Fungal Genomics

at Utrecht University

General Properties

Protein IDOphun1|3063
Gene name
LocationContig_271:16639..18602
Strand+
Gene length (bp)1963
Transcript length (bp)1824
Coding sequence length (bp)1824
Protein length (aa) 608

Your browser does not support drawing a protein figure.

PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF13401 AAA_22 AAA domain 1.2E-10 153 282
PF13191 AAA_16 AAA ATPase domain 4.1E-10 128 225
PF00004 AAA ATPase family associated with various cellular activities (AAA) 6.5E-06 157 292
PF17872 AAA_lid_10 AAA lid domain 5.6E-06 338 384

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|P41411|CDC18_SCHPO Cell division control protein 18 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=cdc18 PE=1 SV=1 128 535 6.0E-68
sp|O89033|CDC6_MOUSE Cell division control protein 6 homolog OS=Mus musculus GN=Cdc6 PE=1 SV=2 110 557 3.0E-48
sp|Q8W032|CDC6B_ARATH Cell division control protein 6 homolog B OS=Arabidopsis thaliana GN=CDC6B PE=2 SV=1 13 375 2.0E-43
sp|Q99741|CDC6_HUMAN Cell division control protein 6 homolog OS=Homo sapiens GN=CDC6 PE=1 SV=1 110 535 7.0E-42
sp|P09119|CDC6_YEAST Cell division control protein 6 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC6 PE=1 SV=3 63 536 8.0E-34
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|P41411|CDC18_SCHPO Cell division control protein 18 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=cdc18 PE=1 SV=1 128 535 6.0E-68
sp|O89033|CDC6_MOUSE Cell division control protein 6 homolog OS=Mus musculus GN=Cdc6 PE=1 SV=2 110 557 3.0E-48
sp|Q8W032|CDC6B_ARATH Cell division control protein 6 homolog B OS=Arabidopsis thaliana GN=CDC6B PE=2 SV=1 13 375 2.0E-43
sp|Q99741|CDC6_HUMAN Cell division control protein 6 homolog OS=Homo sapiens GN=CDC6 PE=1 SV=1 110 535 7.0E-42
sp|P09119|CDC6_YEAST Cell division control protein 6 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CDC6 PE=1 SV=3 63 536 8.0E-34
sp|Q5N897|CDC6_ORYSJ Cell division control protein 6 homolog OS=Oryza sativa subsp. japonica GN=CDC6 PE=2 SV=1 128 441 1.0E-33
sp|O82387|CDC6A_ARATH Cell division control protein 6 homolog OS=Arabidopsis thaliana GN=CDC6 PE=2 SV=2 125 383 2.0E-29
sp|Q54RM2|ORC1_DICDI Origin recognition complex subunit 1 OS=Dictyostelium discoideum GN=orcA PE=3 SV=1 111 377 1.0E-28
sp|Q710E8|ORC1A_ARATH Origin of replication complex subunit 1A OS=Arabidopsis thaliana GN=ORC1A PE=1 SV=1 109 389 3.0E-26
sp|Q8I615|ORC1_PLAF7 Origin recognition complex subunit 1 OS=Plasmodium falciparum (isolate 3D7) GN=orc1 PE=2 SV=1 115 448 4.0E-24
sp|Q9SU24|ORC1B_ARATH Origin of replication complex subunit 1B OS=Arabidopsis thaliana GN=ORC1B PE=1 SV=1 109 389 2.0E-23
sp|P54789|ORC1_SCHPO Origin recognition complex subunit 1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=orc1 PE=1 SV=1 42 371 2.0E-23
sp|Q5SMU7|ORC1_ORYSJ Origin of replication complex subunit 1 OS=Oryza sativa subsp. japonica GN=ORC1 PE=2 SV=1 125 375 2.0E-22
sp|O16810|ORC1_DROME Origin recognition complex subunit 1 OS=Drosophila melanogaster GN=Orc1 PE=1 SV=2 115 371 8.0E-22
sp|Q80Z32|ORC1_RAT Origin recognition complex subunit 1 OS=Rattus norvegicus GN=Orc1 PE=2 SV=1 154 372 1.0E-21
sp|Q9Z1N2|ORC1_MOUSE Origin recognition complex subunit 1 OS=Mus musculus GN=Orc1 PE=1 SV=2 154 371 4.0E-21
sp|Q9JI69|ORC1_CRIGR Origin recognition complex subunit 1 OS=Cricetulus griseus GN=ORC1 PE=2 SV=1 110 371 9.0E-21
sp|Q58DC8|ORC1_BOVIN Origin recognition complex subunit 1 OS=Bos taurus GN=ORC1 PE=2 SV=2 154 371 1.0E-20
sp|Q13415|ORC1_HUMAN Origin recognition complex subunit 1 OS=Homo sapiens GN=ORC1 PE=1 SV=2 154 371 1.0E-20
sp|P54784|ORC1_YEAST Origin recognition complex subunit 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=ORC1 PE=1 SV=1 134 378 4.0E-19
sp|Q6BSE2|ORC1_DEBHA Origin recognition complex subunit 1 OS=Debaryomyces hansenii (strain ATCC 36239 / CBS 767 / JCM 1990 / NBRC 0083 / IGC 2968) GN=ORC1 PE=3 SV=2 134 388 1.0E-18
sp|O74270|ORC1_CANAX Origin recognition complex subunit 1 OS=Candida albicans GN=ORC1 PE=2 SV=1 130 373 1.0E-18
sp|P54788|ORC1_KLULA Origin recognition complex subunit 1 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=ORC1 PE=3 SV=2 155 483 1.0E-15
sp|Q6KZL0|CDC6_PICTO ORC1-type DNA replication protein OS=Picrophilus torridus (strain ATCC 700027 / DSM 9790 / JCM 10055 / NBRC 100828) GN=cdc6 PE=3 SV=1 125 377 5.0E-12
sp|O29995|CDC61_ARCFU ORC1-type DNA replication protein 1 OS=Archaeoglobus fulgidus (strain ATCC 49558 / VC-16 / DSM 4304 / JCM 9628 / NBRC 100126) GN=cdc6-1 PE=3 SV=1 116 373 2.0E-10
sp|Q9HKG3|CDC62_THEAC ORC1-type DNA replication protein 2 OS=Thermoplasma acidophilum (strain ATCC 25905 / DSM 1728 / JCM 9062 / NBRC 15155 / AMRC-C165) GN=cdc6-2 PE=1 SV=1 182 386 2.0E-10
sp|Q97AP1|CDC6_THEVO ORC1-type DNA replication protein OS=Thermoplasma volcanium (strain ATCC 51530 / DSM 4299 / JCM 9571 / NBRC 15438 / GSS1) GN=cdc6 PE=3 SV=2 242 389 8.0E-10
sp|A2SPC3|CDC6_METLZ ORC1-type DNA replication protein OS=Methanocorpusculum labreanum (strain ATCC 43576 / DSM 4855 / Z) GN=cdc6 PE=3 SV=1 118 386 2.0E-09
sp|O27463|CDC61_METTH ORC1-type DNA replication protein 1 OS=Methanothermobacter thermautotrophicus (strain ATCC 29096 / DSM 1053 / JCM 10044 / NBRC 100330 / Delta H) GN=cdc6-1 PE=1 SV=1 109 366 3.0E-09
sp|Q5V7I2|CDC6O_HALMA ORC1-type DNA replication protein 15 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=cdc6o PE=3 SV=1 156 388 4.0E-09
sp|Q9V2F2|CDC6_PYRAB ORC1-type DNA replication protein OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=cdc6 PE=1 SV=2 156 388 5.0E-09
sp|Q9HMS3|CDC67_HALSA ORC1-type DNA replication protein 7 OS=Halobacterium salinarum (strain ATCC 700922 / JCM 11081 / NRC-1) GN=orc7 PE=3 SV=1 244 371 1.0E-07
sp|O57864|CDC6_PYRHO ORC1-type DNA replication protein OS=Pyrococcus horikoshii (strain ATCC 700860 / DSM 12428 / JCM 9974 / NBRC 100139 / OT-3) GN=cdc6 PE=3 SV=2 156 388 1.0E-07
sp|Q2FN79|CDC6_METHJ ORC1-type DNA replication protein OS=Methanospirillum hungatei JF-1 (strain ATCC 27890 / DSM 864 / NBRC 100397 / JF-1) GN=cdc6 PE=3 SV=1 116 374 7.0E-07
sp|A3CRD6|CDC6_METMJ ORC1-type DNA replication protein OS=Methanoculleus marisnigri (strain ATCC 35101 / DSM 1498 / JR1) GN=cdc6 PE=3 SV=1 156 374 8.0E-07
sp|Q975X3|CDC61_SULTO ORC1-type DNA replication protein 1 OS=Sulfolobus tokodaii (strain DSM 16993 / JCM 10545 / NBRC 100140 / 7) GN=cdc6-1 PE=3 SV=1 116 371 8.0E-07
sp|Q5UZ24|CDC6D_HALMA ORC1-type DNA replication protein 4 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=cdc6d PE=3 SV=1 241 371 1.0E-06
sp|A7I464|CDC6_METB6 ORC1-type DNA replication protein OS=Methanoregula boonei (strain 6A8) GN=cdc6 PE=3 SV=1 156 364 2.0E-06
sp|Q5UWT2|CDC6A_HALMA ORC1-type DNA replication protein 1 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=cdc6a PE=3 SV=1 102 373 2.0E-06
sp|Q5V6G0|CDC6K_HALMA ORC1-type DNA replication protein 11 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=cdc6k PE=3 SV=1 116 369 2.0E-06
sp|Q9HSW6|CDC6A_HALSA ORC1-type DNA replication protein 10 OS=Halobacterium salinarum (strain ATCC 700922 / JCM 11081 / NRC-1) GN=orc10 PE=3 SV=2 124 371 5.0E-06
sp|Q2NIC5|CDC6_METST ORC1-type DNA replication protein OS=Methanosphaera stadtmanae (strain ATCC 43021 / DSM 3091 / JCM 11832 / MCB-3) GN=cdc6 PE=3 SV=1 158 393 5.0E-06
sp|Q980N4|CDC61_SULSO ORC1-type DNA replication protein 1 OS=Sulfolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2) GN=cdc6-1 PE=1 SV=1 156 386 5.0E-06
sp|A0RYN2|CDC6_CENSY ORC1-type DNA replication protein OS=Cenarchaeum symbiosum (strain A) GN=cdc6 PE=3 SV=1 156 371 7.0E-06
[Show less]

GO

GO Term Description Terminal node
GO:0005524 ATP binding Yes
GO:0016887 ATP hydrolysis 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:0032559 adenyl ribonucleotide binding No
GO:1901363 heterocyclic compound binding No
GO:0030554 adenyl nucleotide binding No
GO:0017076 purine nucleotide binding No
GO:0043167 ion 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

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 22 0.45

Transmembrane Domains

(None)

Transcription Factor Class

(None)

Expression data

No expression data available for this genome

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 >Ophun1|3063
MARVVLGKRAPGSSPVKPASAQTPCKRTRHGTSYSIPDQGNDENQDPREVEDVDERPRKQARLPVTPSTPRHRDA
LASQTSTPRHAVMSAGKLFRRMTPQSPLSPSTVQTVYHGARQLFARGVEPGRIVGREAEREQLSRFLDRCETASP
SPHGCLYVSGAPGTGKSALVVDMTRDCSSRDGVRAAYINCMSIKSSKDLYVTLLSELGLAADATTEAGAVSTLQQ
AFCPKSKSKSKSSSAVYQVTLDEMDHVLTMGLESLYRIVEWSLQDSSRLVLIGIANALDLTDRFLPRLKARNLKP
ELLTFLPYTAVQVKNIITTRLRSLMPAGSDENYVPFIHPAAIELCSRKVSSQTGDLRKAFEICRRALDLVEAETR
WKHEAEAKEQMLQMTPSKKRPLGENVNGTTVAGPEAPRGVLQVLATTLRALTAETAPRASIGHLSKITAAAFGNG
TTQRLKTLNLQQKAALCALVAYERRSRDKLKMGSTPSSKAQTLAPSIKMLFDTYSQLCTRDSLLHPLSGSEFREV
VGSLETLGLVSAVEGKNGSFVATGAAALGNALTPSKRGRRGAVGSGDERRIASCVGERDVEALVEGVGEGILGSI
LGGEALD*
Coding >Ophun1|3063
ATGGCTCGCGTTGTGCTGGGAAAGAGAGCACCAGGAAGCTCTCCTGTGAAGCCGGCTTCTGCGCAGACGCCGTGC
AAGAGGACGCGACACGGCACCTCGTACTCGATCCCCGATCAAGGCAATGATGAGAATCAGGATCCACGCGAGGTC
GAGGATGTCGACGAGCGGCCACGCAAGCAGGCTAGACTCCCCGTCACGCCATCGACACCGCGTCATCGTGATGCC
TTGGCCAGTCAGACGTCGACGCCTCGGCATGCCGTCATGTCGGCCGGCAAGCTCTTTCGACGCATGACGCCTCAG
TCGCCTCTCTCTCCATCTACCGTTCAGACAGTCTACCACGGCGCACGTCAGCTCTTCGCTCGTGGCGTCGAGCCT
GGTCGGATTGTCGGGCGCGAGGCCGAACGCGAGCAGCTGAGCCGTTTCCTGGATCGCTGCGAGACGGCGTCGCCT
TCGCCTCATGGGTGCCTCTACGTCAGCGGCGCGCCTGGCACTGGGAAGAGCGCCTTGGTTGTCGACATGACGAGG
GACTGCTCGTCTCGCGACGGCGTTCGCGCTGCCTACATCAATTGCATGAGCATTAAGTCTTCCAAGGATCTGTAT
GTCACGCTCTTGTCGGAGTTGGGGCTGGCTGCCGACGCGACGACTGAGGCGGGGGCTGTCTCGACGCTGCAGCAG
GCTTTTTGCCCCAAGTCAAAGTCCAAGTCCAAGTCGTCCTCTGCTGTTTACCAGGTTACGCTGGACGAGATGGAC
CATGTCCTGACCATGGGTCTCGAGAGCCTGTACCGCATCGTCGAATGGTCACTGCAAGACTCGTCTCGACTGGTG
CTGATTGGTATCGCCAATGCTCTCGACCTTACCGATCGATTTCTTCCTCGACTCAAGGCGCGCAATCTCAAGCCG
GAGCTCCTCACCTTTCTCCCGTACACGGCGGTACAGGTCAAGAACATCATCACGACGCGCCTTCGGTCGCTCATG
CCTGCAGGAAGCGACGAGAACTACGTCCCCTTTATCCACCCGGCCGCCATTGAGCTCTGTTCGCGCAAAGTGTCG
AGCCAGACGGGCGATCTGCGCAAGGCATTCGAGATTTGCCGGCGGGCTCTCGATCTGGTCGAGGCGGAGACCCGA
TGGAAACACGAGGCGGAAGCCAAGGAACAGATGTTGCAGATGACGCCTTCAAAGAAGAGGCCCCTGGGTGAAAAT
GTCAACGGAACCACCGTGGCAGGTCCCGAGGCTCCGCGAGGCGTGCTGCAAGTCTTGGCGACGACGCTCAGGGCA
CTGACTGCGGAGACGGCTCCGCGGGCGTCCATCGGACACCTCAGCAAGATCACGGCGGCCGCCTTCGGAAACGGC
ACTACGCAGCGACTCAAGACGCTCAACCTCCAGCAAAAGGCGGCCCTCTGCGCCCTCGTGGCCTACGAAAGACGG
AGCAGGGACAAGCTCAAGATGGGCAGCACGCCGTCGTCCAAGGCGCAGACGCTGGCGCCGAGCATCAAGATGCTC
TTCGACACGTACAGCCAGCTCTGCACCCGCGACTCGCTACTCCATCCGCTCTCGGGCTCCGAGTTCCGCGAGGTG
GTCGGCAGCCTGGAGACGCTGGGGCTCGTCAGCGCGGTCGAGGGCAAGAACGGAAGCTTCGTGGCGACGGGGGCG
GCCGCGTTGGGGAACGCGCTGACTCCCAGCAAGAGGGGGCGCAGGGGAGCTGTGGGCAGCGGCGACGAGAGGCGC
ATTGCTAGCTGTGTTGGCGAGCGGGATGTCGAGGCTTTGGTTGAGGGTGTTGGGGAGGGCATCTTGGGGAGCATC
TTGGGGGGCGAGGCGCTGGATTGA
Transcript >Ophun1|3063
ATGGCTCGCGTTGTGCTGGGAAAGAGAGCACCAGGAAGCTCTCCTGTGAAGCCGGCTTCTGCGCAGACGCCGTGC
AAGAGGACGCGACACGGCACCTCGTACTCGATCCCCGATCAAGGCAATGATGAGAATCAGGATCCACGCGAGGTC
GAGGATGTCGACGAGCGGCCACGCAAGCAGGCTAGACTCCCCGTCACGCCATCGACACCGCGTCATCGTGATGCC
TTGGCCAGTCAGACGTCGACGCCTCGGCATGCCGTCATGTCGGCCGGCAAGCTCTTTCGACGCATGACGCCTCAG
TCGCCTCTCTCTCCATCTACCGTTCAGACAGTCTACCACGGCGCACGTCAGCTCTTCGCTCGTGGCGTCGAGCCT
GGTCGGATTGTCGGGCGCGAGGCCGAACGCGAGCAGCTGAGCCGTTTCCTGGATCGCTGCGAGACGGCGTCGCCT
TCGCCTCATGGGTGCCTCTACGTCAGCGGCGCGCCTGGCACTGGGAAGAGCGCCTTGGTTGTCGACATGACGAGG
GACTGCTCGTCTCGCGACGGCGTTCGCGCTGCCTACATCAATTGCATGAGCATTAAGTCTTCCAAGGATCTGTAT
GTCACGCTCTTGTCGGAGTTGGGGCTGGCTGCCGACGCGACGACTGAGGCGGGGGCTGTCTCGACGCTGCAGCAG
GCTTTTTGCCCCAAGTCAAAGTCCAAGTCCAAGTCGTCCTCTGCTGTTTACCAGGTTACGCTGGACGAGATGGAC
CATGTCCTGACCATGGGTCTCGAGAGCCTGTACCGCATCGTCGAATGGTCACTGCAAGACTCGTCTCGACTGGTG
CTGATTGGTATCGCCAATGCTCTCGACCTTACCGATCGATTTCTTCCTCGACTCAAGGCGCGCAATCTCAAGCCG
GAGCTCCTCACCTTTCTCCCGTACACGGCGGTACAGGTCAAGAACATCATCACGACGCGCCTTCGGTCGCTCATG
CCTGCAGGAAGCGACGAGAACTACGTCCCCTTTATCCACCCGGCCGCCATTGAGCTCTGTTCGCGCAAAGTGTCG
AGCCAGACGGGCGATCTGCGCAAGGCATTCGAGATTTGCCGGCGGGCTCTCGATCTGGTCGAGGCGGAGACCCGA
TGGAAACACGAGGCGGAAGCCAAGGAACAGATGTTGCAGATGACGCCTTCAAAGAAGAGGCCCCTGGGTGAAAAT
GTCAACGGAACCACCGTGGCAGGTCCCGAGGCTCCGCGAGGCGTGCTGCAAGTCTTGGCGACGACGCTCAGGGCA
CTGACTGCGGAGACGGCTCCGCGGGCGTCCATCGGACACCTCAGCAAGATCACGGCGGCCGCCTTCGGAAACGGC
ACTACGCAGCGACTCAAGACGCTCAACCTCCAGCAAAAGGCGGCCCTCTGCGCCCTCGTGGCCTACGAAAGACGG
AGCAGGGACAAGCTCAAGATGGGCAGCACGCCGTCGTCCAAGGCGCAGACGCTGGCGCCGAGCATCAAGATGCTC
TTCGACACGTACAGCCAGCTCTGCACCCGCGACTCGCTACTCCATCCGCTCTCGGGCTCCGAGTTCCGCGAGGTG
GTCGGCAGCCTGGAGACGCTGGGGCTCGTCAGCGCGGTCGAGGGCAAGAACGGAAGCTTCGTGGCGACGGGGGCG
GCCGCGTTGGGGAACGCGCTGACTCCCAGCAAGAGGGGGCGCAGGGGAGCTGTGGGCAGCGGCGACGAGAGGCGC
ATTGCTAGCTGTGTTGGCGAGCGGGATGTCGAGGCTTTGGTTGAGGGTGTTGGGGAGGGCATCTTGGGGAGCATC
TTGGGGGGCGAGGCGCTGGATTGA
Gene >Ophun1|3063
ATGGCTCGCGTTGTGCTGGGAAAGAGAGCACCAGGAAGCTCTCCTGTGAAGCGTGAGTCGTGCCCTCCCCGTTTC
CCCGTCTGCTCCCTCTTCCTCCCGCCGTTCAAGGCGTTTGAGAAGGGGCGAGGTTGGCTTTCATATGCTTGCTGT
CTTCGGTGGAAGGCGAGAGACGGATGCTGATGATGTCCTAGCGGCTTCTGCGCAGACGCCGTGCAAGAGGACGCG
ACACGGCACCTCGTACTCGATCCCCGATCAAGGCAATGATGAGAATCAGGATCCACGCGAGGTCGAGGATGTCGA
CGAGCGGCCACGCAAGCAGGCTAGACTCCCCGTCACGCCATCGACACCGCGTCATCGTGATGCCTTGGCCAGTCA
GACGTCGACGCCTCGGCATGCCGTCATGTCGGCCGGCAAGCTCTTTCGACGCATGACGCCTCAGTCGCCTCTCTC
TCCATCTACCGTTCAGACAGTCTACCACGGCGCACGTCAGCTCTTCGCTCGTGGCGTCGAGCCTGGTCGGATTGT
CGGGCGCGAGGCCGAACGCGAGCAGCTGAGCCGTTTCCTGGATCGCTGCGAGACGGCGTCGCCTTCGCCTCATGG
GTGCCTCTACGTCAGCGGCGCGCCTGGCACTGGGAAGAGCGCCTTGGTTGTCGACATGACGAGGGACTGCTCGTC
TCGCGACGGCGTTCGCGCTGCCTACATCAATTGCATGAGCATTAAGTCTTCCAAGGATCTGTATGTCACGCTCTT
GTCGGAGTTGGGGCTGGCTGCCGACGCGACGACTGAGGCGGGGGCTGTCTCGACGCTGCAGCAGGCTTTTTGCCC
CAAGTCAAAGTCCAAGTCCAAGTCGTCCTCTGCTGTTTACCAGGTTACGCTGGACGAGATGGACCATGTCCTGAC
CATGGGTCTCGAGAGCCTGTACCGCATCGTCGAATGGTCACTGCAAGACTCGTCTCGACTGGTGCTGATTGGTAT
CGCCAATGCTCTCGACCTTACCGATCGATTTCTTCCTCGACTCAAGGCGCGCAATCTCAAGCCGGAGCTCCTCAC
CTTTCTCCCGTACACGGCGGTACAGGTCAAGAACATCATCACGACGCGCCTTCGGTCGCTCATGCCTGCAGGAAG
CGACGAGAACTACGTCCCCTTTATCCACCCGGCCGCCATTGAGCTCTGTTCGCGCAAAGTGTCGAGCCAGACGGG
CGATCTGCGCAAGGCATTCGAGATTTGCCGGCGGGCTCTCGATCTGGTCGAGGCGGAGACCCGATGGAAACACGA
GGCGGAAGCCAAGGAACAGATGTTGCAGATGACGCCTTCAAAGAAGAGGCCCCTGGGTGAAAATGTCAACGGAAC
CACCGTGGCAGGTCCCGAGGCTCCGCGAGGCGTGCTGCAAGTCTTGGCGACGACGCTCAGGGCACTGACTGCGGA
GACGGCTCCGCGGGCGTCCATCGGACACCTCAGCAAGATCACGGCGGCCGCCTTCGGAAACGGCACTACGCAGCG
ACTCAAGACGCTCAACCTCCAGCAAAAGGCGGCCCTCTGCGCCCTCGTGGCCTACGAAAGACGGAGCAGGGACAA
GCTCAAGATGGGCAGCACGCCGTCGTCCAAGGCGCAGACGCTGGCGCCGAGCATCAAGATGCTCTTCGACACGTA
CAGCCAGCTCTGCACCCGCGACTCGCTACTCCATCCGCTCTCGGGCTCCGAGTTCCGCGAGGTGGTCGGCAGCCT
GGAGACGCTGGGGCTCGTCAGCGCGGTCGAGGGCAAGAACGGAAGCTTCGTGGCGACGGGGGCGGCCGCGTTGGG
GAACGCGCTGACTCCCAGCAAGAGGGGGCGCAGGGGAGCTGTGGGCAGCGGCGACGAGAGGCGCATTGCTAGCTG
TGTTGGCGAGCGGGATGTCGAGGCTTTGGTTGAGGGTGTTGGGGAGGGCATCTTGGGGAGCATCTTGGGGGGCGA
GGCGCTGGATTGA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

Built with Python Django and Wagtail