Fungal Genomics

at Utrecht University

General Properties

Protein IDOphun1|2622
Gene name
LocationContig_235:3559..5491
Strand+
Gene length (bp)1932
Transcript length (bp)1884
Coding sequence length (bp)1884
Protein length (aa) 628

Overview

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF08356 EF_assoc_2 EF hand associated 1.3E-33 220 306
PF08355 EF_assoc_1 EF hand associated 2.2E-30 344 416
PF00071 Ras Ras family 1.1E-15 6 167
PF00071 Ras Ras family 1.4E-04 427 548
PF08477 Roc Ras of Complex, Roc, domain of DAPkinase 3.8E-09 5 117

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|Q5ABR2|GEM1_CANAL Mitochondrial Rho GTPase 1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=GEM1 PE=3 SV=2 54 620 0.0E+00
sp|Q4I2W2|GEM1_GIBZE Mitochondrial Rho GTPase 1 OS=Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) GN=GEM1 PE=3 SV=1 1 626 0.0E+00
sp|O59781|GEM1_SCHPO Mitochondrial Rho GTPase 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=gem1 PE=3 SV=1 1 619 0.0E+00
sp|Q6FIR8|GEM1_CANGA Mitochondrial Rho GTPase 1 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=GEM1 PE=3 SV=1 3 590 0.0E+00
sp|Q6CY37|GEM1_KLULA Mitochondrial Rho GTPase 1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=GEM1 PE=3 SV=1 4 585 0.0E+00
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Swissprot ID Swissprot Description Start End E-value
sp|Q5ABR2|GEM1_CANAL Mitochondrial Rho GTPase 1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=GEM1 PE=3 SV=2 54 620 0.0E+00
sp|Q4I2W2|GEM1_GIBZE Mitochondrial Rho GTPase 1 OS=Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) GN=GEM1 PE=3 SV=1 1 626 0.0E+00
sp|O59781|GEM1_SCHPO Mitochondrial Rho GTPase 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=gem1 PE=3 SV=1 1 619 0.0E+00
sp|Q6FIR8|GEM1_CANGA Mitochondrial Rho GTPase 1 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=GEM1 PE=3 SV=1 3 590 0.0E+00
sp|Q6CY37|GEM1_KLULA Mitochondrial Rho GTPase 1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=GEM1 PE=3 SV=1 4 585 0.0E+00
sp|Q758X6|GEM1_ASHGO Mitochondrial Rho GTPase 1 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=GEM1 PE=3 SV=1 4 591 0.0E+00
sp|P39722|GEM1_YEAST Mitochondrial Rho GTPase 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=GEM1 PE=1 SV=1 3 623 0.0E+00
sp|Q6C2J1|GEM1_YARLI Mitochondrial Rho GTPase 1 OS=Yarrowia lipolytica (strain CLIB 122 / E 150) GN=GEM1 PE=3 SV=1 3 620 0.0E+00
sp|Q5B5L3|GEM1_EMENI Mitochondrial Rho GTPase 1 OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=gem1 PE=3 SV=1 1 627 0.0E+00
sp|Q2UM43|GEM1_ASPOR Mitochondrial Rho GTPase 1 OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=gem1 PE=3 SV=1 1 627 0.0E+00
sp|Q4WN24|GEM1_ASPFU Mitochondrial Rho GTPase 1 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=gem1 PE=3 SV=1 1 627 0.0E+00
sp|Q7RZA2|GEM1_NEUCR Mitochondrial Rho GTPase 1 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=gem-1 PE=3 SV=1 4 627 0.0E+00
sp|P0CO78|GEM1_CRYNJ Mitochondrial Rho GTPase 1 OS=Cryptococcus neoformans var. neoformans serotype D (strain JEC21 / ATCC MYA-565) GN=GEM1 PE=3 SV=1 4 622 1.0E-176
sp|P0CO79|GEM1_CRYNB Mitochondrial Rho GTPase 1 OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) GN=GEM1 PE=3 SV=1 4 622 1.0E-176
sp|Q4PB75|GEM1_USTMA Mitochondrial Rho GTPase 1 OS=Ustilago maydis (strain 521 / FGSC 9021) GN=GEM1 PE=3 SV=1 4 585 1.0E-162
sp|Q5ZM83|MIRO2_CHICK Mitochondrial Rho GTPase 2 OS=Gallus gallus GN=RHOT2 PE=2 SV=1 4 624 1.0E-119
sp|Q5E9M9|MIRO2_BOVIN Mitochondrial Rho GTPase 2 OS=Bos taurus GN=RHOT2 PE=2 SV=1 4 619 1.0E-116
sp|Q8IXI1|MIRO2_HUMAN Mitochondrial Rho GTPase 2 OS=Homo sapiens GN=RHOT2 PE=1 SV=2 4 587 5.0E-116
sp|Q6DIS1|MIRO2_XENTR Mitochondrial Rho GTPase 2 OS=Xenopus tropicalis GN=rhot2 PE=2 SV=1 4 621 1.0E-114
sp|F4J0W4|MIRO2_ARATH Mitochondrial Rho GTPase 2 OS=Arabidopsis thaliana GN=MIRO2 PE=2 SV=1 3 621 4.0E-114
sp|Q8RXF8|MIRO1_ARATH Mitochondrial Rho GTPase 1 OS=Arabidopsis thaliana GN=MIRO1 PE=1 SV=1 3 593 8.0E-114
sp|Q8JZN7|MIRO2_MOUSE Mitochondrial Rho GTPase 2 OS=Mus musculus GN=Rhot2 PE=1 SV=1 4 587 3.0E-113
sp|Q94263|MIRO1_CAEEL Mitochondrial Rho GTPase 1 OS=Caenorhabditis elegans GN=miro-1 PE=3 SV=1 1 587 3.0E-111
sp|Q298L5|MIRO_DROPS Mitochondrial Rho GTPase OS=Drosophila pseudoobscura pseudoobscura GN=Miro PE=3 SV=1 4 587 4.0E-110
sp|Q6NVC5|MIRO1_DANRE Mitochondrial Rho GTPase 1-A OS=Danio rerio GN=rhot1a PE=2 SV=1 4 615 4.0E-109
sp|Q7TSA0|MIRO2_RAT Mitochondrial Rho GTPase 2 OS=Rattus norvegicus GN=Rhot2 PE=2 SV=1 4 588 1.0E-108
sp|Q8IMX7|MIRO_DROME Mitochondrial Rho GTPase OS=Drosophila melanogaster GN=Miro PE=1 SV=1 4 627 3.0E-108
sp|Q623S8|MIRO1_CAEBR Mitochondrial Rho GTPase 1 OS=Caenorhabditis briggsae GN=miro-1 PE=3 SV=3 1 587 9.0E-108
sp|Q8IXI2|MIRO1_HUMAN Mitochondrial Rho GTPase 1 OS=Homo sapiens GN=RHOT1 PE=1 SV=2 4 587 9.0E-106
sp|Q8BG51|MIRO1_MOUSE Mitochondrial Rho GTPase 1 OS=Mus musculus GN=Rhot1 PE=1 SV=1 4 587 2.0E-105
sp|Q2HJF8|MIRO1_BOVIN Mitochondrial Rho GTPase 1 OS=Bos taurus GN=RHOT1 PE=2 SV=1 4 587 2.0E-105
sp|Q32LU1|MIRO2_DANRE Mitochondrial Rho GTPase 2 OS=Danio rerio GN=rhot2 PE=2 SV=1 4 621 2.0E-105
sp|Q5ZM73|MIRO1_CHICK Mitochondrial Rho GTPase 1 OS=Gallus gallus GN=RHOT1 PE=2 SV=1 4 587 2.0E-103
sp|Q864R5|MIRO2_PIG Mitochondrial Rho GTPase 2 OS=Sus scrofa GN=RHOT2 PE=2 SV=1 4 587 6.0E-98
sp|Q9MA88|MIRO3_ARATH Mitochondrial Rho GTPase 3 OS=Arabidopsis thaliana GN=MIRO3 PE=2 SV=1 4 593 8.0E-96
sp|Q55G45|GEMA_DICDI Probable mitochondrial Rho GTPase gemA OS=Dictyostelium discoideum GN=gemA PE=3 SV=1 4 514 5.0E-74
sp|P36861|YPTV2_VOLCA GTP-binding protein yptV2 OS=Volvox carteri GN=YPTV2 PE=3 SV=1 2 167 5.0E-06
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GO

GO Term Description Terminal node
GO:0005525 GTP binding Yes
GO:0003924 GTPase activity Yes
GO:0035639 purine ribonucleoside triphosphate binding No
GO:0032555 purine ribonucleotide binding No
GO:0032553 ribonucleotide binding No
GO:0036094 small molecule binding No
GO:0003824 catalytic activity No
GO:0097367 carbohydrate derivative binding No
GO:0016818 hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides No
GO:0097159 organic cyclic compound binding No
GO:0016817 hydrolase activity, acting on acid anhydrides No
GO:1901363 heterocyclic compound binding No
GO:0019001 guanyl nucleotide binding No
GO:0017076 purine nucleotide binding No
GO:0043167 ion binding No
GO:0032561 guanyl ribonucleotide binding No
GO:0003674 molecular_function No
GO:0017111 nucleoside-triphosphatase activity No
GO:1901265 nucleoside phosphate binding No
GO:0043168 anion binding No
GO:0005488 binding No
GO:0016462 pyrophosphatase activity No
GO:0016787 hydrolase activity No
GO:0000166 nucleotide binding No

Deeploc

Deeploc data not available for this genome

SignalP

(None)

Transmembrane Domains

Domain # Start End Length
1 601 620 19

Transcription Factor Class

(None)

CAZymes

(None)

Secondary Metabolism

(None)

Expression data

No expression data available for this genome

Orthologs

Orthofinder run ID4
Orthogroup1239
Change Orthofinder run
Species Protein ID
Ophiocordyceps australis 1348a (Ghana) OphauG2|6217
Ophiocordyceps australis map64 (Brazil) OphauB2|7080
Ophiocordyceps camponoti-floridani Ophcf2|01193
Ophiocordyceps camponoti-rufipedis Ophun1|2622 (this protein)
Ophiocordyceps kimflemingae Ophio5|700
Ophiocordyceps subramaniannii Hirsu2|10429

Sequences

Type of sequenceSequence
Locus Download genbank file of locus Download genbank file of locus (reverse complement)
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 >Ophun1|2622
MATVRVCVCGDESTGKSSLIASLVKDQFMSNKIQAVLPQITIPPSIGTPENVTTTIVDTSARPQDRTTLRKEIRK
SNVILLVYADHYSYERVALFWMPYFRSLGVNVPVVLCANKSDLAGQANTPQVVEEEMLPVMAEFREIDSCIRTSA
RDHRNVNEVFFLCQKAVTHPIAPLFDYKEGHLKPACVAALTRVFFLCDKDQDGYLNDQEMRDFQARCFDKPLTCD
DLDNIKLSISKSLHNANMDKGVDRPGFLQLNKIYAEKGRHETIWIILRKYHYTDSLSLEDKFLHPKFDVPEYSSA
ELSPAGYRFFVDMFLLFDKDSDGGLNDQELEALFSPTPGLPASWADSAFPSTTVRNEAGHITLQGWLAQWSMTTF
LEPKTTIEYLAYLGFEPSNPKDSITSALKITKSRKRRRRPGRVERNVVLCYLVGASGAGKSSLLDAFLNRPWEGL
YHPTIKPRRAVNSVELPGGKQVYLILEELGELEPAILENQAKLQACDLICYAYDSSDPDSFSHIAETRCKYAHLD
ELPSVYTALKADRDKTTQRSELQPDQYTSSLNVNTPLHVSVAWGGIGELFVNLAETATTPSLGFPKTDDDGPDRT
SLYLTLGATACAAFAALIIWRRTANAA*
Coding >Ophun1|2622
ATGGCGACAGTGCGCGTCTGCGTCTGCGGCGACGAGAGCACGGGCAAGTCTAGCCTGATTGCCTCGCTCGTCAAG
GACCAGTTCATGAGCAACAAGATCCAGGCCGTCTTGCCTCAGATAACCATCCCCCCAAGCATTGGCACCCCCGAA
AACGTCACGACGACAATCGTCGACACCTCGGCCCGTCCCCAGGACCGCACCACGCTGCGCAAAGAGATCCGCAAG
AGCAACGTCATCCTGCTCGTCTATGCCGACCACTACAGCTACGAGAGGGTCGCCCTCTTCTGGATGCCCTACTTT
CGCTCCCTCGGCGTCAACGTCCCCGTCGTCCTCTGCGCCAACAAGTCGGACCTCGCCGGCCAGGCCAACACGCCT
CAGGTTGTCGAGGAGGAGATGCTACCCGTCATGGCCGAGTTCCGCGAGATCGACTCGTGCATTCGCACCAGCGCC
CGCGATCATCGCAACGTCAACGAGGTCTTCTTCCTCTGCCAAAAGGCCGTCACCCATCCCATCGCCCCGCTCTTT
GACTACAAGGAGGGTCATCTTAAGCCCGCCTGCGTGGCCGCCTTGACTCGCGTCTTCTTCCTCTGCGACAAGGAT
CAAGACGGCTATCTCAACGATCAGGAGATGCGCGACTTTCAGGCCCGCTGTTTCGATAAGCCCCTGACCTGCGAC
GATCTCGATAACATCAAGCTCTCCATCTCAAAGTCGCTCCACAACGCCAACATGGACAAGGGCGTCGACCGTCCG
GGCTTCCTTCAGCTCAACAAGATATACGCCGAGAAGGGGAGGCACGAGACGATATGGATCATCCTGCGCAAGTAC
CACTACACCGACAGCTTGAGCCTCGAAGACAAGTTCCTCCACCCCAAATTCGACGTCCCCGAATACTCGTCGGCC
GAGCTGAGCCCCGCCGGCTATCGCTTCTTCGTCGACATGTTCCTCCTCTTCGACAAGGACAGCGACGGCGGCCTC
AACGACCAGGAGCTCGAGGCCCTGTTCTCTCCGACGCCCGGTCTGCCAGCGTCCTGGGCCGACTCGGCCTTTCCG
TCGACGACGGTCAGAAACGAGGCCGGTCATATCACTCTGCAGGGATGGTTGGCCCAGTGGAGCATGACGACGTTT
CTCGAACCCAAGACGACGATAGAGTATCTGGCCTACCTGGGCTTCGAACCGTCCAACCCCAAAGACTCCATCACC
TCGGCCCTCAAGATCACAAAGTCGCGCAAGAGGAGGAGACGTCCCGGCCGAGTGGAGAGAAACGTCGTCCTCTGC
TACCTCGTGGGTGCGTCGGGCGCCGGCAAGTCATCGCTGCTCGATGCCTTCCTGAACCGCCCCTGGGAAGGTCTA
TATCATCCGACAATCAAGCCTCGGCGGGCCGTCAACAGCGTCGAGCTGCCCGGCGGCAAGCAGGTCTACCTGATA
CTCGAGGAACTCGGCGAGCTCGAGCCAGCCATCCTAGAGAACCAAGCCAAGCTACAGGCGTGCGACCTCATCTGC
TACGCCTACGACTCATCCGACCCAGACTCCTTCTCGCACATAGCCGAAACACGATGCAAATACGCCCACCTCGAC
GAGCTCCCCTCCGTCTACACAGCCCTCAAAGCAGACAGAGACAAGACGACGCAACGCAGCGAGCTCCAGCCCGAC
CAGTACACATCGTCCCTCAACGTCAACACGCCGCTGCACGTCAGCGTCGCCTGGGGCGGCATCGGCGAGCTCTTC
GTCAACCTCGCCGAAACCGCCACCACCCCGAGCCTCGGCTTCCCCAAGACGGACGACGATGGGCCCGACCGTACC
AGCCTGTACCTCACCCTCGGCGCCACTGCTTGCGCCGCCTTTGCCGCCCTGATCATCTGGCGGCGCACTGCCAAT
GCGGCCTGA
Transcript >Ophun1|2622
ATGGCGACAGTGCGCGTCTGCGTCTGCGGCGACGAGAGCACGGGCAAGTCTAGCCTGATTGCCTCGCTCGTCAAG
GACCAGTTCATGAGCAACAAGATCCAGGCCGTCTTGCCTCAGATAACCATCCCCCCAAGCATTGGCACCCCCGAA
AACGTCACGACGACAATCGTCGACACCTCGGCCCGTCCCCAGGACCGCACCACGCTGCGCAAAGAGATCCGCAAG
AGCAACGTCATCCTGCTCGTCTATGCCGACCACTACAGCTACGAGAGGGTCGCCCTCTTCTGGATGCCCTACTTT
CGCTCCCTCGGCGTCAACGTCCCCGTCGTCCTCTGCGCCAACAAGTCGGACCTCGCCGGCCAGGCCAACACGCCT
CAGGTTGTCGAGGAGGAGATGCTACCCGTCATGGCCGAGTTCCGCGAGATCGACTCGTGCATTCGCACCAGCGCC
CGCGATCATCGCAACGTCAACGAGGTCTTCTTCCTCTGCCAAAAGGCCGTCACCCATCCCATCGCCCCGCTCTTT
GACTACAAGGAGGGTCATCTTAAGCCCGCCTGCGTGGCCGCCTTGACTCGCGTCTTCTTCCTCTGCGACAAGGAT
CAAGACGGCTATCTCAACGATCAGGAGATGCGCGACTTTCAGGCCCGCTGTTTCGATAAGCCCCTGACCTGCGAC
GATCTCGATAACATCAAGCTCTCCATCTCAAAGTCGCTCCACAACGCCAACATGGACAAGGGCGTCGACCGTCCG
GGCTTCCTTCAGCTCAACAAGATATACGCCGAGAAGGGGAGGCACGAGACGATATGGATCATCCTGCGCAAGTAC
CACTACACCGACAGCTTGAGCCTCGAAGACAAGTTCCTCCACCCCAAATTCGACGTCCCCGAATACTCGTCGGCC
GAGCTGAGCCCCGCCGGCTATCGCTTCTTCGTCGACATGTTCCTCCTCTTCGACAAGGACAGCGACGGCGGCCTC
AACGACCAGGAGCTCGAGGCCCTGTTCTCTCCGACGCCCGGTCTGCCAGCGTCCTGGGCCGACTCGGCCTTTCCG
TCGACGACGGTCAGAAACGAGGCCGGTCATATCACTCTGCAGGGATGGTTGGCCCAGTGGAGCATGACGACGTTT
CTCGAACCCAAGACGACGATAGAGTATCTGGCCTACCTGGGCTTCGAACCGTCCAACCCCAAAGACTCCATCACC
TCGGCCCTCAAGATCACAAAGTCGCGCAAGAGGAGGAGACGTCCCGGCCGAGTGGAGAGAAACGTCGTCCTCTGC
TACCTCGTGGGTGCGTCGGGCGCCGGCAAGTCATCGCTGCTCGATGCCTTCCTGAACCGCCCCTGGGAAGGTCTA
TATCATCCGACAATCAAGCCTCGGCGGGCCGTCAACAGCGTCGAGCTGCCCGGCGGCAAGCAGGTCTACCTGATA
CTCGAGGAACTCGGCGAGCTCGAGCCAGCCATCCTAGAGAACCAAGCCAAGCTACAGGCGTGCGACCTCATCTGC
TACGCCTACGACTCATCCGACCCAGACTCCTTCTCGCACATAGCCGAAACACGATGCAAATACGCCCACCTCGAC
GAGCTCCCCTCCGTCTACACAGCCCTCAAAGCAGACAGAGACAAGACGACGCAACGCAGCGAGCTCCAGCCCGAC
CAGTACACATCGTCCCTCAACGTCAACACGCCGCTGCACGTCAGCGTCGCCTGGGGCGGCATCGGCGAGCTCTTC
GTCAACCTCGCCGAAACCGCCACCACCCCGAGCCTCGGCTTCCCCAAGACGGACGACGATGGGCCCGACCGTACC
AGCCTGTACCTCACCCTCGGCGCCACTGCTTGCGCCGCCTTTGCCGCCCTGATCATCTGGCGGCGCACTGCCAAT
GCGGCCTGA
Gene >Ophun1|2622
ATGGCGACAGGTATGTTCAGCGTCTGGCCCTGGCTTCGTTCGTCGTTGACTCGGCCAGTGCGCGTCTGCGTCTGC
GGCGACGAGAGCACGGGCAAGTCTAGCCTGATTGCCTCGCTCGTCAAGGACCAGTTCATGAGCAACAAGATCCAG
GCCGTCTTGCCTCAGATAACCATCCCCCCAAGCATTGGCACCCCCGAAAACGTCACGACGACAATCGTCGACACC
TCGGCCCGTCCCCAGGACCGCACCACGCTGCGCAAAGAGATCCGCAAGAGCAACGTCATCCTGCTCGTCTATGCC
GACCACTACAGCTACGAGAGGGTCGCCCTCTTCTGGATGCCCTACTTTCGCTCCCTCGGCGTCAACGTCCCCGTC
GTCCTCTGCGCCAACAAGTCGGACCTCGCCGGCCAGGCCAACACGCCTCAGGTTGTCGAGGAGGAGATGCTACCC
GTCATGGCCGAGTTCCGCGAGATCGACTCGTGCATTCGCACCAGCGCCCGCGATCATCGCAACGTCAACGAGGTC
TTCTTCCTCTGCCAAAAGGCCGTCACCCATCCCATCGCCCCGCTCTTTGACTACAAGGAGGGTCATCTTAAGCCC
GCCTGCGTGGCCGCCTTGACTCGCGTCTTCTTCCTCTGCGACAAGGATCAAGACGGCTATCTCAACGATCAGGAG
ATGCGCGACTTTCAGGCCCGCTGTTTCGATAAGCCCCTGACCTGCGACGATCTCGATAACATCAAGCTCTCCATC
TCAAAGTCGCTCCACAACGCCAACATGGACAAGGGCGTCGACCGTCCGGGCTTCCTTCAGCTCAACAAGATATAC
GCCGAGAAGGGGAGGCACGAGACGATATGGATCATCCTGCGCAAGTACCACTACACCGACAGCTTGAGCCTCGAA
GACAAGTTCCTCCACCCCAAATTCGACGTCCCCGAATACTCGTCGGCCGAGCTGAGCCCCGCCGGCTATCGCTTC
TTCGTCGACATGTTCCTCCTCTTCGACAAGGACAGCGACGGCGGCCTCAACGACCAGGAGCTCGAGGCCCTGTTC
TCTCCGACGCCCGGTCTGCCAGCGTCCTGGGCCGACTCGGCCTTTCCGTCGACGACGGTCAGAAACGAGGCCGGT
CATATCACTCTGCAGGGATGGTTGGCCCAGTGGAGCATGACGACGTTTCTCGAACCCAAGACGACGATAGAGTAT
CTGGCCTACCTGGGCTTCGAACCGTCCAACCCCAAAGACTCCATCACCTCGGCCCTCAAGATCACAAAGTCGCGC
AAGAGGAGGAGACGTCCCGGCCGAGTGGAGAGAAACGTCGTCCTCTGCTACCTCGTGGGTGCGTCGGGCGCCGGC
AAGTCATCGCTGCTCGATGCCTTCCTGAACCGCCCCTGGGAAGGTCTATATCATCCGACAATCAAGCCTCGGCGG
GCCGTCAACAGCGTCGAGCTGCCCGGCGGCAAGCAGGTCTACCTGATACTCGAGGAACTCGGCGAGCTCGAGCCA
GCCATCCTAGAGAACCAAGCCAAGCTACAGGCGTGCGACCTCATCTGCTACGCCTACGACTCATCCGACCCAGAC
TCCTTCTCGCACATAGCCGAAACACGATGCAAATACGCCCACCTCGACGAGCTCCCCTCCGTCTACACAGCCCTC
AAAGCAGACAGAGACAAGACGACGCAACGCAGCGAGCTCCAGCCCGACCAGTACACATCGTCCCTCAACGTCAAC
ACGCCGCTGCACGTCAGCGTCGCCTGGGGCGGCATCGGCGAGCTCTTCGTCAACCTCGCCGAAACCGCCACCACC
CCGAGCCTCGGCTTCCCCAAGACGGACGACGATGGGCCCGACCGTACCAGCCTGTACCTCACCCTCGGCGCCACT
GCTTGCGCCGCCTTTGCCGCCCTGATCATCTGGCGGCGCACTGCCAATGCGGCCTGA

© 2023 - Robin Ohm - Utrecht University - The Netherlands

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