Fungal Genomics

at Utrecht University

General Properties

Protein IDOphio5|3532
Gene name
Locationscaffold_28:33303..36981
Strand-
Gene length (bp)3678
Transcript length (bp)3468
Coding sequence length (bp)3465
Protein length (aa) 1155

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF03033 Glyco_transf_28 Glycosyltransferase family 28 N-terminal domain 6.0E-11 92 152
PF00201 UDPGT UDP-glucoronosyl and UDP-glucosyl transferase 5.3E-06 380 523

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|Q9XIG1|U80B1_ARATH Sterol 3-beta-glucosyltransferase UGT80B1 OS=Arabidopsis thaliana GN=UGT80B1 PE=2 SV=1 75 543 7.0E-126
sp|Q9M8Z7|U80A2_ARATH Sterol 3-beta-glucosyltransferase UGT80A2 OS=Arabidopsis thaliana GN=UGT80A2 PE=1 SV=1 83 543 7.0E-124
sp|Q6C8M8|ATG26_YARLI Sterol 3-beta-glucosyltransferase OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=ATG26 PE=3 SV=3 86 544 4.0E-83
sp|A7KAK6|ATG26_PICAN Sterol 3-beta-glucosyltransferase OS=Pichia angusta GN=ATG26 PE=3 SV=1 78 544 6.0E-82
sp|Q5B4C9|ATG26_EMENI Sterol 3-beta-glucosyltransferase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=atg26 PE=3 SV=1 84 544 8.0E-82
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Swissprot ID Swissprot Description Start End E-value
sp|Q9XIG1|U80B1_ARATH Sterol 3-beta-glucosyltransferase UGT80B1 OS=Arabidopsis thaliana GN=UGT80B1 PE=2 SV=1 75 543 7.0E-126
sp|Q9M8Z7|U80A2_ARATH Sterol 3-beta-glucosyltransferase UGT80A2 OS=Arabidopsis thaliana GN=UGT80A2 PE=1 SV=1 83 543 7.0E-124
sp|Q6C8M8|ATG26_YARLI Sterol 3-beta-glucosyltransferase OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=ATG26 PE=3 SV=3 86 544 4.0E-83
sp|A7KAK6|ATG26_PICAN Sterol 3-beta-glucosyltransferase OS=Pichia angusta GN=ATG26 PE=3 SV=1 78 544 6.0E-82
sp|Q5B4C9|ATG26_EMENI Sterol 3-beta-glucosyltransferase OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=atg26 PE=3 SV=1 84 544 8.0E-82
sp|Q5A950|ATG26_CANAL Sterol 3-beta-glucosyltransferase OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=ATG26 PE=3 SV=1 77 544 3.0E-81
sp|Q0UY53|ATG26_PHANO Sterol 3-beta-glucosyltransferase OS=Phaeosphaeria nodorum (strain SN15 / ATCC MYA-4574 / FGSC 10173) GN=ATG26 PE=3 SV=1 83 544 4.0E-81
sp|A1CYS1|ATG26_NEOFI Sterol 3-beta-glucosyltransferase OS=Neosartorya fischeri (strain ATCC 1020 / DSM 3700 / FGSC A1164 / NRRL 181) GN=atg26 PE=3 SV=1 84 544 8.0E-81
sp|Q8NJS1|ATG26_LEPMC Sterol 3-beta-glucosyltransferase OS=Leptosphaeria maculans GN=ATG26 PE=3 SV=1 83 544 2.0E-80
sp|Q4WID6|ATG26_ASPFU Sterol 3-beta-glucosyltransferase OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=atg26 PE=3 SV=2 84 544 4.0E-80
sp|P0CN91|ATG26_CRYNB Sterol 3-beta-glucosyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) GN=ATG26 PE=3 SV=1 71 544 7.0E-80
sp|P0CN90|ATG26_CRYNJ Sterol 3-beta-glucosyltransferase OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=ATG26 PE=3 SV=1 71 544 8.0E-80
sp|Q9Y751|ATG26_PICPG Sterol 3-beta-glucosyltransferase OS=Komagataella pastoris (strain GS115 / ATCC 20864) GN=ATG26 PE=3 SV=1 93 544 2.0E-78
sp|Q6BN88|ATG26_DEBHA Sterol 3-beta-glucosyltransferase OS=Debaryomyces hansenii (strain ATCC 36239 / CBS 767 / JCM 1990 / NBRC 0083 / IGC 2968) GN=ATG26 PE=3 SV=2 77 544 4.0E-78
sp|A2QNQ5|ATG26_ASPNC Sterol 3-beta-glucosyltransferase OS=Aspergillus niger (strain CBS 513.88 / FGSC A1513) GN=atg26 PE=3 SV=2 84 544 1.0E-77
sp|Q751Z4|ATG26_ASHGO Sterol 3-beta-glucosyltransferase OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=ATG26 PE=3 SV=2 97 532 2.0E-77
sp|Q0CKU4|ATG26_ASPTN Sterol 3-beta-glucosyltransferase OS=Aspergillus terreus (strain NIH 2624 / FGSC A1156) GN=atg26 PE=3 SV=1 84 544 2.0E-77
sp|A1CFB3|ATG26_ASPCL Sterol 3-beta-glucosyltransferase OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) GN=atg26 PE=3 SV=1 84 544 4.0E-77
sp|Q54IL5|UGT52_DICDI UDP-sugar-dependent glycosyltransferase 52 OS=Dictyostelium discoideum GN=ugt52 PE=2 SV=1 73 543 5.0E-77
sp|Q2U0C3|ATG26_ASPOR Sterol 3-beta-glucosyltransferase OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=atg26 PE=3 SV=2 84 544 3.0E-76
sp|A7A179|ATG26_YEAS7 Sterol 3-beta-glucosyltransferase OS=Saccharomyces cerevisiae (strain YJM789) GN=ATG26 PE=3 SV=1 77 544 8.0E-76
sp|A7KAN4|ATG26_PENRW Sterol 3-beta-glucosyltransferase OS=Penicillium rubens (strain ATCC 28089 / DSM 1075 / NRRL 1951 / Wisconsin 54-1255) GN=atg26 PE=3 SV=1 84 544 1.0E-75
sp|Q6CUV2|ATG26_KLULA Sterol 3-beta-glucosyltransferase OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=ATG26 PE=3 SV=1 77 543 2.0E-75
sp|Q06321|ATG26_YEAST Sterol 3-beta-glucosyltransferase OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=ATG26 PE=1 SV=1 77 544 3.0E-75
sp|A7TF84|ATG26_VANPO Sterol 3-beta-glucosyltransferase OS=Vanderwaltozyma polyspora (strain ATCC 22028 / DSM 70294) GN=ATG26 PE=3 SV=1 77 544 6.0E-73
sp|Q7S1I0|ATG26_NEUCR Sterol 3-beta-glucosyltransferase OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=apg-12 PE=3 SV=1 84 544 2.0E-72
sp|A7ERM5|ATG26_SCLS1 Sterol 3-beta-glucosyltransferase OS=Sclerotinia sclerotiorum (strain ATCC 18683 / 1980 / Ss-1) GN=atg26 PE=3 SV=1 84 544 3.0E-71
sp|O70023|TYLN_STRFR O-mycaminosyltylonolide 6-deoxyallosyltransferase OS=Streptomyces fradiae GN=tylN PE=1 SV=2 90 533 3.0E-32
sp|P96559|GTFB_AMYOR Vancomycin aglycone glucosyltransferase OS=Amycolatopsis orientalis GN=gtfB PE=1 SV=1 242 529 8.0E-28
sp|P64866|Y1551_MYCBO Uncharacterized glycosyltransferase Mb1551 OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=Mb1551 PE=3 SV=1 90 528 9.0E-23
sp|P9WN07|Y1524_MYCTU Uncharacterized glycosyltransferase Rv1524 OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=Rv1524 PE=1 SV=1 90 528 9.0E-23
sp|P9WN06|Y1524_MYCTO Uncharacterized glycosyltransferase MT1575 OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=MT1575 PE=3 SV=1 90 528 9.0E-23
sp|P64870|Y1553_MYCBO Uncharacterized protein Mb1553c OS=Mycobacterium bovis (strain ATCC BAA-935 / AF2122/97) GN=Mb1553c PE=4 SV=1 302 528 2.0E-22
sp|P9WLV1|Y1526_MYCTU Uncharacterized protein Rv1526c OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=Rv1526c PE=4 SV=1 302 528 2.0E-22
sp|P9WLV0|Y1526_MYCTO Uncharacterized protein MT1577 OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=MT1577 PE=4 SV=1 302 528 2.0E-22
sp|Q9AFC6|GTFE_AMYOR Glycosyltransferase GtfE OS=Amycolatopsis orientalis GN=gtfE PE=3 SV=1 242 523 2.0E-22
sp|Q49929|Y2348_MYCLE Uncharacterized glycosyltransferase ML2348 OS=Mycobacterium leprae (strain TN) GN=ML2348 PE=3 SV=1 336 528 5.0E-22
sp|Q9AFC7|GTFD_AMYOR Desvancosaminyl-vancomycin vancosaminetransferase OS=Amycolatopsis orientalis GN=gtfD PE=1 SV=1 242 522 1.0E-20
sp|P96560|GTFC_AMYOR Glycosyltransferase GtfC OS=Amycolatopsis orientalis GN=gtfC PE=1 SV=1 242 529 1.0E-18
sp|P96558|GTFA_AMYOR dTDP-epi-vancosaminyltransferase OS=Amycolatopsis orientalis GN=gtfA PE=1 SV=1 90 546 3.0E-16
sp|Q5H8C4|VP13A_MOUSE Vacuolar protein sorting-associated protein 13A OS=Mus musculus GN=Vps13a PE=1 SV=1 757 825 2.0E-10
sp|Q9BGZ0|VP13A_MACFA Vacuolar protein sorting-associated protein 13A (Fragment) OS=Macaca fascicularis GN=VPS13A PE=2 SV=1 760 825 2.0E-10
sp|Q96RL7|VP13A_HUMAN Vacuolar protein sorting-associated protein 13A OS=Homo sapiens GN=VPS13A PE=1 SV=2 760 825 2.0E-09
sp|Q8BX70|VP13C_MOUSE Vacuolar protein sorting-associated protein 13C OS=Mus musculus GN=Vps13c PE=1 SV=2 756 826 9.0E-08
sp|Q709C8|VP13C_HUMAN Vacuolar protein sorting-associated protein 13C OS=Homo sapiens GN=VPS13C PE=1 SV=1 756 826 1.0E-07
sp|Q555C6|VP13B_DICDI Putative vacuolar protein sorting-associated protein 13B OS=Dictyostelium discoideum GN=vps13B PE=3 SV=1 753 825 3.0E-07
sp|Q86K84|VP13L_DICDI Vacuolar protein sorting-associated protein 13-like protein OS=Dictyostelium discoideum GN=vps13l PE=3 SV=1 710 825 8.0E-07
sp|Q54PG5|GACC_DICDI Rho GTPase-activating protein gacC OS=Dictyostelium discoideum GN=gacC PE=3 SV=1 768 826 2.0E-06
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GO

GO Term Description Terminal node
GO:0005975 carbohydrate metabolic process Yes
GO:0030259 lipid glycosylation Yes
GO:0008194 UDP-glycosyltransferase activity Yes
GO:0016758 hexosyltransferase activity Yes
GO:0003824 catalytic activity No
GO:0070085 glycosylation No
GO:0008150 biological_process No
GO:0016757 glycosyltransferase activity No
GO:0008152 metabolic process No
GO:0044237 cellular metabolic process No
GO:0003674 molecular_function No
GO:0016740 transferase activity No
GO:0009987 cellular process No
GO:0006629 lipid metabolic process No
GO:0044238 primary metabolic process No
GO:0030258 lipid modification No
GO:0071704 organic substance metabolic process No
GO:0044255 cellular lipid metabolic process No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 63 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.

Expression values

Label Description Expression (RPKM) Confidence interval (low) Confidence interval (high)
SC16a Pure fungal culture 39.87 21.51 58.24
CcL In ants, during behavior modification 6.51 2.84 10.18
CcD In ants, recently dead 13.34 6.92 19.77

Differential expression

Label1 Label2 Q-value Significant difference
SC16a CcL 0.000286 yes
SC16a CcD 0.000286 yes
CcL CcD 0.005499 yes

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|3532
MVMDPSVVPRLGPPADAPPPYGAHLDHVRFSQPGFEAGAEITEDGRVNININTKNTRLAHLLAATLRSQPSPSPA
YSPEPSREFQPPPPLNVVVQIVGSRGDVQPFVALGKVLQEEYGHRVRIATHATFRDFVLHNGLEFFDIGGDPAEL
MAFMVKHPGLMPGMDALKSGEISKRRKGIQDILLGCWRSCIEPGDGSGPPLKPHPRNEPFDLSAGLPGDSSLKPF
VADVIIANPPSFAHVHVAEKLGIPLHMMFTMPWSPTRAFPHPLANVESSNADDGMTNILTYTLVEMLTWQGLGDV
INRFREKALDLPPLSFIFAPGLLTRLKVPYTYCWSPSLIPKPNDWGSRIDISGFYFLDLASAFTPDPALGAFLEA
GPPPVYIGFGSIVVDDPDAMTRMIFGALRQSGVRALVSKGWGGLGVDDVGLPEGVYMLGNVPHDWLFQHVSCVVH
HGGAGTTAAGIKAGKPTFVVPFFGDQPFWGAMVARAKAGPEPIRYKDLTAEKLSEALRFCLRPETKERAKELGER
IRKERGTKAGGESFHQQLDVESLRCAVAPNQAAAWRVRRSKVQLSPLAAAVLVEKGFLQYTDVKLYRPREYNTDD
QPPDPITAGACSLVGDLSGIGMAIADMPREMFGSNKRSKDGAAPGSPPARDISREASRVESGEELVSSTSSAPTG
AGQGTPQASSSQPRQGTTSPVSSPQGFSVEAAVDAGRGVGRVVSTGVKSPMNFCLGLAKGFRNVPRLYNDDTVRP
TEKVTDLSSGIRVAGKELGLGFFDGISGLVTQPMRGAEKEGASGLIKGFGKGIGGLIAKPAAGFWGVPAYTMQGV
HAQVSKLFSKSVQNYIMTSRVLQGQRAAAQTTSEEKDEMVERWNTLKPGLKEFYATRQKGTASGGSAAIGQSRRD
GEEEGILDGKASRRRTRRPLSEIMDLKAQKKELKKHTPPSVSSGGLGLPSNGSDDAEYERAIRLSVQETSRGNAE
EDASIEAAIRKSLQAMRQRGGLLELIPASSEGEEKKKEVKDKKVKTEKMKHDDVFESEDLTITDEEYQKLVEEAV
RRSLGQRADRDDEDDEEAAAMKHAMAASLEESQRAAAQRSEEDIVLDFIKRQSLAEEEIQRRVRSAEGAAEHRGS
DDDEELLAAIEESLRMRRGEREVTSEPATG
Coding >Ophio5|3532
ATGGTCATGGACCCTTCCGTCGTGCCGCGTCTCGGCCCGCCCGCCGATGCGCCTCCTCCTTATGGCGCCCATCTC
GACCACGTTCGCTTTTCGCAACCGGGCTTTGAGGCTGGCGCCGAGATAACTGAGGATGGCCGGGTCAATATCAAC
ATCAACACCAAGAATACGAGGCTGGCTCATCTCCTCGCTGCGACGCTCCGTAGCCAGCCTTCGCCGTCGCCGGCT
TACTCCCCGGAGCCAAGCAGGGAGTTTCAGCCGCCTCCGCCTCTCAACGTCGTTGTTCAGATCGTCGGTTCGCGG
GGTGACGTCCAGCCGTTTGTGGCCTTGGGTAAGGTCCTTCAAGAAGAATATGGTCATCGGGTTCGCATCGCCACA
CACGCCACCTTCCGCGACTTCGTTCTCCACAATGGGCTCGAGTTCTTTGACATCGGCGGCGACCCTGCCGAGCTC
ATGGCCTTTATGGTCAAGCATCCCGGCCTCATGCCGGGCATGGACGCCCTCAAGAGTGGCGAGATCAGCAAGCGG
CGCAAGGGCATCCAGGACATTTTGCTGGGCTGTTGGCGCTCTTGCATCGAACCCGGCGACGGCTCTGGGCCGCCG
CTGAAACCCCATCCTCGGAACGAGCCGTTCGATCTGTCAGCTGGGCTGCCGGGCGACTCGAGCCTGAAGCCGTTC
GTGGCCGATGTCATCATCGCGAATCCACCGAGCTTCGCTCATGTCCACGTCGCCGAGAAGCTGGGCATTCCGCTG
CATATGATGTTTACCATGCCCTGGTCCCCCACCAGAGCTTTCCCACATCCCCTCGCCAACGTCGAGTCTTCCAAC
GCAGACGATGGCATGACCAACATCTTGACTTACACGCTAGTCGAGATGTTGACCTGGCAGGGTCTCGGCGATGTC
ATCAATCGTTTTCGAGAGAAGGCACTGGATCTTCCACCCCTTTCCTTTATCTTTGCCCCTGGCCTCCTCACCCGG
CTCAAGGTGCCTTATACCTACTGCTGGTCACCGTCGTTGATTCCCAAGCCGAATGACTGGGGCAGTAGGATTGAC
ATCTCGGGCTTCTACTTTCTCGATCTGGCCTCGGCCTTCACCCCCGACCCTGCGCTGGGGGCTTTTTTGGAAGCT
GGCCCGCCGCCGGTCTACATCGGTTTTGGGTCCATCGTCGTCGACGACCCTGATGCCATGACGCGCATGATTTTC
GGCGCCCTTCGTCAGTCCGGCGTCAGGGCTCTAGTGTCCAAAGGCTGGGGCGGTCTAGGCGTCGACGATGTTGGT
CTGCCCGAAGGCGTCTACATGCTTGGCAACGTCCCGCACGACTGGTTGTTCCAACACGTCTCCTGCGTGGTCCAC
CATGGCGGTGCGGGTACCACCGCGGCTGGGATCAAAGCTGGCAAGCCCACCTTTGTCGTTCCTTTCTTCGGTGAT
CAGCCCTTCTGGGGTGCCATGGTGGCAAGGGCCAAGGCCGGGCCGGAGCCGATACGCTACAAGGACCTGACGGCA
GAAAAGCTGTCTGAGGCCCTCCGCTTTTGTCTGAGGCCAGAGACCAAGGAGCGGGCCAAGGAGCTGGGCGAGAGA
ATCCGTAAGGAGCGCGGCACAAAGGCCGGCGGTGAGAGCTTTCACCAGCAACTCGACGTGGAGTCTCTTCGGTGC
GCTGTCGCACCAAATCAGGCAGCGGCGTGGCGCGTCAGGCGGAGCAAGGTTCAATTGTCTCCTTTGGCTGCCGCG
GTCCTCGTCGAAAAGGGGTTCCTCCAGTACACGGATGTCAAGCTATATCGGCCTCGCGAGTACAACACGGACGAC
CAGCCTCCGGATCCGATTACGGCCGGCGCATGCTCGCTTGTTGGAGATCTCAGTGGAATCGGCATGGCCATCGCC
GACATGCCGCGAGAGATGTTTGGATCGAACAAGCGGAGCAAAGATGGCGCTGCTCCTGGCTCGCCCCCAGCAAGA
GACATCAGCAGGGAGGCTTCGAGGGTCGAATCTGGTGAAGAGTTGGTCAGTTCGACGTCGTCTGCGCCGACGGGA
GCGGGCCAAGGCACTCCTCAAGCGTCCAGCAGCCAGCCGAGGCAGGGGACCACTAGCCCGGTCTCAAGTCCTCAG
GGCTTCAGCGTGGAGGCGGCCGTCGACGCTGGAAGAGGCGTTGGCCGTGTCGTGTCCACCGGTGTCAAGTCGCCC
ATGAATTTTTGCCTTGGACTAGCCAAGGGGTTCAGGAACGTTCCCCGGCTGTACAATGACGACACCGTTCGGCCC
ACGGAAAAAGTGACGGACTTGAGCAGCGGCATCAGAGTTGCCGGCAAGGAATTGGGATTGGGCTTTTTCGATGGA
ATCTCGGGACTCGTGACCCAACCGATGCGCGGGGCTGAAAAGGAGGGCGCCAGCGGCCTCATCAAAGGGTTCGGC
AAGGGCATCGGGGGCCTGATCGCGAAGCCCGCTGCCGGATTCTGGGGTGTTCCGGCGTACACGATGCAGGGCGTT
CATGCCCAAGTTTCCAAGCTGTTTTCGAAGAGCGTGCAGAACTACATCATGACGTCTCGAGTCCTTCAGGGCCAG
CGCGCCGCGGCGCAGACCACTTCTGAAGAGAAAGACGAGATGGTCGAACGATGGAATACGCTGAAGCCCGGCCTC
AAGGAGTTTTACGCGACAAGGCAAAAGGGCACGGCGTCGGGCGGGTCAGCAGCGATCGGGCAATCACGGCGGGAT
GGAGAGGAAGAAGGAATTCTAGACGGCAAGGCGAGTCGGAGGCGTACTCGTCGTCCTCTCTCGGAGATTATGGAT
CTGAAGGCTCAGAAGAAAGAGCTGAAGAAGCATACGCCGCCGTCGGTGTCAAGCGGTGGCCTCGGTCTCCCATCC
AACGGGTCCGACGACGCGGAATACGAAAGGGCCATTCGGCTTTCCGTCCAGGAAACGTCGCGGGGAAATGCCGAA
GAGGACGCGTCCATCGAAGCTGCCATTCGCAAAAGCCTACAGGCGATGCGACAACGAGGGGGTCTGCTGGAGCTC
ATCCCGGCATCAAGCGAGGGGGAGGAGAAGAAGAAGGAGGTGAAGGATAAGAAGGTGAAGACGGAAAAAATGAAG
CACGACGATGTGTTCGAAAGCGAGGACTTGACGATTACGGACGAGGAGTACCAGAAGCTAGTCGAGGAAGCCGTC
CGAAGGAGCCTCGGCCAGCGCGCAGACAGGGACGACGAAGACGACGAGGAGGCGGCGGCCATGAAGCACGCCATG
GCAGCCTCGTTGGAGGAGTCGCAGCGGGCGGCAGCCCAGCGGTCGGAGGAGGACATTGTGCTCGACTTCATCAAG
AGGCAGAGCTTGGCGGAGGAGGAGATTCAACGGCGGGTGCGCTCGGCAGAGGGGGCCGCGGAGCACAGGGGCTCG
GATGACGATGAGGAGCTACTTGCGGCGATTGAGGAAAGCCTGCGGATGCGCCGAGGCGAAAGGGAGGTCACGTCG
GAGCCGGCGACAGGA
Transcript >Ophio5|3532
ATGGTCATGGACCCTTCCGTCGTGCCGCGTCTCGGCCCGCCCGCCGATGCGCCTCCTCCTTATGGCGCCCATCTC
GACCACGTTCGCTTTTCGCAACCGGGCTTTGAGGCTGGCGCCGAGATAACTGAGGATGGCCGGGTCAATATCAAC
ATCAACACCAAGAATACGAGGCTGGCTCATCTCCTCGCTGCGACGCTCCGTAGCCAGCCTTCGCCGTCGCCGGCT
TACTCCCCGGAGCCAAGCAGGGAGTTTCAGCCGCCTCCGCCTCTCAACGTCGTTGTTCAGATCGTCGGTTCGCGG
GGTGACGTCCAGCCGTTTGTGGCCTTGGGTAAGGTCCTTCAAGAAGAATATGGTCATCGGGTTCGCATCGCCACA
CACGCCACCTTCCGCGACTTCGTTCTCCACAATGGGCTCGAGTTCTTTGACATCGGCGGCGACCCTGCCGAGCTC
ATGGCCTTTATGGTCAAGCATCCCGGCCTCATGCCGGGCATGGACGCCCTCAAGAGTGGCGAGATCAGCAAGCGG
CGCAAGGGCATCCAGGACATTTTGCTGGGCTGTTGGCGCTCTTGCATCGAACCCGGCGACGGCTCTGGGCCGCCG
CTGAAACCCCATCCTCGGAACGAGCCGTTCGATCTGTCAGCTGGGCTGCCGGGCGACTCGAGCCTGAAGCCGTTC
GTGGCCGATGTCATCATCGCGAATCCACCGAGCTTCGCTCATGTCCACGTCGCCGAGAAGCTGGGCATTCCGCTG
CATATGATGTTTACCATGCCCTGGTCCCCCACCAGAGCTTTCCCACATCCCCTCGCCAACGTCGAGTCTTCCAAC
GCAGACGATGGCATGACCAACATCTTGACTTACACGCTAGTCGAGATGTTGACCTGGCAGGGTCTCGGCGATGTC
ATCAATCGTTTTCGAGAGAAGGCACTGGATCTTCCACCCCTTTCCTTTATCTTTGCCCCTGGCCTCCTCACCCGG
CTCAAGGTGCCTTATACCTACTGCTGGTCACCGTCGTTGATTCCCAAGCCGAATGACTGGGGCAGTAGGATTGAC
ATCTCGGGCTTCTACTTTCTCGATCTGGCCTCGGCCTTCACCCCCGACCCTGCGCTGGGGGCTTTTTTGGAAGCT
GGCCCGCCGCCGGTCTACATCGGTTTTGGGTCCATCGTCGTCGACGACCCTGATGCCATGACGCGCATGATTTTC
GGCGCCCTTCGTCAGTCCGGCGTCAGGGCTCTAGTGTCCAAAGGCTGGGGCGGTCTAGGCGTCGACGATGTTGGT
CTGCCCGAAGGCGTCTACATGCTTGGCAACGTCCCGCACGACTGGTTGTTCCAACACGTCTCCTGCGTGGTCCAC
CATGGCGGTGCGGGTACCACCGCGGCTGGGATCAAAGCTGGCAAGCCCACCTTTGTCGTTCCTTTCTTCGGTGAT
CAGCCCTTCTGGGGTGCCATGGTGGCAAGGGCCAAGGCCGGGCCGGAGCCGATACGCTACAAGGACCTGACGGCA
GAAAAGCTGTCTGAGGCCCTCCGCTTTTGTCTGAGGCCAGAGACCAAGGAGCGGGCCAAGGAGCTGGGCGAGAGA
ATCCGTAAGGAGCGCGGCACAAAGGCCGGCGGTGAGAGCTTTCACCAGCAACTCGACGTGGAGTCTCTTCGGTGC
GCTGTCGCACCAAATCAGGCAGCGGCGTGGCGCGTCAGGCGGAGCAAGGTTCAATTGTCTCCTTTGGCTGCCGCG
GTCCTCGTCGAAAAGGGGTTCCTCCAGTACACGGATGTCAAGCTATATCGGCCTCGCGAGTACAACACGGACGAC
CAGCCTCCGGATCCGATTACGGCCGGCGCATGCTCGCTTGTTGGAGATCTCAGTGGAATCGGCATGGCCATCGCC
GACATGCCGCGAGAGATGTTTGGATCGAACAAGCGGAGCAAAGATGGCGCTGCTCCTGGCTCGCCCCCAGCAAGA
GACATCAGCAGGGAGGCTTCGAGGGTCGAATCTGGTGAAGAGTTGGTCAGTTCGACGTCGTCTGCGCCGACGGGA
GCGGGCCAAGGCACTCCTCAAGCGTCCAGCAGCCAGCCGAGGCAGGGGACCACTAGCCCGGTCTCAAGTCCTCAG
GGCTTCAGCGTGGAGGCGGCCGTCGACGCTGGAAGAGGCGTTGGCCGTGTCGTGTCCACCGGTGTCAAGTCGCCC
ATGAATTTTTGCCTTGGACTAGCCAAGGGGTTCAGGAACGTTCCCCGGCTGTACAATGACGACACCGTTCGGCCC
ACGGAAAAAGTGACGGACTTGAGCAGCGGCATCAGAGTTGCCGGCAAGGAATTGGGATTGGGCTTTTTCGATGGA
ATCTCGGGACTCGTGACCCAACCGATGCGCGGGGCTGAAAAGGAGGGCGCCAGCGGCCTCATCAAAGGGTTCGGC
AAGGGCATCGGGGGCCTGATCGCGAAGCCCGCTGCCGGATTCTGGGGTGTTCCGGCGTACACGATGCAGGGCGTT
CATGCCCAAGTTTCCAAGCTGTTTTCGAAGAGCGTGCAGAACTACATCATGACGTCTCGAGTCCTTCAGGGCCAG
CGCGCCGCGGCGCAGACCACTTCTGAAGAGAAAGACGAGATGGTCGAACGATGGAATACGCTGAAGCCCGGCCTC
AAGGAGTTTTACGCGACAAGGCAAAAGGGCACGGCGTCGGGCGGGTCAGCAGCGATCGGGCAATCACGGCGGGAT
GGAGAGGAAGAAGGAATTCTAGACGGCAAGGCGAGTCGGAGGCGTACTCGTCGTCCTCTCTCGGAGATTATGGAT
CTGAAGGCTCAGAAGAAAGAGCTGAAGAAGCATACGCCGCCGTCGGTGTCAAGCGGTGGCCTCGGTCTCCCATCC
AACGGGTCCGACGACGCGGAATACGAAAGGGCCATTCGGCTTTCCGTCCAGGAAACGTCGCGGGGAAATGCCGAA
GAGGACGCGTCCATCGAAGCTGCCATTCGCAAAAGCCTACAGGCGATGCGACAACGAGGGGGTCTGCTGGAGCTC
ATCCCGGCATCAAGCGAGGGGGAGGAGAAGAAGAAGGAGGTGAAGGATAAGAAGGTGAAGACGGAAAAAATGAAG
CACGACGATGTGTTCGAAAGCGAGGACTTGACGATTACGGACGAGGAGTACCAGAAGCTAGTCGAGGAAGCCGTC
CGAAGGAGCCTCGGCCAGCGCGCAGACAGGGACGACGAAGACGACGAGGAGGCGGCGGCCATGAAGCACGCCATG
GCAGCCTCGTTGGAGGAGTCGCAGCGGGCGGCAGCCCAGCGGTCGGAGGAGGACATTGTGCTCGACTTCATCAAG
AGGCAGAGCTTGGCGGAGGAGGAGATTCAACGGCGGGTGCGCTCGGCAGAGGGGGCCGCGGAGCACAGGGGCTCG
GATGACGATGAGGAGCTACTTGCGGCGATTGAGGAAAGCCTGCGGATGCGCCGAGGCGAAAGGGAGGTCACGTCG
GAGCCGGCGACAGGATGA
Gene >Ophio5|3532
ATGGTCATGGACCCTTCCGTCGTGCCGCGTCTCGGCCCGCCCGCCGATGCGCCTCCTCCTTATGGCGCCCATCTC
GACCACGTTCGCTTTTCGCAACCGGGCTTTGAGGCTGGCGCCGAGATAACTGGTACGCCGGGCACGTTACGTGGC
TGGAATGTTGCTGACGTCTTCAGAGGATGGCCGGGTCAATATCAACATCAACACCAAGAATACGAGGCTGGCTCA
TCTCCTCGCTGCGACGCTCCGTAGCCAGCCTTCGCCGTCGCCGGCTTACTCCCCGGAGCCAAGCAGGGAGTTTCA
GCCGCCTCCGCCTCTCAACGTCGTTGTTCAGATCGTCGGTTCGCGGGGTGACGTCCAGCCGTTTGTGGCCTTGGG
TAAGGTCCTTCAAGAAGAATATGGTCATCGGGTTCGCATCGCCACACACGCCACCTTCCGCGACTTCGTTCTCCA
CAATGGGCTCGAGTTCTTTGACATCGGCGGCGACCCTGCCGAGCTCATGGCCTTTATGGTCAAGCATCCCGGCCT
CATGCCGGGCATGGACGCCCTCAAGAGTGGCGAGATCAGCAAGCGGCGCAAGGGCATCCAGGACATTTTGCTGGG
CTGTTGGCGCTCTTGCATCGAACCCGGCGACGGCTCTGGGCCGCCGCTGAAACCCCATCCTCGGAACGAGCCGTT
CGATCTGTCAGCTGGGCTGCCGGGCGACTCGAGCCTGAAGCCGTTCGTGGCCGATGTCATCATCGCGAATCCACC
GAGCTTCGCTCATGTCCACGTCGCCGAGAAGCTGGGCATTCCGCTGCATATGATGTTTACGTGAGTCTGCACAAC
CCTCCATCTCCGAGAGGGTGTTGCTGAAGGACGAGGCAGCATGCCCTGGTCCCCCACCAGAGCTTTCCCACATCC
CCTCGCCAACGTCGAGTCTTCCAACGCAGACGATGGCATGACCAACATCTTGACTTACACGCTAGTCGAGATGTT
GACCTGGCAGGGTCTCGGCGATGTCATCAATCGTTTTCGAGAGAAGGCACTGGATCTTCCACCCCTTTCCTTTAT
CTTTGCCCCTGGCCTCCTCACCCGGCTCAAGGTGCCTTATACCTACTGCTGGTCACCGTCGTTGATTCCCAAGCC
GAATGACTGGGGCAGTAGGATTGACATCTCGGGCTTCTACTTTCTCGATCTGGCCTCGGCCTTCACCCCCGACCC
TGCGCTGGGGGCTTTTTTGGAAGCTGGCCCGCCGCCGGTCTACATCGGTTTTGGGTCCATCGTCGTCGACGACCC
TGATGCCATGACGCGCATGATTTTCGGCGCCCTTCGTCAGTCCGGCGTCAGGGCTCTAGTGTCCAAAGGCTGGGG
CGGTCTAGGCGTCGACGATGTTGGTCTGCCCGAAGGCGTCTACATGCTTGGCAACGTCCCGCACGACTGGTTGTT
CCAACACGTCTCCTGCGTGGTCCACCATGGCGGTGCGGGTACCACCGCGGCTGGGATCAAAGCTGGCAAGCCCAC
CTTTGTCGTTCCTTTCTTCGGTGATCAGCCCTTCTGGGGTGCCATGGTGGCAAGGGCCAAGGCCGGGCCGGAGCC
GATACGCTACAAGGACCTGACGGCAGAAAAGCTGTCTGAGGCCCTCCGCTTTTGTCTGAGGCCAGAGACCAAGGA
GCGGGCCAAGGAGCTGGGCGAGAGAATCCGTAAGGAGCGCGGCACAAAGGCCGGCGGTGAGAGCTTTCACCAGCA
ACTCGACGTGGAGTCTCTTCGGTGCGCTGTCGCACCAAATCAGGCAGCGGCGTGGCGCGTCAGGCGGAGCAAGGT
TCAATTGTCTCCTTTGGCTGCCGCGGTCCTCGTCGAAAAGGGGTTCCTCCAGTACACGGATGTCAAGCTGTACGA
AGACTCCTTTTTCACCTTGTCGCGCCCCGCACCGCTCGCTAACCGTGTCCCAGATATCGGCCTCGCGAGTACAAC
ACGGACGACCAGCCTCCGGATCCGATTACGGCCGGCGCATGCTCGCTTGTTGGAGATCTCAGTGGAATCGGCATG
GCCATCGCCGACATGCCGCGAGAGATGTTTGGATCGAACAAGCGGAGCAAAGATGGCGCTGCTCCTGGCTCGCCC
CCAGCAAGAGACATCAGCAGGGAGGCTTCGAGGGTCGAATCTGGTGAAGAGTTGGTCAGTTCGACGTCGTCTGCG
CCGACGGGAGCGGGCCAAGGCACTCCTCAAGCGTCCAGCAGCCAGCCGAGGCAGGGGACCACTAGCCCGGTCTCA
AGTCCTCAGGGCTTCAGCGTGGAGGCGGCCGTCGACGCTGGAAGAGGCGTTGGCCGTGTCGTGTCCACCGGTGTC
AAGTCGCCCATGAATTTTTGCCTTGGACTAGCCAAGGGGTTCAGGAACGTTCCCCGGCTGTACAATGACGACACC
GTTCGGCCCACGGAAAAAGTGACGGACTTGAGCAGCGGCATCAGAGTTGCCGGCAAGGAATTGGGATTGGGCTTT
TTCGATGGAATCTCGGGACTCGTGACCCAACCGATGCGCGGGGCTGAAAAGGAGGGCGCCAGCGGCCTCATCAAA
GGGTTCGGCAAGGGCATCGGGGGCCTGATCGCGAAGCCCGCTGCCGGTAAGTCGGTATGCCCTACTGGTTTAGGA
TTGGGGGCTAACGCTGGGCCAGGATTCTGGGGTGTTCCGGCGTACACGATGCAGGGCGTTCATGCCCAAGTTTCC
AAGCTGTTTTCGAAGAGCGTGCAGAACTACATCATGACGTCTCGAGTCCTTCAGGGCCAGCGCGCCGCGGCGCAG
ACCACTTCTGAAGAGAAAGACGAGATGGTCGAACGATGGAATACGCTGAAGCCCGGCCTCAAGGAGTTTTACGCG
ACAAGGCAAAAGGGCACGGCGTCGGGCGGGTCAGCAGCGATCGGGCAATCACGGCGGGATGGAGAGGAAGAAGGA
ATTCTAGACGGCAAGGCGAGTCGGAGGCGTACTCGTCGTCCTCTCTCGGAGATTATGGATCTGAAGGCTCAGAAG
AAAGAGCTGAAGAAGCATACGCCGCCGTCGGTGTCAAGCGGTGGCCTCGGTCTCCCATCCAACGGGTCCGACGAC
GCGGAATACGAAAGGGCCATTCGGCTTTCCGTCCAGGAAACGTCGCGGGGAAATGCCGAAGAGGACGCGTCCATC
GAAGCTGCCATTCGCAAAAGCCTACAGGCGATGCGACAACGAGGGGGTCTGCTGGAGCTCATCCCGGCATCAAGC
GAGGGGGAGGAGAAGAAGAAGGAGGTGAAGGATAAGAAGGTGAAGACGGAAAAAATGAAGCACGACGATGTGTTC
GAAAGCGAGGACTTGACGATTACGGACGAGGAGTACCAGAAGCTAGTCGAGGAAGCCGTCCGAAGGAGCCTCGGC
CAGCGCGCAGACAGGGACGACGAAGACGACGAGGAGGCGGCGGCCATGAAGCACGCCATGGCAGCCTCGTTGGAG
GAGTCGCAGCGGGCGGCAGCCCAGCGGTCGGAGGAGGACATTGTGCTCGACTTCATCAAGAGGCAGAGCTTGGCG
GAGGAGGAGATTCAACGGCGGGTGCGCTCGGCAGAGGGGGCCGCGGAGCACAGGGGCTCGGATGACGATGAGGAG
CTACTTGCGGCGATTGAGGAAAGCCTGCGGATGCGCCGAGGCGAAAGGGAGGTCACGTCGGAGCCGGCGACAGGA
TGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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