Fungal Genomics

at Utrecht University

General Properties

Protein IDAgabi119p4|059280
Gene name
Locationscaffold_03a:1637416..1642275
Strand+
Gene length (bp)4859
Transcript length (bp)3180
Coding sequence length (bp)3180
Protein length (aa) 1060

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF00270 DEAD DEAD/DEAH box helicase 1.4E-22 303 475
PF00271 Helicase_C Helicase conserved C-terminal domain 2.5E-14 537 644
PF09369 MZB MrfA Zn-binding domain 1.1E-14 907 988
PF08839 CDT1 DNA replication factor CDT1 like 1.1E-06 49 109
PF04851 ResIII Type III restriction enzyme, res subunit 1.3E-06 301 473

Swissprot hits

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Swissprot ID Swissprot Description Start End E-value
sp|Q05549|HRQ1_YEAST ATP-dependent helicase HRQ1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HRQ1 PE=1 SV=1 54 1039 0.0E+00
sp|O13983|HRQ1_SCHPO ATP-dependent helicase hrq1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hrq1 PE=1 SV=4 50 1021 0.0E+00
sp|P50830|YPRA_BACSU Uncharacterized ATP-dependent helicase YprA OS=Bacillus subtilis (strain 168) GN=yprA PE=3 SV=1 262 988 2.0E-111
sp|Q58969|Y1574_METJA Uncharacterized ATP-dependent helicase MJ1574 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ1574 PE=3 SV=1 300 801 7.0E-48
sp|Q57742|HELX_METJA Uncharacterized ATP-dependent helicase MJ0294 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0294 PE=3 SV=1 296 648 6.0E-20
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Swissprot ID Swissprot Description Start End E-value
sp|Q05549|HRQ1_YEAST ATP-dependent helicase HRQ1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HRQ1 PE=1 SV=1 54 1039 0.0E+00
sp|O13983|HRQ1_SCHPO ATP-dependent helicase hrq1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=hrq1 PE=1 SV=4 50 1021 0.0E+00
sp|P50830|YPRA_BACSU Uncharacterized ATP-dependent helicase YprA OS=Bacillus subtilis (strain 168) GN=yprA PE=3 SV=1 262 988 2.0E-111
sp|Q58969|Y1574_METJA Uncharacterized ATP-dependent helicase MJ1574 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ1574 PE=3 SV=1 300 801 7.0E-48
sp|Q57742|HELX_METJA Uncharacterized ATP-dependent helicase MJ0294 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ0294 PE=3 SV=1 296 648 6.0E-20
sp|P95949|HELX_SULSO Uncharacterized ATP-dependent helicase SSO0112 OS=Sulfolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2) GN=SSO0112 PE=3 SV=1 300 647 5.0E-19
sp|O27830|HELX_METTH Uncharacterized ATP-dependent helicase MTH_1802 OS=Methanothermobacter thermautotrophicus (strain ATCC 29096 / DSM 1053 / JCM 10044 / NBRC 100330 / Delta H) GN=MTH_1802 PE=3 SV=1 278 646 5.0E-18
sp|P30015|LHR_ECOLI Probable ATP-dependent helicase lhr OS=Escherichia coli (strain K12) GN=lhr PE=3 SV=2 282 709 5.0E-15
sp|Q0W6L1|HELS_METAR ATP-dependent DNA helicase Hel308 OS=Methanocella arvoryzae (strain DSM 22066 / NBRC 105507 / MRE50) GN=hel308 PE=3 SV=1 286 644 4.0E-14
sp|Q9V0A9|HELS_PYRAB ATP-dependent DNA helicase Hel308 OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=hel308 PE=3 SV=1 296 674 4.0E-13
sp|O59025|HELS_PYRHO ATP-dependent DNA helicase Hel308 OS=Pyrococcus horikoshii (strain ATCC 700860 / DSM 12428 / JCM 9974 / NBRC 100139 / OT-3) GN=hel308 PE=3 SV=1 295 674 9.0E-11
sp|O73946|HELS_PYRFU ATP-dependent DNA helicase Hel308 OS=Pyrococcus furiosus (strain ATCC 43587 / DSM 3638 / JCM 8422 / Vc1) GN=hel308 PE=1 SV=1 296 674 1.0E-10
sp|A3MSA1|HELS_PYRCJ ATP-dependent DNA helicase Hel308 OS=Pyrobaculum calidifontis (strain JCM 11548 / VA1) GN=hel308 PE=3 SV=1 291 678 1.0E-10
sp|A7EYW0|DBP3_SCLS1 ATP-dependent RNA helicase dbp3 OS=Sclerotinia sclerotiorum (strain ATCC 18683 / 1980 / Ss-1) GN=dbp3 PE=3 SV=2 305 652 1.0E-09
sp|A8MB76|HELS_CALMQ ATP-dependent DNA helicase Hel308 OS=Caldivirga maquilingensis (strain ATCC 700844 / DSM 13496 / JCM 10307 / IC-167) GN=hel308 PE=3 SV=1 292 644 2.0E-09
sp|Q75NR7|RECQ4_MOUSE ATP-dependent DNA helicase Q4 OS=Mus musculus GN=Recql4 PE=2 SV=2 300 644 3.0E-09
sp|A6SCT6|DBP3_BOTFB ATP-dependent RNA helicase dbp3 OS=Botryotinia fuckeliana (strain B05.10) GN=dbp3 PE=3 SV=1 305 652 7.0E-09
sp|P51979|HFM1_YEAST ATP-dependent DNA helicase MER3 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HFM1 PE=1 SV=3 301 644 2.0E-08
sp|P0DMI1|HELS_ARCFU ATP-dependent DNA helicase Hel308 OS=Archaeoglobus fulgidus (strain ATCC 49558 / VC-16 / DSM 4304 / JCM 9628 / NBRC 100126) GN=hel308 PE=1 SV=1 279 644 2.0E-08
sp|Q9HJX7|HELS_THEAC ATP-dependent DNA helicase Hel308 OS=Thermoplasma acidophilum (strain ATCC 25905 / DSM 1728 / JCM 9062 / NBRC 15155 / AMRC-C165) GN=hel308 PE=3 SV=1 301 673 3.0E-08
sp|Q6CT85|RRP3_KLULA ATP-dependent rRNA helicase RRP3 OS=Kluyveromyces lactis (strain ATCC 8585 / CBS 2359 / DSM 70799 / NBRC 1267 / NRRL Y-1140 / WM37) GN=RRP3 PE=3 SV=1 305 708 3.0E-08
sp|Q97AI2|HELS_THEVO ATP-dependent DNA helicase Hel308 OS=Thermoplasma volcanium (strain ATCC 51530 / DSM 4299 / JCM 9571 / NBRC 15438 / GSS1) GN=hel308 PE=3 SV=1 301 670 6.0E-08
sp|Q8PZR7|HELS_METMA ATP-dependent DNA helicase Hel308 OS=Methanosarcina mazei (strain ATCC BAA-159 / DSM 3647 / Goe1 / Go1 / JCM 11833 / OCM 88) GN=hel308 PE=3 SV=1 298 673 1.0E-07
sp|P50729|RECS_BACSU Probable ATP-dependent DNA helicase RecS OS=Bacillus subtilis (strain 168) GN=recS PE=3 SV=1 300 657 1.0E-07
sp|O48534|DEXHD_ARATH DExH-box ATP-dependent RNA helicase DExH13 OS=Arabidopsis thaliana GN=At2g42270 PE=2 SV=1 301 476 2.0E-07
sp|Q6FNK8|RRP3_CANGA ATP-dependent rRNA helicase RRP3 OS=Candida glabrata (strain ATCC 2001 / CBS 138 / JCM 3761 / NBRC 0622 / NRRL Y-65) GN=RRP3 PE=3 SV=1 305 708 2.0E-07
sp|Q09811|HUS2_SCHPO ATP-dependent DNA helicase hus2/rqh1 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=rqh1 PE=1 SV=1 546 644 3.0E-07
sp|O94761|RECQ4_HUMAN ATP-dependent DNA helicase Q4 OS=Homo sapiens GN=RECQL4 PE=1 SV=1 300 644 3.0E-07
sp|A7TS37|RRP3_VANPO ATP-dependent rRNA helicase RRP3 OS=Vanderwaltozyma polyspora (strain ATCC 22028 / DSM 70294) GN=RRP3 PE=3 SV=1 305 708 4.0E-07
sp|Q75EW9|RRP3_ASHGO ATP-dependent rRNA helicase RRP3 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=RRP3 PE=3 SV=2 305 708 5.0E-07
sp|Q8TL39|HELS_METAC ATP-dependent DNA helicase Hel308 OS=Methanosarcina acetivorans (strain ATCC 35395 / DSM 2834 / JCM 12185 / C2A) GN=hel308 PE=3 SV=1 298 673 6.0E-07
sp|P0CT33|TLH1_SCHPO ATP-dependent DNA helicase tlh1 (Fragment) OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tlh1 PE=3 SV=1 532 697 6.0E-06
sp|Q1RKN3|TLH2_SCHPO ATP-dependent DNA helicase tlh2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=tlh2 PE=2 SV=1 532 697 7.0E-06
sp|Q5JGV6|HELS_THEKO ATP-dependent DNA helicase Hel308 OS=Thermococcus kodakarensis (strain ATCC BAA-918 / JCM 12380 / KOD1) GN=hel308 PE=3 SV=1 296 476 7.0E-06
sp|P73421|RECQ_SYNY3 ATP-dependent DNA helicase RecQ OS=Synechocystis sp. (strain PCC 6803 / Kazusa) GN=recQ PE=3 SV=1 579 675 8.0E-06
sp|Q55CI8|HELCL_DICDI Activating signal cointegrator 1 complex subunit 3-like OS=Dictyostelium discoideum GN=ascc3l PE=3 SV=1 301 476 1.0E-05
sp|Q8N8A6|DDX51_HUMAN ATP-dependent RNA helicase DDX51 OS=Homo sapiens GN=DDX51 PE=1 SV=3 295 644 1.0E-05
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GO

GO Term Description Terminal node
GO:0003676 nucleic acid binding Yes
GO:0003677 DNA binding Yes
GO:0016787 hydrolase activity Yes
GO:0005524 ATP binding Yes
GO:0043168 anion binding No
GO:1901265 nucleoside phosphate binding No
GO:0097367 carbohydrate derivative binding No
GO:0000166 nucleotide binding No
GO:0032559 adenyl ribonucleotide binding No
GO:0036094 small molecule binding No
GO:0005488 binding No
GO:0032555 purine ribonucleotide binding No
GO:0097159 organic cyclic compound binding No
GO:0003824 catalytic activity No
GO:0003674 molecular_function No
GO:0043167 ion binding No
GO:1901363 heterocyclic compound binding No
GO:0017076 purine nucleotide binding No
GO:0032553 ribonucleotide binding No
GO:0035639 purine ribonucleoside triphosphate binding No
GO:0030554 adenyl nucleotide binding No

SignalP

[Help with interpreting these statistics]
SignalP signal predicted Location
(based on Ymax)
D score
(significance: > 0.45)
No 1 - 11 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 >Agabi119p4|059280
MKRSSSSNPSSAKKARRISKTKEDVEWPEHFTSLFAVFKVSYWAHYNLRLSDCFKALNTVLAFISSKKQIATTFD
AIRSSVEGILKRPLELQAVAEIKALLPDIVKFSYIPRNDSAINENADLKGKHRAKSPDFVIPSTRVANASGEGRI
LVLEFADNLRGKKSRNVGLSYQQAPSLTPAAMKLLIETRNDIFGQAVNDLILATMHQSDPVQMLQQAAREHVPVV
PYALITPSDQECATNTNARPSVNDLVQKIMDQDWYREQIIFRKTVDAREPLHGELGSSLSPSITSALATSRSIGS
FYAHQSEAIRALFEGKHVVVSTSTASGKSLIYQVPILKFLEDDIEAKAICIYPTKALEQDQKASLETMIQNCPGL
EHIRVSTYDGDTPQEQRPTIREESSVIFTNFDTIHASILPHEDNWRSFLRQVKLVVVDELHYYSGLLGSHVAFIM
RRFRRICAAVGNRQIRFISCTATLGNPGAHMQKIFCLGEDEIRVVDTDGAPSGRKDFLVWNPPLIDNANKNLGRR
GSISEATLLMRFLMQQGARVLLFCKIRKVCELAMRAIRADLSNEGQLDILAKVKAYRGGYSQEDRRRIEEEAFSG
QLLGIIATNALELGIDIGALDIVIMLGFPMSVASFRQQAGRAGRRVRDSLAIFVADPFPIDQYYVNHSEELFSHA
MEDLVIDTESPVILEAHLQCAAHEMPIHREDKQYFGPLMPDICEKKLLKDRDGWYQTHPNFLPYPPRFVSIRGAQ
EERYAVICVKTDAANIILEEVEVSRAMFEVYEGGIFMHQGEAYIVTEVSHDNKIAKVIQANVNYHTSPRDFTNVD
AVRTTRIRAIGNHRAFYGMVNVEVKVFGFFKIRNNTILDAVEIDTPPYVCDTTGFWIDVPRSILELLRRKHFNLA
EAIHAAQHAFLNQFPLSEDLRTECKAAEKEYRVTESSRKRPARIIFYDSIGKGGGVAAKAFDYAHETLRKAHSAL
ENCHCEEGCGNCVQSATCREANQVSSKLGGGIIIRSILGLPIDPDVVTLQSGQQIQIPDTIAEAQTVYGRGNIEV
EEEGSDRLH*
Coding >Agabi119p4|059280
ATGAAGCGTTCATCATCCTCAAACCCAAGTAGCGCGAAGAAGGCGCGTCGCATCAGCAAAACAAAAGAAGATGTA
GAGTGGCCAGAGCATTTCACTTCATTGTTTGCTGTTTTCAAGGTATCTTACTGGGCGCATTATAATCTACGACTG
TCTGACTGTTTCAAGGCCTTAAACACCGTTCTAGCCTTTATATCTTCCAAGAAACAAATAGCGACAACATTTGAC
GCTATAAGATCGTCCGTGGAAGGCATTTTGAAACGACCTTTGGAGCTGCAAGCTGTCGCAGAGATCAAAGCTCTT
CTTCCTGACATCGTCAAGTTCTCATACATACCCCGAAATGATTCCGCAATCAACGAGAACGCTGATCTTAAGGGG
AAGCACAGAGCGAAATCTCCTGACTTCGTTATTCCTTCTACAAGAGTAGCAAATGCGAGCGGGGAAGGGCGCATT
CTCGTTCTCGAATTCGCTGATAACCTAAGAGGGAAGAAGTCACGGAATGTTGGATTAAGCTACCAGCAGGCTCCT
TCCTTGACACCCGCGGCGATGAAGCTGCTCATTGAAACACGAAATGATATCTTTGGGCAGGCAGTAAATGATCTC
ATACTTGCAACAATGCACCAAAGTGATCCCGTCCAGATGCTCCAACAGGCCGCTCGGGAGCATGTACCAGTTGTC
CCCTATGCGCTAATAACTCCTTCAGATCAGGAATGCGCCACGAACACTAATGCACGACCTTCCGTGAACGACTTG
GTACAAAAGATAATGGATCAGGATTGGTATCGGGAACAGATTATATTCCGCAAGACAGTAGATGCTCGAGAACCA
CTGCACGGCGAATTGGGGTCTTCGCTTTCCCCTAGTATAACTTCCGCTCTGGCCACCTCGAGGAGCATCGGATCA
TTTTATGCCCACCAATCAGAAGCGATACGTGCTCTCTTCGAAGGAAAACATGTAGTCGTGTCGACGAGCACAGCT
TCAGGAAAGAGTTTGATATATCAAGTTCCGATTCTCAAGTTTCTCGAAGATGACATTGAGGCAAAGGCAATTTGC
ATATACCCTACAAAGGCATTGGAACAAGACCAGAAGGCATCTCTTGAAACAATGATTCAGAATTGTCCTGGCCTA
GAACATATCCGAGTCTCTACGTACGATGGCGATACTCCACAAGAACAGCGACCGACTATACGAGAAGAGTCCTCA
GTCATTTTCACGAACTTTGATACAATCCATGCATCCATCTTACCTCATGAGGATAATTGGAGGAGTTTTCTGCGT
CAAGTCAAGCTTGTTGTAGTGGATGAGCTACACTACTATTCCGGCCTTCTTGGAAGCCACGTTGCTTTCATTATG
CGAAGGTTCAGGCGCATATGTGCAGCTGTCGGAAATCGCCAAATTCGTTTCATCTCCTGTACCGCTACTCTTGGT
AATCCAGGTGCCCACATGCAGAAGATTTTTTGCCTCGGAGAAGACGAAATCCGGGTGGTAGATACTGACGGCGCG
CCTTCTGGAAGGAAGGATTTCCTCGTATGGAATCCGCCGTTGATTGACAATGCAAACAAGAATCTAGGAAGGCGA
GGGTCAATTTCTGAGGCTACATTGCTGATGCGCTTTTTGATGCAGCAAGGTGCTCGCGTCCTTTTATTCTGCAAA
ATACGGAAAGTTTGTGAGCTGGCTATGAGGGCCATACGAGCGGATCTAAGCAATGAAGGACAGCTTGATATTTTA
GCCAAAGTAAAAGCATATCGAGGAGGTTATTCACAAGAAGATCGTCGTCGCATCGAAGAAGAGGCGTTCTCTGGA
CAATTGCTTGGAATCATCGCGACAAATGCTCTTGAGCTGGGTATTGACATTGGTGCTCTTGATATTGTCATCATG
CTTGGCTTTCCCATGAGCGTCGCCAGCTTTCGTCAACAAGCTGGAAGAGCTGGACGTCGCGTGCGGGACTCATTA
GCCATTTTCGTTGCAGACCCATTCCCAATAGATCAGTACTATGTCAATCACTCGGAAGAGCTTTTCAGCCACGCA
ATGGAAGATCTAGTGATTGACACAGAAAGCCCGGTGATTTTAGAAGCGCATTTACAATGCGCTGCACATGAGATG
CCTATCCACAGAGAGGATAAACAATACTTTGGTCCTCTGATGCCCGACATCTGCGAGAAGAAGTTGCTCAAGGAT
AGAGATGGCTGGTATCAAACCCACCCTAATTTTTTGCCCTATCCACCTCGCTTTGTATCCATCCGTGGCGCTCAG
GAAGAAAGATATGCTGTCATTTGTGTCAAAACTGATGCAGCAAACATCATTCTTGAAGAGGTCGAAGTATCGCGT
GCGATGTTCGAAGTTTATGAAGGCGGCATTTTTATGCATCAAGGCGAAGCATATATCGTTACGGAAGTTAGTCAT
GATAACAAGATAGCCAAAGTCATTCAAGCGAATGTCAATTATCACACGTCACCTCGGGATTTCACAAATGTAGAT
GCCGTTCGCACGACTCGAATCAGAGCCATTGGTAACCATCGTGCTTTCTACGGAATGGTCAACGTGGAAGTGAAA
GTGTTCGGATTCTTCAAAATTAGGAACAACACAATTCTCGATGCTGTCGAGATTGATACGCCTCCTTACGTATGC
GATACGACAGGTTTTTGGATAGATGTTCCGCGTTCGATTCTAGAATTACTGCGTCGCAAGCATTTCAATTTGGCT
GAGGCTATACATGCAGCTCAACATGCCTTCCTCAACCAATTTCCATTGTCCGAGGATCTCAGGACGGAGTGCAAG
GCAGCGGAGAAAGAGTATAGGGTCACAGAGTCATCTAGAAAGAGACCGGCAAGAATCATTTTTTATGATTCTATT
GGCAAAGGTGGTGGGGTGGCTGCAAAAGCTTTCGACTATGCTCATGAGACCTTGCGAAAAGCCCATTCTGCCTTA
GAGAATTGCCATTGCGAGGAAGGTTGCGGAAACTGCGTACAAAGCGCCACTTGCAGGGAAGCCAACCAAGTTTCT
TCAAAATTAGGAGGTGGTATAATCATAAGGAGTATCCTTGGCCTACCGATCGATCCGGACGTGGTAACACTTCAA
AGTGGGCAACAAATTCAGATACCAGATACAATAGCAGAAGCGCAAACTGTATATGGGCGAGGAAACATCGAGGTA
GAGGAGGAAGGAAGTGACCGGCTACACTAA
Transcript >Agabi119p4|059280
ATGAAGCGTTCATCATCCTCAAACCCAAGTAGCGCGAAGAAGGCGCGTCGCATCAGCAAAACAAAAGAAGATGTA
GAGTGGCCAGAGCATTTCACTTCATTGTTTGCTGTTTTCAAGGTATCTTACTGGGCGCATTATAATCTACGACTG
TCTGACTGTTTCAAGGCCTTAAACACCGTTCTAGCCTTTATATCTTCCAAGAAACAAATAGCGACAACATTTGAC
GCTATAAGATCGTCCGTGGAAGGCATTTTGAAACGACCTTTGGAGCTGCAAGCTGTCGCAGAGATCAAAGCTCTT
CTTCCTGACATCGTCAAGTTCTCATACATACCCCGAAATGATTCCGCAATCAACGAGAACGCTGATCTTAAGGGG
AAGCACAGAGCGAAATCTCCTGACTTCGTTATTCCTTCTACAAGAGTAGCAAATGCGAGCGGGGAAGGGCGCATT
CTCGTTCTCGAATTCGCTGATAACCTAAGAGGGAAGAAGTCACGGAATGTTGGATTAAGCTACCAGCAGGCTCCT
TCCTTGACACCCGCGGCGATGAAGCTGCTCATTGAAACACGAAATGATATCTTTGGGCAGGCAGTAAATGATCTC
ATACTTGCAACAATGCACCAAAGTGATCCCGTCCAGATGCTCCAACAGGCCGCTCGGGAGCATGTACCAGTTGTC
CCCTATGCGCTAATAACTCCTTCAGATCAGGAATGCGCCACGAACACTAATGCACGACCTTCCGTGAACGACTTG
GTACAAAAGATAATGGATCAGGATTGGTATCGGGAACAGATTATATTCCGCAAGACAGTAGATGCTCGAGAACCA
CTGCACGGCGAATTGGGGTCTTCGCTTTCCCCTAGTATAACTTCCGCTCTGGCCACCTCGAGGAGCATCGGATCA
TTTTATGCCCACCAATCAGAAGCGATACGTGCTCTCTTCGAAGGAAAACATGTAGTCGTGTCGACGAGCACAGCT
TCAGGAAAGAGTTTGATATATCAAGTTCCGATTCTCAAGTTTCTCGAAGATGACATTGAGGCAAAGGCAATTTGC
ATATACCCTACAAAGGCATTGGAACAAGACCAGAAGGCATCTCTTGAAACAATGATTCAGAATTGTCCTGGCCTA
GAACATATCCGAGTCTCTACGTACGATGGCGATACTCCACAAGAACAGCGACCGACTATACGAGAAGAGTCCTCA
GTCATTTTCACGAACTTTGATACAATCCATGCATCCATCTTACCTCATGAGGATAATTGGAGGAGTTTTCTGCGT
CAAGTCAAGCTTGTTGTAGTGGATGAGCTACACTACTATTCCGGCCTTCTTGGAAGCCACGTTGCTTTCATTATG
CGAAGGTTCAGGCGCATATGTGCAGCTGTCGGAAATCGCCAAATTCGTTTCATCTCCTGTACCGCTACTCTTGGT
AATCCAGGTGCCCACATGCAGAAGATTTTTTGCCTCGGAGAAGACGAAATCCGGGTGGTAGATACTGACGGCGCG
CCTTCTGGAAGGAAGGATTTCCTCGTATGGAATCCGCCGTTGATTGACAATGCAAACAAGAATCTAGGAAGGCGA
GGGTCAATTTCTGAGGCTACATTGCTGATGCGCTTTTTGATGCAGCAAGGTGCTCGCGTCCTTTTATTCTGCAAA
ATACGGAAAGTTTGTGAGCTGGCTATGAGGGCCATACGAGCGGATCTAAGCAATGAAGGACAGCTTGATATTTTA
GCCAAAGTAAAAGCATATCGAGGAGGTTATTCACAAGAAGATCGTCGTCGCATCGAAGAAGAGGCGTTCTCTGGA
CAATTGCTTGGAATCATCGCGACAAATGCTCTTGAGCTGGGTATTGACATTGGTGCTCTTGATATTGTCATCATG
CTTGGCTTTCCCATGAGCGTCGCCAGCTTTCGTCAACAAGCTGGAAGAGCTGGACGTCGCGTGCGGGACTCATTA
GCCATTTTCGTTGCAGACCCATTCCCAATAGATCAGTACTATGTCAATCACTCGGAAGAGCTTTTCAGCCACGCA
ATGGAAGATCTAGTGATTGACACAGAAAGCCCGGTGATTTTAGAAGCGCATTTACAATGCGCTGCACATGAGATG
CCTATCCACAGAGAGGATAAACAATACTTTGGTCCTCTGATGCCCGACATCTGCGAGAAGAAGTTGCTCAAGGAT
AGAGATGGCTGGTATCAAACCCACCCTAATTTTTTGCCCTATCCACCTCGCTTTGTATCCATCCGTGGCGCTCAG
GAAGAAAGATATGCTGTCATTTGTGTCAAAACTGATGCAGCAAACATCATTCTTGAAGAGGTCGAAGTATCGCGT
GCGATGTTCGAAGTTTATGAAGGCGGCATTTTTATGCATCAAGGCGAAGCATATATCGTTACGGAAGTTAGTCAT
GATAACAAGATAGCCAAAGTCATTCAAGCGAATGTCAATTATCACACGTCACCTCGGGATTTCACAAATGTAGAT
GCCGTTCGCACGACTCGAATCAGAGCCATTGGTAACCATCGTGCTTTCTACGGAATGGTCAACGTGGAAGTGAAA
GTGTTCGGATTCTTCAAAATTAGGAACAACACAATTCTCGATGCTGTCGAGATTGATACGCCTCCTTACGTATGC
GATACGACAGGTTTTTGGATAGATGTTCCGCGTTCGATTCTAGAATTACTGCGTCGCAAGCATTTCAATTTGGCT
GAGGCTATACATGCAGCTCAACATGCCTTCCTCAACCAATTTCCATTGTCCGAGGATCTCAGGACGGAGTGCAAG
GCAGCGGAGAAAGAGTATAGGGTCACAGAGTCATCTAGAAAGAGACCGGCAAGAATCATTTTTTATGATTCTATT
GGCAAAGGTGGTGGGGTGGCTGCAAAAGCTTTCGACTATGCTCATGAGACCTTGCGAAAAGCCCATTCTGCCTTA
GAGAATTGCCATTGCGAGGAAGGTTGCGGAAACTGCGTACAAAGCGCCACTTGCAGGGAAGCCAACCAAGTTTCT
TCAAAATTAGGAGGTGGTATAATCATAAGGAGTATCCTTGGCCTACCGATCGATCCGGACGTGGTAACACTTCAA
AGTGGGCAACAAATTCAGATACCAGATACAATAGCAGAAGCGCAAACTGTATATGGGCGAGGAAACATCGAGGTA
GAGGAGGAAGGAAGTGACCGGCTACACTAA
Gene >Agabi119p4|059280
ATGAAGCGTTCATCATCCTCAAACCCAAGTAGCGCGAAGAAGGCGCGTCGCATCAGCAAAACAAAAGAAGATGTA
GAGTGGCCAGAGCATTTCACTTCAGTACGCCCTCTCAGGCGCTGACCTGGTTCACAGTACTGACTTCCCTCCTAG
TTGTTTGCTGTGTGTTTCTACCTAATACTCTAACACTCCGACCTCGTTTACTGACCTCTTCTTACCCAGGTTTTC
AAGGTATCTTACTGGGCGCATTATAATCTACGACTGTCTGACTGTTTCAAGGCCTTAAACACCGTTCTAGCCTTT
ATATCTTCCAAGAAACAAATAGCGACAACATTTGACGCTATAAGATCGTCCGTGGAAGGCATTTTGAAACGGCAA
GTGAAAGACTTTCGCGAGAGTCTAGCTTGACGGATGGATTATGCGCAGACCTTTGGAGCTGCAAGCTGTCGCAGA
GATCAAGTCCGTTCAATTAGCTTTACCCCACGGAAGTATGACTCACTGCTTTCGCTTAGAGCTCTTCTTCCTGAC
ATCGTCAAGTTCTCATACATACCCCGAAATGATTCCGCAATCAACGAGAACGCTGATCTTAAGGGGAAGCACAGA
GCGAAATCTCCTGACTTCGTTATTCCTTCTACAAGAGTAGCAAATGCGAGCGGGGAAGGGCGCATTCTCGTTCTC
GAATTCGCTGATAACCTAAGAGGGAAGAAGTCACGGAATGTTGGGTAAGACTATAGTGATAAGTGATATGGGTAT
TATGATTTTGTACTAACAGCTGTGATAGATTAAGCTACCAGCAGGCTCCTTCCTTGACACCCGCGGCGATGAAGC
TGCTCATTGAAACACGAAATGATATCTTTGGGCAGGCAGTAAATGAGTAAATCTCTCTACATCTCAGTGACTCCT
TTATCTGATCTGCCATGCTTTTAGTCTCATACTTGCAACAATGCACCAAAGTGATCCCGTCCAGATGCTCCAACA
GGCCGCTCGGGAGCATGTACCAGTTGTCCCCTATGCGCTAATAACTCCTTCAGATCAGGAATGCGCCACGAACAC
TAATGCACGACCTTCCGTGAACGACTTGGTACAAAAGATAATGGATCAGGATTGGTATCGGGAACAGATTATATT
CCGCAAGACAGTAGATGCTCGAGAACCACTGCACGGTGAACTTTTTCACTGGCTTATAAATGCATTGAGATACTG
ATCAAATCAAAAGGCGAATTGGGGTCTTCGCTTTCCCCTAGTATAACTTCCGCTCTGGCCACCTCGAGGAGCATC
GGATCATTTTATGCCCACCAATCAGAAGCGATACGTGCTCTCTTCGAAGGAAAACATGTAGTCGTGTCGACGAGC
ACAGCTTCAGGAAAGAGTTTGATATATCAAGTGAGTACTCCATACCTTTTTGAATCGGCGTTCAGAAAATGATAC
TTGTAGGTTCCGATTCTCAAGTTTCTCGAAGATGACATTGAGGCAAAGGCAATTTGCATATACCCTACAAAGGTA
AAAGTGACAAAACGTTGTTGTTTATATTCCGTTCACATTTTTCAGGCATTGGAACAAGACCAGAAGGCATCTCTT
GAAACAATGATTCAGAATTGTCCTGGCCTAGAACATATCCGAGTCTCTACGTACGATGGCGATACTCCACAAGAA
CAGCGACCGAGTTAGTACCACCACAAACTTTCTTCTACATGAGAAGCTCAATTTGGTCCAGCTATACGAGAAGAG
TCCTCAGTCATTTTCACGAACTTTGTAAGTTTATCCAAGTCGACTTGTGTTTGCAGCTCTCAATTCCCAAGGATA
CAATCCATGCATCCATCTTACCTCATGAGGATAATTGGAGGAGGTGAGGTCTTGTCGTTGATGTATCAATGGAAA
TTTTGAAAATTCTGTAGTTTTCTGCGTCAAGTCAAGGTAAGTTGCGACCGACCAGGCTAGCAGTTTGTTATACAT
TCTTGTCAGCTTGTTGTAGTGGATGAGCTACACTACTATTCCGGCCTTCTTGGAAGGTGAGATTTACGGCAACTA
ACTTCTTACGTTCCGGACTGAAAGTGGATGCAGCCACGTTGCTTTCATTATGCGAAGGTTCAGGCGCATATGTGC
AGCTGTCGGAAGTTTGTAGTGCATTCTCGCGGCTCCTTCCATCAAAACTTAACTTTCCGTCCAATAGATCGCCAA
ATTCGTTTCATCTCCTGTACCGCTACTCTTGGTAATCCAGGTGCCCACATGCAGAAGATTTTTTGCCTCGGAGAA
GACGAAATCCGGGTGGTAGATACTGACGGCGCGCCTTCTGGAAGGAAGGATTTCCTCGTATGGAATCCGCCGTTG
ATTGACAATGCAAACAAGAATCTAGGAAGGCGAGGGTCAATTTCTGAGGCTACATTGCTGATGCGCTTTTTGATG
CAGCAAGGTGCTCGCGTCCTTTTATTCTGCAAAGTATGTGCCACTGAATCCTTCCCCTATTCGGCGCTAATGAGA
GCTTGCAGATACGGAAAGTTTGTGAGCTGGTAGGTAGACTGTCTCGTCAGTGCGGTGAAAAATCAATGTATTAAC
CACCGTTTAGGCTATGAGGGCCATACGAGCGGATCTAAGCAATGAAGGACAGCTTGATATTTTAGCCAAAGTAAA
AGCATATCGAGGAGGTGACAACTGATGAGTGTTTGACCTCGATGCACTGACAAAACGTATCTTTCATAGGTTATT
CACAAGAAGTATATATCCACCTTGCACTGCATGCAGACAATGTAATTCTTTGCACAGGATCGTCGTCGCATCGAA
GAAGAGGCGTTCTCTGGACAATTGCTTGGAATCATCGCGACAAATGCTCTTGAGCTGGGTATTGACATTGGTGCT
CTTGATATTGTCATCATGCTTGGCTTTCCCATGAGCGTCGCCAGCTTTGTGAGTACCCTTATCCCGCTAAAATGT
AGAAGAAACTTAGTATGGTTCGATTCTCGCCCAGCGTCAACAAGCTGGAAGAGCTGGACGTCGCGTGCGGGACTC
ATTAGCCATTTTCGTTGCAGACCCATTCCCAATAGATCAGTACTATGTCAATCACTCGGAAGAGCTTTTCAGCCA
CGCAATGGAAGATCTAGTGATTGACACAGAAAGCCCGGTGATTTTAGAAGGTGTGTCTAATGACTTTTATCTAAC
AAAAATTAACTTTACTAGCGCATTTACAATGCGCTGCACATGAGATGCCTATCCACAGAGAGGATAAACAATACT
TTGGTCCTCTGATGCCCGACATCTGCGAGAAGAAGTTGCTCAAGGATAGAGATGGCTGGTGAGTTTCTGAATGTG
CTCGCTTTGGAAAGTTTTGAATATATGCACATAGGTATCAAACCCACCCTAATTTTTTGCCCTATCCACCTCGCT
TTGTATCCATCCGTAAGTGGGCCACCTCGAGAGACAAATACAAGAGGCCAACATTTTCTCAGGTGGCGCTCAGGA
AGAAAGATATGCTGTCATTTGTGTCAAAACTGATGCAGCAAACATCATTCTTGAAGAGGTCGAAGTATCGCGTGC
GATGTTCGAAGTTTATGAAGGCGGCATTGTATGTTTCACCAATTATCACAACTTTCTCCATTCTGATATCCGATG
CAATTGCGTTTTAGTTTATGCATCAAGGCGAAGCATATATCGTCAGCTCCAGCGTTATAGGCCATTCATATAGTT
CACTCAAATACTTGCTTTCGCGTGATAGGTTACGGAAGTTAGTCATGATAACAAGATAGCCAAAGTCATTCAAGC
GAATGTCAATTATCACACGTCACCTCGGTATGTTTGACATATATAAATTGACCGTTGGCTGAACATAAATTCGCG
ATAGGGATTTCACGTTCGTCTCCCGCTCCTGCTAGAATGACTGATTTTTCATGTTGGATTTAGAAATGTAGATGC
CGTTCGCACGACTCGAATCAGAGCCATTGGTAACCATCGTGCTTTCTACGGAAGTGAGTCGCCACTTATTTCAGA
ACGACCGTCAAGATCACCTTATTTTCTTTTAGTGGTCAACGTGGAAGTGAAAGTGTTCGGTATGTCTGATTTCCA
TTCTTAAGGGACATATAATAATGGACATCGAAAGGATTCTTCAAAATTAGGAACAACACAATTCTCGATGCTGTC
GAGATTGATACGCCTCCTTACGTATGCGATACGACAGGTTTTTGGATAGATGTTCCGCGTTCGATTCTAGAATTA
CTGCGTCGCAAGCATTTCAATTTGGCTGAGGCTATACATGCAGCTCAACATGCCTTCCTCAACCAATTTCCATTG
TCCGAGGATCTCAGGACGGAGTGCAAGGCAGCGGAGAAAGAGTATAGGGTCACAGAGTCATCTAGAAAGAGACCG
GCAAGGCGGGTTTTCTGTTTCCCTATTTGACTTCTAATTTTACTTAACCTTTTTAGAATCATTTTTTATGATTCT
ATTGGCAAAGGTGGTGGGGTGGCTGCAAAAGCTTTCGACTATGGTCAGTACATCCTTGAGTCTTCACAGTGCACT
TTCTCATGTTTGATAGCTCATGAGACCTTGCGAAAAGCCCATTCTGCCTTAGAGAATTGCCATTGCGAGGAAGGT
TGCGGAAACTGTGAGGATTTGATTACCTCGCCCTTCCACTCATCTCGTACTCACCCGAGACAGGCGTACAAAGCG
CCACTTGCAGGGAAGCCAACCAAGTTTCTTCAAAATTAGGAGGTGGTATAATCATAAGGAGTATCCTTGGCCTAC
CGATCGATCCGGACGTGGTAACACTTCAAAGTGGGCAACAAATTCAGATACCAGATACAATAGCAGAAGCGCAAA
CTGTATATGGGCGAGGAAACATCGAGGTAGAGGAGGAAGGAAGTGACCGGCTACACTAA

© 2022 - Robin Ohm - Utrecht University - The Netherlands

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