGAAGCAGCTCCTCAGGGCCGGCGAGAAGCTGGCGGATCAGCTCTTGGTGGCCTGCCAC
AACGGCGAGTTCCCCGGCAACAAGTCGGTACAGGCCAGCCTCTCGCGAGACTTGCGATTCCAGCACAAGTGCACC
CCCTGCCCACTGGTGGTGCCGGTGGAGAGCTCGCTCAACGCGACGCTGCCGGCGGTGTCGGAGCAGGTGCGGAAG
CACAAGGCGTTCTCGCGAGACGTGGTGACGATGGACTGCTTCCTGGACGAGGTGCTCGTGCTGAGTTCGCTGGCG
AAGCCGCGACGTCTGACGGCTCGAGGGAGCGACGGGAAGTGTTACATGCTGCTGATCAAGCCCAAGGACGACCTG
CGGACGGACCAGCGGCTGATGGAGTTTAACGGCATCATCAATCGGGCTCTGAAACACGACGCCGAGTCGAGCCGC
AGACAGCTGTACATCCGCACGTACGCCGTGGTGCCGCTCAACGAGGAGTGCGGCATCATCGAGTGGGTTCCGGGC
ATCAGGACGATGCGGGACATTCTGCTGAACCTGTACGGATCGCGCCGGATTCAGCCCGACTACGCGGCGCTCAAG
AGCCTGATGGAGGAGGCGTCGACTTCGGAAGCCAAGCTACGGATCTTCACAGACGAAGTCCTGGGACGCTTCCCG
GCCATTCTTCCGGTGTGGTTCATGCAGCAGTTCCCCAGCCCGTCGGCGTGGTTCACGGCGCGGCTGCGATACACG
CGGACGTGCGCCGTCATGTCCATGGTCGGCACCATGCTCGGACTCGGAGACCGACACGGGGAGAACGTGACGCTG
GAGGAAGACAACGGCGGCGTGTTCCACGTCGACTTCAACTGCCTGTTCGACAAGGGCCTGACGTTCCAGAAGCCG
GAGCGGGTGCCTTTCCGACTGACGCACAACATGGTGGCGGCCATGGGCGTGTACGGCTACGAGGGCCCGTTCCGC
AAGTCTTCGGAGCTGACGCTGAGCATGCTGCGGCAGCAGGAGGAGACGCTGATGGCCATCCTCGAGGCCTTCATC
TACGACCCGACGCTGGACCTTCAGAAGGAGAAGCGCAACGGCAAGAGAGGCGACTCGGGGGGGGTCAAGCTGCAG
CCGCAGAGCGTGGTGGACAGCATCCGGAGAAAAGTGCGGGGCTTGCTGCCGAATGAAAGTATCCCGTTGAGCGTC
GAGGGACAGGTCGAGGAGCTGATCAAGCAGGCGGTCGATGCGCGGAATTTGACGGCCATGTATATCGGATGGTGC
CCGTTTTTGTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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