Fungal Genomics

at Utrecht University

General Properties

Protein IDHirsu2|933
Gene name
LocationContig_1195:837..3804
Strand-
Gene length (bp)2967
Transcript length (bp)2640
Coding sequence length (bp)2640
Protein length (aa) 880

Overview

Your browser does not support drawing a protein figure.

PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF04082 Fungal_trans Fungal specific transcription factor domain 8.3E-30 227 465
PF00172 Zn_clus Fungal Zn(2)-Cys(6) binuclear cluster domain 4.2E-10 22 59

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|P87000|ACU15_NEUCR Transcriptional activator protein acu-15 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=acu-15 PE=1 SV=2 1 867 0.0E+00
sp|P39113|CAT8_YEAST Regulatory protein CAT8 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CAT8 PE=1 SV=2 19 99 2.0E-28
sp|O59741|YN25_SCHPO Uncharacterized transcriptional regulatory protein C530.05 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC530.05 PE=3 SV=2 19 513 4.0E-24
sp|O60130|YH7G_SCHPO Putative transcriptional regulatory protein C16G5.16 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC16G5.16 PE=1 SV=1 15 619 1.0E-23
sp|P49413|UAY_EMENI Positive regulator of purine utilization OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=uaY PE=3 SV=2 19 440 4.0E-18
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|P87000|ACU15_NEUCR Transcriptional activator protein acu-15 OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=acu-15 PE=1 SV=2 1 867 0.0E+00
sp|P39113|CAT8_YEAST Regulatory protein CAT8 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CAT8 PE=1 SV=2 19 99 2.0E-28
sp|O59741|YN25_SCHPO Uncharacterized transcriptional regulatory protein C530.05 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC530.05 PE=3 SV=2 19 513 4.0E-24
sp|O60130|YH7G_SCHPO Putative transcriptional regulatory protein C16G5.16 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC16G5.16 PE=1 SV=1 15 619 1.0E-23
sp|P49413|UAY_EMENI Positive regulator of purine utilization OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=uaY PE=3 SV=2 19 440 4.0E-18
sp|P46954|SIP4_YEAST Protein SIP4 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SIP4 PE=3 SV=1 19 76 4.0E-18
sp|P40467|ASG1_YEAST Activator of stress genes 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=ASG1 PE=1 SV=1 216 509 2.0E-16
sp|P39529|YJU6_YEAST Putative transcriptional regulatory protein YJL206C OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=YJL206C PE=2 SV=1 200 602 4.0E-16
sp|P07272|PPR1_YEAST Pyrimidine pathway regulatory protein 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=PPR1 PE=1 SV=1 268 551 1.0E-13
sp|Q9P6I9|YHDD_SCHPO Uncharacterized transcriptional regulatory protein C1683.13c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC1683.13c PE=1 SV=1 23 537 5.0E-13
sp|Q59LV8|ASG1_CANAL Activator of stress genes protein 1 OS=Candida albicans (strain SC5314 / ATCC MYA-2876) GN=ASG1 PE=3 SV=1 296 509 9.0E-12
sp|O14130|YF54_SCHPO Uncharacterized transcriptional regulatory protein C3C7.04 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC3C7.04 PE=3 SV=1 23 541 3.0E-11
sp|O59744|YN28_SCHPO Uncharacterized transcriptional regulatory protein C530.08 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC530.08 PE=3 SV=1 304 571 2.0E-10
sp|P10563|QUTA_EMENI Quinic acid utilization activator OS=Emericella nidulans (strain FGSC A4 / ATCC 38163 / CBS 112.46 / NRRL 194 / M139) GN=qutA PE=3 SV=2 12 71 2.0E-08
sp|P52958|CTF1A_FUSSO Cutinase transcription factor 1 alpha OS=Fusarium solani subsp. pisi GN=CTF1-ALPHA PE=2 SV=1 216 441 3.0E-08
sp|P04386|GAL4_YEAST Regulatory protein GAL4 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=GAL4 PE=1 SV=2 18 103 1.0E-07
sp|P39113|CAT8_YEAST Regulatory protein CAT8 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=CAT8 PE=1 SV=2 362 516 2.0E-07
sp|P08657|LAC9_KLULA Lactose regulatory protein LAC9 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=LAC9 PE=1 SV=1 22 89 3.0E-07
sp|Q9UTN0|YII3_SCHPO Uncharacterized transcriptional regulatory protein C139.03 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC139.03 PE=3 SV=1 216 497 7.0E-07
sp|O59744|YN28_SCHPO Uncharacterized transcriptional regulatory protein C530.08 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPBC530.08 PE=3 SV=1 24 83 2.0E-06
sp|P11638|QA1F_NEUCR Quinic acid utilization activator OS=Neurospora crassa (strain ATCC 24698 / 74-OR23-1A / CBS 708.71 / DSM 1257 / FGSC 987) GN=qa-1f PE=3 SV=2 10 88 2.0E-06
sp|P07272|PPR1_YEAST Pyrimidine pathway regulatory protein 1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=PPR1 PE=1 SV=1 14 83 6.0E-06
[Show less]

GO

GO Term Description Terminal node
GO:0006351 transcription, DNA-templated Yes
GO:0008270 zinc ion binding Yes
GO:0003677 DNA binding Yes
GO:0006355 regulation of transcription, DNA-templated Yes
GO:0000981 DNA-binding transcription factor activity, RNA polymerase II-specific Yes
GO:0097159 organic cyclic compound binding No
GO:0034654 nucleobase-containing compound biosynthetic process No
GO:0009987 cellular process No
GO:1901363 heterocyclic compound binding No
GO:0140110 transcription regulator activity No
GO:0006139 nucleobase-containing compound metabolic process No
GO:0051252 regulation of RNA metabolic process No
GO:1903506 regulation of nucleic acid-templated transcription No
GO:0019219 regulation of nucleobase-containing compound metabolic process No
GO:0032774 RNA biosynthetic process No
GO:0031323 regulation of cellular metabolic process No
GO:0003676 nucleic acid binding No
GO:0008152 metabolic process No
GO:0034641 cellular nitrogen compound metabolic process No
GO:0050794 regulation of cellular process No
GO:2001141 regulation of RNA biosynthetic process No
GO:0009059 macromolecule biosynthetic process No
GO:0071704 organic substance metabolic process No
GO:0044271 cellular nitrogen compound biosynthetic process No
GO:0005488 binding No
GO:0044249 cellular biosynthetic process No
GO:0009058 biosynthetic process No
GO:0010468 regulation of gene expression No
GO:0008150 biological_process No
GO:0046483 heterocycle metabolic process No
GO:0009889 regulation of biosynthetic process No
GO:0046872 metal ion binding No
GO:0090304 nucleic acid metabolic process No
GO:0043170 macromolecule metabolic process No
GO:0044237 cellular metabolic process No
GO:0080090 regulation of primary metabolic process No
GO:0046914 transition metal ion binding No
GO:1901576 organic substance biosynthetic process No
GO:0006725 cellular aromatic compound metabolic process No
GO:0003674 molecular_function No
GO:0019438 aromatic compound biosynthetic process No
GO:0018130 heterocycle biosynthetic process No
GO:0060255 regulation of macromolecule metabolic process No
GO:0097659 nucleic acid-templated transcription No
GO:0051171 regulation of nitrogen compound metabolic process No
GO:1901360 organic cyclic compound metabolic process No
GO:0043167 ion binding No
GO:0044238 primary metabolic process No
GO:0065007 biological regulation No
GO:0043169 cation binding No
GO:0016070 RNA metabolic process No
GO:0006807 nitrogen compound metabolic process No
GO:1901362 organic cyclic compound biosynthetic process No
GO:0031326 regulation of cellular biosynthetic process No
GO:0003700 DNA-binding transcription factor activity No
GO:0019222 regulation of metabolic process No
GO:0050789 regulation of biological process No
GO:0010556 regulation of macromolecule biosynthetic process No

Deeploc

[Help with interpreting the results of Deeploc 2.0]
Localizations Signals Cytoplasm Nucleus Extracellular Cell membrane Mitochondrion Plastid Endoplasmic reticulum Lysosome vacuole Golgi apparatus Peroxisome
Nucleus Nuclear localization signal|Nuclear export signal 0.3114 0.7445 0.0447 0.081 0.1638 0.0565 0.0356 0.1406 0.0804 0.0096

SignalP

(None)

Transmembrane Domains

(None)

Transcription Factor Class

Transcription Factor Class
(based on PFAM domains)
Fungal Specific TF

CAZymes

(None)

Secondary Metabolism

(None)

Expression data

No expression data available for this genome

Orthologs

Orthofinder run ID4
Orthogroup4477
Change Orthofinder run
Species Protein ID
Ophiocordyceps australis 1348a (Ghana) OphauG2|4099
Ophiocordyceps australis map64 (Brazil) OphauB2|1998
Ophiocordyceps camponoti-floridani Ophcf2|00723
Ophiocordyceps camponoti-rufipedis Ophun1|2686
Ophiocordyceps kimflemingae Ophio5|7378
Ophiocordyceps subramaniannii Hirsu2|933 (this protein)

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 >Hirsu2|933
MPGILPMKVIKVGNSAQSRIAQACDRCRSKKIRCDGVRPTCSQCANVGFECRTSDKLSRRAFPRGYTESLEERVR
LLEAEVRELKDLLDEKDEKLDMLSAMHAGHHHHSHHRHRPPAALTPAAGPAVPAESSPDAARQSPAKQDSFRVQA
APLLLGLENSDSYLMGPSSGLSLITSLKRKLQEAGKPCNDFNPDAFLHVQGCPPLTTEELGPSPRLPPRLFSDRC
VNVYFQEWAPLFPVLHKPTFLHAYEEFVASPERVRCNYKLAQLYLVFSIAGLSSAAPDLAQVACCERQWIRALDD
LLPDNTMNTLQCLILALVYCTLRADNKRLQHYKSIAVGLSHRLGLHQSQKRFSFGALTLETRKRVFWTLYTLDCF
TAATMGLPKLLKEDGVETEYPSDTDDEYITEKGFQPTMPGESTRLSSALALFRASRILGRVLEALYPATTNHELS
LRQMSMLEGELDAWYAELPAHLRLNFVQDKPSTDVTGSRSPVLALTYYYIRTLIYRPAVGSSLGPKAASALMSIA
ESSKHMIQVVQLLEERNMSFSLCLNKSDLLAVCAVTLLYQVADLKQDSKLTRDVGRLVNAVLGALVGARAAGSVD
LERVARCLITVDNGGGSTNAPSSRPCPMAAPSQRPTPPPPLSSLSSSRGTKKKTSQVLGRFHATASTAKAGVGMD
AQDKMRRMTMPPVSAHEADVFRARCRQALSAEGTGAGSAGAYRVGLSQGASIPNLDYLSLSNTPSQTQPPSPSGP
GRMAAEGGAGSGGEATGKVSRVLTSDWEALLGSLDGGMHNLYDAIYGGASLLNETSLAQGGEWSPDSWDLGGFSL
GDLGRGGRGAAQSVLSMSDESLSSGEEVAPSELGLSVGSAEFHKQQFGGERFAL*
Coding >Hirsu2|933
ATGCCCGGCATCCTCCCGATGAAGGTCATCAAGGTCGGCAACAGCGCCCAGAGCCGCATCGCCCAGGCCTGCGAC
CGCTGCCGCAGCAAGAAGATTCGCTGCGACGGCGTCCGGCCGACGTGCTCGCAATGCGCCAACGTCGGCTTCGAG
TGCCGCACCAGCGACAAGCTGAGCCGCCGCGCCTTCCCCCGCGGCTACACCGAGTCGCTCGAGGAGCGCGTGCGC
CTGCTCGAGGCCGAGGTCCGCGAGCTCAAGGACCTGCTGGACGAGAAGGACGAGAAGCTTGACATGCTCTCCGCC
ATGCACGCCGGCCACCACCACCACAGCCACCACCGTCACCGGCCTCCCGCCGCCCTCACCCCGGCCGCCGGCCCC
GCCGTCCCGGCCGAGTCGTCGCCCGACGCCGCCCGCCAATCCCCCGCCAAGCAGGACTCGTTTCGCGTCCAGGCC
GCGCCCCTGCTCCTCGGCCTCGAAAACTCGGACTCGTACCTCATGGGCCCGTCCAGCGGCCTGTCCCTCATCACA
TCCCTCAAGCGCAAGCTCCAAGAGGCAGGCAAGCCCTGCAACGACTTCAACCCCGACGCCTTTCTGCACGTCCAG
GGCTGCCCCCCCCTGACGACGGAGGAGCTCGGTCCGTCGCCCCGGCTGCCCCCCCGCCTCTTCTCCGACCGCTGC
GTCAACGTCTACTTCCAAGAATGGGCCCCCCTCTTCCCCGTCCTGCACAAGCCCACCTTCCTCCACGCCTACGAG
GAGTTCGTCGCCAGCCCCGAAAGGGTCCGATGCAACTACAAACTCGCCCAGCTCTACCTCGTCTTCAGCATCGCC
GGCCTCTCGTCCGCGGCGCCCGACCTCGCCCAGGTGGCCTGCTGCGAGAGGCAGTGGATCCGCGCCCTCGACGAC
CTGCTCCCCGACAACACGATGAACACGCTGCAGTGCCTGATCCTGGCCCTCGTCTACTGCACCCTGCGCGCCGAC
AACAAGCGGCTGCAGCACTACAAGTCCATCGCCGTCGGCCTGTCGCACCGCCTCGGCCTGCACCAGAGCCAGAAG
CGCTTCTCCTTTGGCGCCCTGACGCTCGAGACGAGGAAGAGGGTCTTTTGGACGCTCTACACCCTGGACTGCTTC
ACCGCCGCCACCATGGGCCTGCCCAAGCTCCTGAAGGAGGACGGCGTCGAGACCGAGTACCCGTCCGACACGGAC
GACGAGTACATTACGGAAAAGGGCTTCCAGCCGACCATGCCCGGGGAGTCGACGCGGCTGTCGAGCGCCCTCGCC
CTCTTCCGGGCCTCGCGCATCCTGGGCCGCGTCCTGGAGGCGCTGTATCCCGCGACGACGAACCACGAGCTCTCG
CTCCGGCAGATGAGCATGCTCGAGGGAGAGCTCGACGCCTGGTACGCCGAGCTGCCGGCGCACCTGCGGCTCAAT
TTCGTCCAGGACAAGCCGTCGACCGACGTCACGGGCAGCCGGTCGCCCGTCCTGGCCTTGACGTACTACTACATC
CGCACGCTGATCTACCGTCCCGCCGTCGGCTCGAGTCTGGGCCCCAAGGCGGCATCGGCGCTCATGTCGATTGCC
GAGTCGAGCAAGCACATGATCCAGGTCGTGCAGCTCCTGGAGGAGCGCAACATGAGCTTCTCGCTGTGCCTGAAC
AAGAGCGACCTGCTGGCCGTGTGCGCCGTCACGCTGCTGTACCAGGTGGCGGACCTCAAGCAGGACAGCAAGCTG
ACGCGGGACGTCGGCCGCCTCGTCAACGCGGTGCTCGGCGCTCTTGTCGGGGCGAGAGCGGCCGGGTCGGTCGAC
CTGGAGCGGGTGGCACGATGCCTCATCACCGTCGACAACGGCGGCGGCAGCACCAATGCGCCGTCGTCTCGCCCG
TGTCCGATGGCGGCACCGTCGCAACGGCCGACGCCGCCGCCGCCGTTGTCGTCGTTGTCGTCGTCCAGAGGTACG
AAGAAGAAGACGAGCCAGGTGCTGGGCCGTTTCCACGCGACGGCCTCGACGGCCAAGGCGGGCGTCGGGATGGAC
GCGCAGGACAAGATGCGGCGGATGACGATGCCGCCCGTGTCGGCGCACGAGGCGGACGTGTTCCGGGCGCGATGC
CGGCAAGCGCTGTCGGCGGAGGGGACGGGCGCGGGCAGCGCGGGGGCGTACCGGGTGGGCCTGTCGCAGGGGGCG
TCGATACCGAACCTCGACTACCTGTCGCTCAGCAACACGCCGTCGCAGACGCAGCCGCCGTCGCCGAGCGGGCCG
GGGCGGATGGCGGCGGAGGGCGGGGCGGGCTCGGGCGGGGAGGCGACGGGCAAGGTGTCGCGGGTGCTGACGTCG
GACTGGGAGGCGCTGCTGGGGTCGCTGGACGGCGGGATGCACAACCTGTACGACGCCATCTACGGGGGCGCGAGC
CTGCTCAACGAGACGTCGCTGGCGCAGGGCGGCGAGTGGTCGCCGGACTCGTGGGACCTGGGCGGCTTCAGCCTC
GGCGACCTGGGCCGGGGCGGGCGCGGGGCGGCGCAGAGCGTGCTGAGCATGAGCGACGAGAGCCTCAGCTCGGGC
GAGGAGGTGGCGCCGTCGGAGCTGGGGCTGAGCGTCGGCAGCGCCGAGTTCCACAAGCAGCAGTTTGGCGGCGAG
AGGTTCGCGCTGTGA
Transcript >Hirsu2|933
ATGCCCGGCATCCTCCCGATGAAGGTCATCAAGGTCGGCAACAGCGCCCAGAGCCGCATCGCCCAGGCCTGCGAC
CGCTGCCGCAGCAAGAAGATTCGCTGCGACGGCGTCCGGCCGACGTGCTCGCAATGCGCCAACGTCGGCTTCGAG
TGCCGCACCAGCGACAAGCTGAGCCGCCGCGCCTTCCCCCGCGGCTACACCGAGTCGCTCGAGGAGCGCGTGCGC
CTGCTCGAGGCCGAGGTCCGCGAGCTCAAGGACCTGCTGGACGAGAAGGACGAGAAGCTTGACATGCTCTCCGCC
ATGCACGCCGGCCACCACCACCACAGCCACCACCGTCACCGGCCTCCCGCCGCCCTCACCCCGGCCGCCGGCCCC
GCCGTCCCGGCCGAGTCGTCGCCCGACGCCGCCCGCCAATCCCCCGCCAAGCAGGACTCGTTTCGCGTCCAGGCC
GCGCCCCTGCTCCTCGGCCTCGAAAACTCGGACTCGTACCTCATGGGCCCGTCCAGCGGCCTGTCCCTCATCACA
TCCCTCAAGCGCAAGCTCCAAGAGGCAGGCAAGCCCTGCAACGACTTCAACCCCGACGCCTTTCTGCACGTCCAG
GGCTGCCCCCCCCTGACGACGGAGGAGCTCGGTCCGTCGCCCCGGCTGCCCCCCCGCCTCTTCTCCGACCGCTGC
GTCAACGTCTACTTCCAAGAATGGGCCCCCCTCTTCCCCGTCCTGCACAAGCCCACCTTCCTCCACGCCTACGAG
GAGTTCGTCGCCAGCCCCGAAAGGGTCCGATGCAACTACAAACTCGCCCAGCTCTACCTCGTCTTCAGCATCGCC
GGCCTCTCGTCCGCGGCGCCCGACCTCGCCCAGGTGGCCTGCTGCGAGAGGCAGTGGATCCGCGCCCTCGACGAC
CTGCTCCCCGACAACACGATGAACACGCTGCAGTGCCTGATCCTGGCCCTCGTCTACTGCACCCTGCGCGCCGAC
AACAAGCGGCTGCAGCACTACAAGTCCATCGCCGTCGGCCTGTCGCACCGCCTCGGCCTGCACCAGAGCCAGAAG
CGCTTCTCCTTTGGCGCCCTGACGCTCGAGACGAGGAAGAGGGTCTTTTGGACGCTCTACACCCTGGACTGCTTC
ACCGCCGCCACCATGGGCCTGCCCAAGCTCCTGAAGGAGGACGGCGTCGAGACCGAGTACCCGTCCGACACGGAC
GACGAGTACATTACGGAAAAGGGCTTCCAGCCGACCATGCCCGGGGAGTCGACGCGGCTGTCGAGCGCCCTCGCC
CTCTTCCGGGCCTCGCGCATCCTGGGCCGCGTCCTGGAGGCGCTGTATCCCGCGACGACGAACCACGAGCTCTCG
CTCCGGCAGATGAGCATGCTCGAGGGAGAGCTCGACGCCTGGTACGCCGAGCTGCCGGCGCACCTGCGGCTCAAT
TTCGTCCAGGACAAGCCGTCGACCGACGTCACGGGCAGCCGGTCGCCCGTCCTGGCCTTGACGTACTACTACATC
CGCACGCTGATCTACCGTCCCGCCGTCGGCTCGAGTCTGGGCCCCAAGGCGGCATCGGCGCTCATGTCGATTGCC
GAGTCGAGCAAGCACATGATCCAGGTCGTGCAGCTCCTGGAGGAGCGCAACATGAGCTTCTCGCTGTGCCTGAAC
AAGAGCGACCTGCTGGCCGTGTGCGCCGTCACGCTGCTGTACCAGGTGGCGGACCTCAAGCAGGACAGCAAGCTG
ACGCGGGACGTCGGCCGCCTCGTCAACGCGGTGCTCGGCGCTCTTGTCGGGGCGAGAGCGGCCGGGTCGGTCGAC
CTGGAGCGGGTGGCACGATGCCTCATCACCGTCGACAACGGCGGCGGCAGCACCAATGCGCCGTCGTCTCGCCCG
TGTCCGATGGCGGCACCGTCGCAACGGCCGACGCCGCCGCCGCCGTTGTCGTCGTTGTCGTCGTCCAGAGGTACG
AAGAAGAAGACGAGCCAGGTGCTGGGCCGTTTCCACGCGACGGCCTCGACGGCCAAGGCGGGCGTCGGGATGGAC
GCGCAGGACAAGATGCGGCGGATGACGATGCCGCCCGTGTCGGCGCACGAGGCGGACGTGTTCCGGGCGCGATGC
CGGCAAGCGCTGTCGGCGGAGGGGACGGGCGCGGGCAGCGCGGGGGCGTACCGGGTGGGCCTGTCGCAGGGGGCG
TCGATACCGAACCTCGACTACCTGTCGCTCAGCAACACGCCGTCGCAGACGCAGCCGCCGTCGCCGAGCGGGCCG
GGGCGGATGGCGGCGGAGGGCGGGGCGGGCTCGGGCGGGGAGGCGACGGGCAAGGTGTCGCGGGTGCTGACGTCG
GACTGGGAGGCGCTGCTGGGGTCGCTGGACGGCGGGATGCACAACCTGTACGACGCCATCTACGGGGGCGCGAGC
CTGCTCAACGAGACGTCGCTGGCGCAGGGCGGCGAGTGGTCGCCGGACTCGTGGGACCTGGGCGGCTTCAGCCTC
GGCGACCTGGGCCGGGGCGGGCGCGGGGCGGCGCAGAGCGTGCTGAGCATGAGCGACGAGAGCCTCAGCTCGGGC
GAGGAGGTGGCGCCGTCGGAGCTGGGGCTGAGCGTCGGCAGCGCCGAGTTCCACAAGCAGCAGTTTGGCGGCGAG
AGGTTCGCGCTGTGA
Gene >Hirsu2|933
ATGCCCGGCATCCTCCCGATGAAGGTCATCAAGGTCGGCAACAGCGCCCAGAGCCGCATCGCCCAGGCCTGCGAC
CGCTGCCGCAGCAAGAAGATTCGCTGCGACGGCGTCCGGCCGACGTGCTCGCAATGCGCCAACGTCGGCTTCGAG
TGCCGCACCAGCGACAAGCTGAGCCGCCGCGCCTTCCCCCGCGGCTACACCGAGTCGCTCGAGGAGCGCGTGCGC
CTGCTCGAGGCCGAGGTCCGCGAGCTCAAGGACCTGCTGGACGAGAAGGACGAGAAGCTTGACATGCTCTCCGCC
ATGCACGCCGGCCACCACCACCACAGCCACCACCGTCACCGGCCTCCCGCCGCCCTCACCCCGGCCGCCGGCCCC
GCCGTCCCGGCCGAGTCGTCGCCCGACGCCGCCCGCCAATCCCCCGCCAAGCAGGACTCGTTTCGCGTCCAGGCC
GCGCCCCTGCTCCTCGGCCTCGAAAACTCGGACTCGTACCTCATGGGCCCGTCCAGCGGCCTGTCCCTCATCAGT
ACGTGCGCCGTCGATAGACGATGATCCTGTCCCCCTCTCCGTCCATCATCATCCTCATCAGCCGCGCCCCCTCCC
CGCTTCTCCCCCCGTCTACATACGTGTCCGTGACCTGACCGACCCTCTCTCTCTCTCTCTCTCTCTTTCGTCTCC
GCCGCAGCATCCCTCAAGCGCAAGCTCCAAGAGGCAGGCAAGCCCTGCAACGACTTCAACCCCGACGCCTTTCTG
CACGTCCAGGGCTGCCCCCCCCTGACGACGGAGGAGCTCGGTCCGTCGCCCCGGCTGCCCCCCCGCCTCTTCTCC
GACCGCTGCGTCAACGTCTACTTCCAAGAATGGGCCCCCCTCTTCCCCGTCCTGCACAAGCCCACCTTCCTCCAC
GCCTACGAGGAGTTCGTCGCCAGCCCCGAAAGGGTCCGATGCAACTACAAACTCGCCCAGCTCTACCTCGTCTTC
AGCATCGCCGGCCTCTCGTCCGCGGCGCCCGACCTCGCCCAGGTGGCCTGCTGCGAGAGGCAGTGGATCCGCGCC
CTCGACGACCTGCTCCCCGACAACACGATGAACACGCTGCAGTGCCTGATCCTGGCCCTCGTCTACTGCACCCTG
CGCGCCGACAACAAGCGGCTGCAGCACTACAAGTCCATCGCCGTCGGCCTGTCGCACCGCCTCGGCCTGCACCAG
AGCCAGAAGCGCTTCTCCTTTGGCGCCCTGACGCTCGAGACGAGGAAGAGGGTCTTTTGGACGCTCTACACCCTG
GACTGGTGAGTAGCACCGTGCATCCATCCACCCGGTGCCACGTCGTGCGACGCTCGAGGCTGACACCGCGGCCCC
GTTAGCTTCACCGCCGCCACCATGGGCCTGCCCAAGCTCCTGAAGGAGGACGGCGTCGAGACCGAGTACCCGTCC
GACACGGACGACGAGTACATTACGGAAAAGGGCTTCCAGCCGACCATGCCCGGGGAGTCGACGCGGCTGTCGAGC
GCCCTCGCCCTCTTCCGGGCCTCGCGCATCCTGGGCCGCGTCCTGGAGGCGCTGTATCCCGCGACGACGAACCAC
GAGCTCTCGCTCCGGCAGATGAGCATGCTCGAGGGAGAGCTCGACGCCTGGTACGCCGAGCTGCCGGCGCACCTG
CGGCTCAATTTCGTCCAGGACAAGCCGTCGACCGACGTCACGGGCAGCCGGTCGCCCGTCCTGGTAAGTACCCTT
TTTTTTTTCTTCTCTTTTTTTGGGATGCTCGGTGTCTCCCACTTCCCCCGCCTGGCTCCCCGGCGCTGAGACTTG
CAGCAGGCCTTGACGTACTACTACATCCGCACGCTGATCTACCGTCCCGCCGTCGGCTCGAGTCTGGGCCCCAAG
GCGGCATCGGCGCTCATGTCGATTGCCGAGTCGAGCAAGCACATGATCCAGGTCGTGCAGCTCCTGGAGGAGCGC
AACATGAGCTTCTCGCTGTGCCTGAACAAGAGCGACCTGCTGGCCGTGTGCGCCGTCACGCTGCTGTACCAGGTG
GCGGACCTCAAGCAGGACAGCAAGCTGACGCGGGACGTCGGCCGCCTCGTCAACGCGGTGCTCGGCGCTCTTGTC
GGGGCGAGAGCGGCCGGGTCGGTCGACCTGGAGCGGGTGGCACGATGCCTCATCACCGTCGACAACGGCGGCGGC
AGCACCAATGCGCCGTCGTCTCGCCCGTGTCCGATGGCGGCACCGTCGCAACGGCCGACGCCGCCGCCGCCGTTG
TCGTCGTTGTCGTCGTCCAGAGGTACGAAGAAGAAGACGAGCCAGGTGCTGGGCCGTTTCCACGCGACGGCCTCG
ACGGCCAAGGCGGGCGTCGGGATGGACGCGCAGGACAAGATGCGGCGGATGACGATGCCGCCCGTGTCGGCGCAC
GAGGCGGACGTGTTCCGGGCGCGATGCCGGCAAGCGCTGTCGGCGGAGGGGACGGGCGCGGGCAGCGCGGGGGCG
TACCGGGTGGGCCTGTCGCAGGGGGCGTCGATACCGAACCTCGACTACCTGTCGCTCAGCAACACGCCGTCGCAG
ACGCAGCCGCCGTCGCCGAGCGGGCCGGGGCGGATGGCGGCGGAGGGCGGGGCGGGCTCGGGCGGGGAGGCGACG
GGCAAGGTGTCGCGGGTGCTGACGTCGGACTGGGAGGCGCTGCTGGGGTCGCTGGACGGCGGGATGCACAACCTG
TACGACGCCATCTACGGGGGCGCGAGCCTGCTCAACGAGACGTCGCTGGCGCAGGGCGGCGAGTGGTCGCCGGAC
TCGTGGGACCTGGGCGGCTTCAGCCTCGGCGACCTGGGCCGGGGCGGGCGCGGGGCGGCGCAGAGCGTGCTGAGC
ATGAGCGACGAGAGCCTCAGCTCGGGCGAGGAGGTGGCGCCGTCGGAGCTGGGGCTGAGCGTCGGCAGCGCCGAG
TTCCACAAGCAGCAGTTTGGCGGCGAGAGGTTCGCGCTGTGA

© 2023 - Robin Ohm - Utrecht University - The Netherlands

Built with Python Django and Wagtail