Fungal Genomics

at Utrecht University

General Properties

Protein IDAgabi119p4|056060
Gene name
Locationscaffold_03a:856840..862603
Strand-
Gene length (bp)5763
Transcript length (bp)3915
Coding sequence length (bp)3915
Protein length (aa) 1305

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PFAM Domains

PFAM Domain ID Short name Long name E-value Start End
PF02889 Sec63 Sec63 Brl domain 1.2E-29 678 992
PF00270 DEAD DEAD/DEAH box helicase 8.5E-24 191 359
PF00271 Helicase_C Helicase conserved C-terminal domain 3.0E-09 425 559
PF04851 ResIII Type III restriction enzyme, res subunit 1.3E-09 199 356

Swissprot hits

[Show all]
Swissprot ID Swissprot Description Start End E-value
sp|P51979|HFM1_YEAST ATP-dependent DNA helicase MER3 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HFM1 PE=1 SV=3 176 1095 4.0E-168
sp|A2RUV5|HFM1_XENTR Probable ATP-dependent DNA helicase HFM1 OS=Xenopus tropicalis GN=hfm1 PE=2 SV=1 173 1128 8.0E-165
sp|D3Z4R1|HFM1_MOUSE Probable ATP-dependent DNA helicase HFM1 OS=Mus musculus GN=Hfm1 PE=3 SV=2 168 1115 2.0E-164
sp|A2PYH4|HFM1_HUMAN Probable ATP-dependent DNA helicase HFM1 OS=Homo sapiens GN=HFM1 PE=1 SV=2 168 1094 7.0E-162
sp|Q5D892|MER3_ARATH DExH-box ATP-dependent RNA helicase DExH17 OS=Arabidopsis thaliana GN=MER3 PE=2 SV=1 173 901 1.0E-132
[Show all]
[Show less]
Swissprot ID Swissprot Description Start End E-value
sp|P51979|HFM1_YEAST ATP-dependent DNA helicase MER3 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=HFM1 PE=1 SV=3 176 1095 4.0E-168
sp|A2RUV5|HFM1_XENTR Probable ATP-dependent DNA helicase HFM1 OS=Xenopus tropicalis GN=hfm1 PE=2 SV=1 173 1128 8.0E-165
sp|D3Z4R1|HFM1_MOUSE Probable ATP-dependent DNA helicase HFM1 OS=Mus musculus GN=Hfm1 PE=3 SV=2 168 1115 2.0E-164
sp|A2PYH4|HFM1_HUMAN Probable ATP-dependent DNA helicase HFM1 OS=Homo sapiens GN=HFM1 PE=1 SV=2 168 1094 7.0E-162
sp|Q5D892|MER3_ARATH DExH-box ATP-dependent RNA helicase DExH17 OS=Arabidopsis thaliana GN=MER3 PE=2 SV=1 173 901 1.0E-132
sp|B6DMK2|MER3_ORYSJ ATP-dependent DNA helicase MER3 homolog OS=Oryza sativa subsp. japonica GN=MER3 PE=2 SV=1 173 899 7.0E-126
sp|Q54G57|HELC1_DICDI Activating signal cointegrator 1 complex subunit 3 OS=Dictyostelium discoideum GN=ascc3 PE=3 SV=1 149 838 2.0E-94
sp|E9PZJ8|ASCC3_MOUSE Activating signal cointegrator 1 complex subunit 3 OS=Mus musculus GN=Ascc3 PE=1 SV=1 180 838 3.0E-93
sp|F1NTD6|ASCC3_CHICK Activating signal cointegrator 1 complex subunit 3 OS=Gallus gallus GN=ascc3 PE=3 SV=2 180 806 9.0E-93
sp|Q8N3C0|ASCC3_HUMAN Activating signal cointegrator 1 complex subunit 3 OS=Homo sapiens GN=ASCC3 PE=1 SV=3 180 838 3.0E-92
sp|E1BNG3|ASCC3_BOVIN Activating signal cointegrator 1 complex subunit 3 OS=Bos taurus GN=ascc3 PE=3 SV=1 180 838 7.0E-92
sp|O60072|MUG81_SCHPO Putative helicase mug81 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=mug81 PE=1 SV=1 185 903 1.0E-89
sp|Q9FNQ1|DEXHE_ARATH DExH-box ATP-dependent RNA helicase DExH14 OS=Arabidopsis thaliana GN=At5g61140 PE=2 SV=1 171 920 2.0E-89
sp|F1LPQ2|ASCC3_RAT Activating signal cointegrator 1 complex subunit 3 OS=Rattus norvegicus GN=Ascc3 PE=3 SV=1 180 838 2.0E-86
sp|E7F8F4|ASCC3_DANRE Activating signal cointegrator 1 complex subunit 3 OS=Danio rerio GN=ascc3 PE=3 SV=2 180 695 7.0E-86
sp|P53327|SLH1_YEAST Antiviral helicase SLH1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SLH1 PE=1 SV=2 179 838 8.0E-82
sp|F1LPQ2|ASCC3_RAT Activating signal cointegrator 1 complex subunit 3 OS=Rattus norvegicus GN=Ascc3 PE=3 SV=1 163 885 1.0E-81
sp|E9PZJ8|ASCC3_MOUSE Activating signal cointegrator 1 complex subunit 3 OS=Mus musculus GN=Ascc3 PE=1 SV=1 163 885 3.0E-81
sp|F1NTD6|ASCC3_CHICK Activating signal cointegrator 1 complex subunit 3 OS=Gallus gallus GN=ascc3 PE=3 SV=2 173 859 8.0E-81
sp|O75643|U520_HUMAN U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Homo sapiens GN=SNRNP200 PE=1 SV=2 185 874 5.0E-80
sp|Q8N3C0|ASCC3_HUMAN Activating signal cointegrator 1 complex subunit 3 OS=Homo sapiens GN=ASCC3 PE=1 SV=3 173 885 6.0E-80
sp|Q6P4T2|U520_MOUSE U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Mus musculus GN=Snrnp200 PE=1 SV=1 185 874 7.0E-80
sp|F1LNJ2|U520_RAT U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Rattus norvegicus GN=Snrnp200 PE=1 SV=1 185 874 1.0E-79
sp|Q9VUV9|U520_DROME Putative U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Drosophila melanogaster GN=l(3)72Ab PE=2 SV=4 185 874 1.0E-79
sp|E1BNG3|ASCC3_BOVIN Activating signal cointegrator 1 complex subunit 3 OS=Bos taurus GN=ascc3 PE=3 SV=1 163 885 4.0E-79
sp|Q55CI8|HELCL_DICDI Activating signal cointegrator 1 complex subunit 3-like OS=Dictyostelium discoideum GN=ascc3l PE=3 SV=1 159 862 7.0E-78
sp|O60072|MUG81_SCHPO Putative helicase mug81 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=mug81 PE=1 SV=1 167 1021 2.0E-77
sp|Q9SYP1|DEXHC_ARATH DExH-box ATP-dependent RNA helicase DExH12 OS=Arabidopsis thaliana GN=EMB1507 PE=2 SV=1 173 841 3.0E-76
sp|E7F8F4|ASCC3_DANRE Activating signal cointegrator 1 complex subunit 3 OS=Danio rerio GN=ascc3 PE=3 SV=2 163 734 4.0E-76
sp|Q9SYP1|DEXHC_ARATH DExH-box ATP-dependent RNA helicase DExH12 OS=Arabidopsis thaliana GN=EMB1507 PE=2 SV=1 186 874 4.0E-76
sp|Q54G57|HELC1_DICDI Activating signal cointegrator 1 complex subunit 3 OS=Dictyostelium discoideum GN=ascc3 PE=3 SV=1 189 831 5.0E-76
sp|Q9VUV9|U520_DROME Putative U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Drosophila melanogaster GN=l(3)72Ab PE=2 SV=4 173 852 2.0E-75
sp|P32639|BRR2_YEAST Pre-mRNA-splicing helicase BRR2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=BRR2 PE=1 SV=2 173 897 4.0E-75
sp|O48534|DEXHD_ARATH DExH-box ATP-dependent RNA helicase DExH13 OS=Arabidopsis thaliana GN=At2g42270 PE=2 SV=1 152 818 6.0E-75
sp|Q9UT24|BRR2_SCHPO Pre-mRNA-splicing factor brr2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=brr2 PE=1 SV=1 173 831 1.0E-74
sp|Q55CI8|HELCL_DICDI Activating signal cointegrator 1 complex subunit 3-like OS=Dictyostelium discoideum GN=ascc3l PE=3 SV=1 182 874 5.0E-73
sp|O48534|DEXHD_ARATH DExH-box ATP-dependent RNA helicase DExH13 OS=Arabidopsis thaliana GN=At2g42270 PE=2 SV=1 180 841 2.0E-72
sp|Q9U2G0|U520_CAEEL Putative U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Caenorhabditis elegans GN=Y46G5A.4 PE=3 SV=1 165 831 5.0E-71
sp|O75643|U520_HUMAN U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Homo sapiens GN=SNRNP200 PE=1 SV=2 173 850 2.0E-69
sp|Q6P4T2|U520_MOUSE U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Mus musculus GN=Snrnp200 PE=1 SV=1 173 850 2.0E-69
sp|F1LNJ2|U520_RAT U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Rattus norvegicus GN=Snrnp200 PE=1 SV=1 173 850 3.0E-69
sp|Q9FNQ1|DEXHE_ARATH DExH-box ATP-dependent RNA helicase DExH14 OS=Arabidopsis thaliana GN=At5g61140 PE=2 SV=1 173 904 6.0E-69
sp|P53327|SLH1_YEAST Antiviral helicase SLH1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SLH1 PE=1 SV=2 173 831 1.0E-66
sp|Q9U2G0|U520_CAEEL Putative U5 small nuclear ribonucleoprotein 200 kDa helicase OS=Caenorhabditis elegans GN=Y46G5A.4 PE=3 SV=1 186 806 7.0E-63
sp|Q9UT24|BRR2_SCHPO Pre-mRNA-splicing factor brr2 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=brr2 PE=1 SV=1 184 766 6.0E-49
sp|Q9V0A9|HELS_PYRAB ATP-dependent DNA helicase Hel308 OS=Pyrococcus abyssi (strain GE5 / Orsay) GN=hel308 PE=3 SV=1 193 871 2.0E-46
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=1 193 871 1.0E-44
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=1 203 694 2.0E-42
sp|Q0W6L1|HELS_METAR ATP-dependent DNA helicase Hel308 OS=Methanocella arvoryzae (strain DSM 22066 / NBRC 105507 / MRE50) GN=hel308 PE=3 SV=1 176 730 3.0E-42
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=1 205 690 2.0E-40
sp|D0KN27|HELS_SULS9 ATP-dependent DNA helicase Hel308 OS=Sulfolobus solfataricus (strain 98/2) GN=hel308 PE=1 SV=1 181 572 8.0E-40
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=1 181 707 9.0E-40
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=1 189 707 9.0E-39
sp|F0NDL2|HELS_SULIR ATP-dependent DNA helicase Hel308 OS=Sulfolobus islandicus (strain REY15A) GN=hel308 PE=3 SV=1 181 572 1.0E-38
sp|Q97VY9|HELS_SULSO ATP-dependent DNA helicase Hel308 OS=Sulfolobus solfataricus (strain ATCC 35092 / DSM 1617 / JCM 11322 / P2) GN=hel308 PE=3 SV=1 181 572 1.0E-38
sp|A6UN73|HELS_METVS ATP-dependent DNA helicase Hel308 OS=Methanococcus vannielii (strain SB / ATCC 35089 / DSM 1224) GN=hel308 PE=3 SV=1 200 584 6.0E-37
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=1 175 698 7.0E-37
sp|Q4JC00|HELS_SULAC ATP-dependent DNA helicase Hel308 OS=Sulfolobus acidocaldarius (strain ATCC 33909 / DSM 639 / JCM 8929 / NBRC 15157 / NCIMB 11770) GN=hel308 PE=3 SV=1 171 709 2.0E-36
sp|Q974S1|HELS_SULTO ATP-dependent DNA helicase Hel308 OS=Sulfolobus tokodaii (strain DSM 16993 / JCM 10545 / NBRC 100140 / 7) GN=hel308 PE=1 SV=1 189 572 9.0E-36
sp|Q3IU46|HELS_NATPD ATP-dependent DNA helicase Hel308 OS=Natronomonas pharaonis (strain ATCC 35678 / DSM 2160) GN=hel308 PE=3 SV=1 207 740 1.0E-35
sp|P32639|BRR2_YEAST Pre-mRNA-splicing helicase BRR2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=BRR2 PE=1 SV=2 178 884 3.0E-35
sp|Q12WZ6|HELS_METBU ATP-dependent DNA helicase Hel308 OS=Methanococcoides burtonii (strain DSM 6242 / NBRC 107633 / OCM 468 / ACE-M) GN=hel308 PE=3 SV=1 193 703 6.0E-35
sp|Q465R3|HELS_METBF ATP-dependent DNA helicase Hel308 OS=Methanosarcina barkeri (strain Fusaro / DSM 804) GN=hel308 PE=3 SV=1 175 698 8.0E-34
sp|Q9XIF2|MTR4_ARATH DExH-box ATP-dependent RNA helicase DExH9 OS=Arabidopsis thaliana GN=MTR4 PE=2 SV=1 169 599 9.0E-34
sp|Q9YFQ8|HELS_AERPE ATP-dependent DNA helicase Hel308 OS=Aeropyrum pernix (strain ATCC 700893 / DSM 11879 / JCM 9820 / NBRC 100138 / K1) GN=hel308 PE=3 SV=2 181 580 1.0E-33
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=1 175 698 1.0E-33
sp|A7IB61|HELS_METB6 ATP-dependent DNA helicase Hel308 OS=Methanoregula boonei (strain 6A8) GN=hel308 PE=3 SV=1 193 580 7.0E-33
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=1 207 572 7.0E-32
sp|Q5UYM9|HELS_HALMA ATP-dependent DNA helicase Hel308 OS=Haloarcula marismortui (strain ATCC 43049 / DSM 3752 / JCM 8966 / VKM B-1809) GN=hel308 PE=3 SV=1 193 700 2.0E-31
sp|Q9HMV6|HELS_HALSA ATP-dependent DNA helicase Hel308 OS=Halobacterium salinarum (strain ATCC 700922 / JCM 11081 / NRC-1) GN=hel308 PE=3 SV=1 173 700 3.0E-31
sp|B0R7Q2|HELS_HALS3 ATP-dependent DNA helicase Hel308 OS=Halobacterium salinarum (strain ATCC 29341 / DSM 671 / R1) GN=hel308 PE=3 SV=1 173 700 3.0E-31
sp|O13799|YE02_SCHPO Uncharacterized helicase C17H9.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC17H9.02 PE=1 SV=1 184 614 4.0E-31
sp|O26901|HELS_METTH ATP-dependent DNA helicase Hel308 OS=Methanothermobacter thermautotrophicus (strain ATCC 29096 / DSM 1053 / JCM 10044 / NBRC 100330 / Delta H) GN=hel308 PE=1 SV=1 201 572 5.0E-31
sp|Q58524|HELS_METJA ATP-dependent DNA helicase Hel308 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=hel308 PE=3 SV=1 200 523 1.0E-30
sp|Q8CGS6|DPOLQ_MOUSE DNA polymerase theta OS=Mus musculus GN=Polq PE=1 SV=2 193 645 4.0E-29
sp|P42285|SK2L2_HUMAN Superkiller viralicidic activity 2-like 2 OS=Homo sapiens GN=SKIV2L2 PE=1 SV=3 184 658 8.0E-29
sp|Q9CZU3|SK2L2_MOUSE Superkiller viralicidic activity 2-like 2 OS=Mus musculus GN=Skiv2l2 PE=1 SV=1 184 658 4.0E-28
sp|Q588V7|TEB_ARATH Helicase and polymerase-containing protein TEBICHI OS=Arabidopsis thaliana GN=TEB PE=2 SV=1 172 618 1.0E-27
sp|P47047|MTR4_YEAST ATP-dependent RNA helicase DOB1 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=MTR4 PE=1 SV=1 184 602 2.0E-27
sp|Q23223|MTR4_CAEEL mRNA transport homolog 4 OS=Caenorhabditis elegans GN=mtr-4 PE=3 SV=1 184 628 1.0E-26
sp|O75417|DPOLQ_HUMAN DNA polymerase theta OS=Homo sapiens GN=POLQ PE=1 SV=2 205 586 1.0E-26
sp|A3MSA1|HELS_PYRCJ ATP-dependent DNA helicase Hel308 OS=Pyrobaculum calidifontis (strain JCM 11548 / VA1) GN=hel308 PE=3 SV=1 181 625 2.0E-25
sp|Q5JGV6|HELS_THEKO ATP-dependent DNA helicase Hel308 OS=Thermococcus kodakarensis (strain ATCC BAA-918 / JCM 12380 / KOD1) GN=hel308 PE=3 SV=1 193 520 3.0E-24
sp|Q9ZBD8|HELY_MYCLE Probable helicase HelY OS=Mycobacterium leprae (strain TN) GN=helY PE=3 SV=1 173 574 3.0E-24
sp|P9WMR1|HELY_MYCTU Probable helicase HelY OS=Mycobacterium tuberculosis (strain ATCC 25618 / H37Rv) GN=helY PE=1 SV=1 173 625 4.0E-24
sp|P9WMR0|HELY_MYCTO Probable helicase HelY OS=Mycobacterium tuberculosis (strain CDC 1551 / Oshkosh) GN=helY PE=3 SV=1 173 625 4.0E-24
sp|Q8TDG4|HELQ_HUMAN Helicase POLQ-like OS=Homo sapiens GN=HELQ PE=1 SV=2 149 626 6.0E-24
sp|O18475|DPOLQ_DROME DNA polymerase theta OS=Drosophila melanogaster GN=mus308 PE=1 SV=1 193 572 1.0E-23
sp|Q9ZVW2|HEN2_ARATH DExH-box ATP-dependent RNA helicase DExH10 OS=Arabidopsis thaliana GN=HEN2 PE=1 SV=2 184 576 1.0E-23
sp|Q2VPA6|HELQ_MOUSE Helicase POLQ-like OS=Mus musculus GN=Helq PE=1 SV=2 172 596 7.0E-23
sp|A0FLQ6|DPOLQ_CAEEL DNA polymerase theta OS=Caenorhabditis elegans GN=polq-1 PE=1 SV=2 204 682 1.0E-22
sp|Q914M3|Y007_SIFVH Putative helicase 7 OS=Sulfolobus islandicus filamentous virus (isolate Iceland/Hveragerdi) GN=SIFV0007 PE=3 SV=1 189 570 8.0E-21
sp|Q15477|SKIV2_HUMAN Helicase SKI2W OS=Homo sapiens GN=SKIV2L PE=1 SV=3 174 602 4.0E-19
sp|Q58796|Y1401_METJA Probable ATP-dependent helicase MJ1401 OS=Methanocaldococcus jannaschii (strain ATCC 43067 / DSM 2661 / JAL-1 / JCM 10045 / NBRC 100440) GN=MJ1401 PE=3 SV=1 175 582 7.0E-18
sp|F4JAA5|SKI2_ARATH DExH-box ATP-dependent RNA helicase DExH11 OS=Arabidopsis thaliana GN=SKI2 PE=1 SV=1 400 602 2.0E-15
sp|O59801|SKI2_SCHPO Putative ATP-dependent RNA helicase C550.03c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPCC550.03c PE=3 SV=1 207 374 5.0E-14
sp|P35207|SKI2_YEAST Antiviral helicase SKI2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SKI2 PE=1 SV=2 207 424 1.0E-13
sp|O14232|MTR4_SCHPO ATP-dependent RNA helicase mtr4 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=mtr4 PE=1 SV=1 484 602 2.0E-13
sp|F4JAA5|SKI2_ARATH DExH-box ATP-dependent RNA helicase DExH11 OS=Arabidopsis thaliana GN=SKI2 PE=1 SV=1 201 390 6.0E-13
sp|P35207|SKI2_YEAST Antiviral helicase SKI2 OS=Saccharomyces cerevisiae (strain ATCC 204508 / S288c) GN=SKI2 PE=1 SV=2 476 602 2.0E-12
sp|Q09475|YP93_CAEEL Uncharacterized helicase C28H8.3 OS=Caenorhabditis elegans GN=C28H8.3 PE=3 SV=2 477 574 2.0E-12
sp|B9DFG3|ISE2_ARATH DExH-box ATP-dependent RNA helicase DExH15 chloroplastic OS=Arabidopsis thaliana GN=ISE2 PE=1 SV=2 484 571 8.0E-11
sp|O14232|MTR4_SCHPO ATP-dependent RNA helicase mtr4 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=mtr4 PE=1 SV=1 184 395 2.0E-10
sp|Q9P7T8|YIW2_SCHPO Uncharacterized helicase C694.02 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC694.02 PE=3 SV=1 484 594 2.0E-10
sp|O59801|SKI2_SCHPO Putative ATP-dependent RNA helicase C550.03c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPCC550.03c PE=3 SV=1 476 602 3.0E-10
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=1 185 558 5.0E-10
sp|Q5H9U9|DDX6L_HUMAN Probable ATP-dependent RNA helicase DDX60-like OS=Homo sapiens GN=DDX60L PE=2 SV=2 466 559 5.0E-10
sp|Q8IY21|DDX60_HUMAN Probable ATP-dependent RNA helicase DDX60 OS=Homo sapiens GN=DDX60 PE=1 SV=3 477 559 9.0E-10
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=1 204 632 3.0E-09
sp|P27639|IF4A_CAEEL Eukaryotic initiation factor 4A OS=Caenorhabditis elegans GN=inf-1 PE=2 SV=1 178 569 5.0E-09
sp|Q0UY62|DBP3_PHANO ATP-dependent RNA helicase DBP3 OS=Phaeosphaeria nodorum (strain SN15 / ATCC MYA-4574 / FGSC 10173) GN=DBP3 PE=3 SV=1 186 569 7.0E-09
sp|Q8L4E9|RH36_ORYSJ DEAD-box ATP-dependent RNA helicase 36 OS=Oryza sativa subsp. japonica GN=Os07g0633500 PE=3 SV=1 190 435 3.0E-08
sp|Q54XN7|Y8827_DICDI Uncharacterized helicase DDB_G0278827 OS=Dictyostelium discoideum GN=DDB_G0278827 PE=3 SV=1 463 575 3.0E-08
sp|Q4I662|DBP8_GIBZE ATP-dependent RNA helicase DBP8 OS=Gibberella zeae (strain PH-1 / ATCC MYA-4620 / FGSC 9075 / NRRL 31084) GN=DBP8 PE=3 SV=1 190 570 5.0E-08
sp|Q76PD3|DBP6_SCHPO ATP-dependent RNA helicase dbp6 OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=dbp6 PE=2 SV=1 206 524 8.0E-08
sp|A1D6X9|DBP8_NEOFI ATP-dependent RNA helicase dbp8 OS=Neosartorya fischeri (strain ATCC 1020 / DSM 3700 / FGSC A1164 / NRRL 181) GN=dbp8 PE=3 SV=1 190 570 1.0E-07
sp|Q2UKX3|DBP8_ASPOR ATP-dependent RNA helicase dbp8 OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) GN=dbp8 PE=3 SV=1 190 570 2.0E-07
sp|P50830|YPRA_BACSU Uncharacterized ATP-dependent helicase YprA OS=Bacillus subtilis (strain 168) GN=yprA PE=3 SV=1 193 559 2.0E-07
sp|Q4WXW1|DBP8_ASPFU ATP-dependent RNA helicase dbp8 OS=Neosartorya fumigata (strain ATCC MYA-4609 / Af293 / CBS 101355 / FGSC A1100) GN=dbp8 PE=3 SV=1 190 570 4.0E-07
sp|A1CKJ0|DBP8_ASPCL ATP-dependent RNA helicase dbp8 OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) GN=dbp8 PE=3 SV=1 190 570 8.0E-07
sp|Q5JGV6|HELS_THEKO ATP-dependent DNA helicase Hel308 OS=Thermococcus kodakarensis (strain ATCC BAA-918 / JCM 12380 / KOD1) GN=hel308 PE=3 SV=1 519 580 1.0E-06
sp|Q09475|YP93_CAEEL Uncharacterized helicase C28H8.3 OS=Caenorhabditis elegans GN=C28H8.3 PE=3 SV=2 190 398 1.0E-06
sp|P0CR03|DBP8_CRYNB ATP-dependent RNA helicase DBP8 OS=Cryptococcus neoformans var. neoformans serotype D (strain B-3501A) GN=DBP8 PE=3 SV=1 162 357 2.0E-06
sp|B9DFG3|ISE2_ARATH DExH-box ATP-dependent RNA helicase DExH15 chloroplastic OS=Arabidopsis thaliana GN=ISE2 PE=1 SV=2 184 367 3.0E-06
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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 - 36 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|056060
MQPNFSDSYHDYLDLMDPQMDSVTVFDTGPTFGVSEDDFDDYLNQLMTSSPSPPQRPIESFRSDTASSNQSAPCG
SGFSAAHQGGSRPLLPTRLISRMNDNVPPFSGPSGNAFHSETYSGANDPSDGHVRMLESRNQVENSSRHPGTIID
DRERGTEFSRNSMGFNQGSRPLVSDLPDLYRGIFKFPAFNAMQTRCFDHIMTSNRDLVVSAPTGSGKTVLFELAI
VALLSQADPTRSKAVYMAPTKALCSERFRDWSGKFNPLGIEVCELTGDTVQFGRSAWGDAKKSCIIITTAEKWDS
LTRTWRDHESILSQIKLFLVDEVHVLNETRGSTLEVVISRMKTRNECIRFLLVSATVPNIRDIADWMDNSRESNT
CEVLEFGEEYRPCRLTRFVIGVPRSNKQNEFQYAATLNNQLFPVLQQYSVMKPILIFCSTRKGTLTSAGTLLKSY
EEAAKQKQRLPWVTSPQLDARFHDKRLQELATYGIGVHHAGLGLEDRRSVEELFLGGTIRVLVATSTLSVGVNLP
AHTVIIQGVKLFQNNTHVEYSDLDIMQMIGRAGRPQFDKDGIAIIMCEPQLVSKYQALTQGKTVLESSLHHNMLE
HLNSEIALGTITNLQSAKSWLHNSFLYQRLRKNPSHYALHQDTSKNWHERLEDIVLQNVGRLEATQLVCRTEDDQ
IQPTDYGDIMSKFYVRQMTMANILNFPDKSAEKPTLREILETIAAAEEFSSLRMRASEKLVYNELRTHNDIRYAI
KKVEKTSDKVFLLIQAILGNIPLNTPEMRRGDTQPQADALFIFKHAVRLAKVIVEVAIVKQLGTQLLNGLEALRC
LNAKAWEDRATVLRQIDQIGEKSLKVLAEHGITTLDLLRQQPPARIEILLNRKSPFGHVVLDSLAELPKYRIKVS
QTSVMTDNGKNPVRIKFSIECELVSSASAKVKKFRYHDVTAILSLTSDYDLIDFRRISTKALRERKSFDVVAELV
KPSQTIIVMIASESFAGTLVRSVVRPDVPVSEFPTPDTRPLSTLALDLKEFENDPNFWNMKFDEADGSDTADTRN
SASQNIKSGEKSNQKDQPPKLRDDNDRCKHTCTDKLKCLHLCCKKVKQYPERKKGKNNPSDAKGRKELRDRQSIG
DATHNGRSHVHERQIRDLERIHEKSDVQNSLKMKKEHRLKLDTTSSESRKRKIKPSFDIHFTEVEAQSNANKVIE
TTLDNDELPSIEQLLSGELTSGIGTEVQGLLQRDNLTPHKRPRLSLATQAIGTRDNTGERFSQMPLDTLNEVGNH
YAEVAKPVPEKDEFDELEEWLASGRVEIV*
Coding >Agabi119p4|056060
ATGCAGCCAAATTTCTCAGATAGTTATCACGACTACCTCGATCTTATGGACCCTCAAATGGACTCTGTAACTGTT
TTCGACACTGGGCCTACTTTCGGTGTATCCGAGGATGACTTCGACGATTATTTGAACCAATTGATGACGTCTTCC
CCATCACCTCCTCAACGTCCTATAGAATCATTTCGCTCTGATACAGCCTCTAGCAATCAATCGGCACCGTGTGGC
TCCGGTTTTTCGGCAGCTCATCAGGGAGGTTCTCGTCCTTTGCTCCCCACACGGCTCATTTCGCGTATGAACGAC
AACGTGCCGCCTTTCTCTGGACCTTCTGGCAACGCCTTTCATTCAGAAACATATTCAGGCGCTAACGACCCCTCG
GATGGTCATGTCCGCATGTTAGAATCAAGGAATCAAGTTGAAAACAGCTCTAGGCATCCCGGAACAATAATTGAC
GACCGCGAGAGAGGCACGGAATTTTCTAGAAACTCTATGGGCTTCAACCAAGGATCGAGGCCTCTGGTTTCAGAC
TTGCCGGACCTGTATCGTGGAATTTTCAAATTTCCTGCATTCAATGCTATGCAAACTAGATGTTTCGACCATATC
ATGACCTCAAATCGTGACTTGGTGGTCAGCGCCCCGACTGGGAGTGGTAAAACCGTCTTGTTTGAATTGGCTATA
GTCGCGTTGCTTAGCCAAGCCGATCCGACTCGTTCCAAAGCTGTTTATATGGCACCTACCAAGGCATTGTGTTCC
GAAAGATTTCGCGATTGGTCAGGGAAATTTAATCCGCTGGGGATTGAAGTTTGTGAGCTTACAGGGGATACGGTG
CAATTTGGTCGAAGTGCTTGGGGTGATGCGAAAAAAAGCTGCATAATCATCACAACGGCTGAAAAATGGGATAGT
TTGACTCGCACCTGGCGAGATCACGAAAGTATTTTGTCACAGATTAAATTATTTCTCGTTGATGAAGTTCATGTA
TTGAATGAAACCAGGGGAAGTACACTCGAAGTGGTAATATCCCGCATGAAAACCAGGAACGAGTGTATCAGATTC
CTTTTGGTTTCCGCGACGGTTCCCAATATCCGTGATATTGCCGATTGGATGGATAATAGTCGAGAATCCAATACG
TGTGAGGTTCTTGAGTTCGGGGAAGAATACCGACCATGTAGATTGACACGTTTTGTTATTGGCGTTCCACGATCG
AACAAGCAAAATGAGTTTCAATATGCGGCGACGCTGAACAACCAATTATTCCCAGTCCTTCAACAGTATTCAGTC
ATGAAACCAATATTAATATTCTGCTCAACGCGTAAAGGAACCCTGACGTCGGCCGGGACGCTCTTGAAGTCTTAC
GAGGAGGCCGCAAAACAGAAACAAAGACTGCCCTGGGTTACATCCCCTCAGTTGGATGCTCGTTTTCACGACAAG
CGTCTCCAAGAACTCGCTACATATGGCATTGGGGTCCACCATGCTGGCCTGGGGCTAGAGGATCGTAGATCAGTC
GAGGAACTGTTCCTAGGGGGTACTATTCGTGTTCTTGTCGCTACCTCCACTTTATCAGTCGGCGTCAACCTTCCC
GCTCATACAGTGATTATACAAGGAGTCAAGCTCTTTCAGAACAACACACACGTGGAGTATAGTGACCTGGATATT
ATGCAAATGATTGGCCGCGCGGGTCGTCCCCAGTTCGACAAAGATGGTATCGCAATAATCATGTGCGAGCCACAA
CTCGTCAGCAAATATCAGGCGCTTACACAAGGTAAAACGGTGTTGGAGAGCTCATTGCATCATAATATGCTCGAA
CATCTGAATTCCGAGATTGCATTGGGAACGATTACAAACCTCCAGTCGGCGAAAAGCTGGTTGCACAATTCGTTT
TTATACCAACGGCTGCGGAAAAATCCTAGTCACTATGCATTGCATCAGGATACAAGCAAGAATTGGCATGAAAGA
CTAGAAGACATTGTGCTCCAGAATGTTGGCCGGCTAGAAGCCACTCAATTGGTATGTAGGACCGAAGATGATCAG
ATACAACCTACAGATTATGGAGACATCATGTCAAAGTTTTATGTCCGCCAAATGACGATGGCAAATATCCTGAAC
TTCCCGGATAAGTCCGCAGAAAAGCCCACGCTACGCGAGATACTAGAAACAATAGCAGCCGCTGAAGAATTCTCG
AGTTTGAGGATGAGGGCTTCTGAAAAGCTTGTATATAATGAATTACGCACCCATAACGACATTCGGTACGCTATA
AAGAAAGTGGAAAAGACATCTGATAAGGTATTTCTCCTTATCCAGGCTATTCTCGGAAATATCCCTTTGAACACA
CCTGAAATGAGACGAGGGGATACACAGCCACAAGCGGACGCTTTATTTATCTTTAAACATGCGGTGCGACTGGCA
AAAGTAATCGTGGAAGTTGCAATTGTCAAGCAGCTCGGAACGCAGCTCCTGAACGGTCTCGAGGCTCTGCGGTGT
CTAAATGCCAAAGCTTGGGAGGATAGAGCGACCGTCTTGAGGCAAATCGACCAAATTGGGGAAAAATCATTGAAA
GTACTTGCTGAGCATGGAATCACAACATTGGATCTTCTTCGTCAACAGCCTCCGGCACGCATCGAAATCCTGCTT
AATCGAAAAAGTCCTTTTGGCCATGTAGTTCTAGACTCGCTCGCGGAGCTCCCAAAATACCGAATAAAAGTATCC
CAAACATCAGTTATGACCGACAATGGAAAAAATCCCGTGCGTATCAAATTCTCGATCGAATGCGAACTTGTTAGC
TCGGCGTCCGCGAAAGTTAAGAAGTTTCGATATCACGATGTCACGGCGATTTTGAGCTTGACATCGGACTACGAT
TTGATCGACTTTCGGAGGATATCCACCAAGGCACTCAGAGAAAGGAAATCCTTCGATGTTGTTGCTGAACTTGTC
AAACCCAGCCAGACAATTATCGTGATGATTGCATCGGAATCCTTCGCAGGCACGCTGGTGAGGTCCGTGGTGAGA
CCAGATGTGCCAGTTTCAGAATTCCCGACGCCCGACACCCGCCCTCTCTCAACACTGGCACTCGACTTGAAGGAG
TTCGAGAACGATCCTAACTTCTGGAACATGAAATTTGATGAAGCGGATGGATCGGATACAGCGGATACCCGCAAC
TCCGCAAGCCAGAATATCAAGAGTGGAGAAAAGTCGAACCAAAAAGATCAACCGCCAAAATTGCGGGATGATAAT
GACAGATGCAAGCACACTTGCACGGACAAATTGAAATGTTTGCATTTATGCTGTAAAAAGGTAAAACAATATCCT
GAGCGGAAAAAGGGGAAGAACAATCCCTCGGATGCGAAAGGGAGAAAAGAACTTAGGGACCGTCAATCGATCGGA
GACGCGACTCACAATGGTCGTAGCCATGTTCACGAACGCCAGATCAGAGACTTGGAAAGGATTCATGAAAAATCC
GACGTTCAAAATAGCCTCAAGATGAAGAAAGAACATCGATTAAAACTGGACACCACAAGTTCTGAAAGTCGGAAA
AGGAAGATCAAGCCGTCGTTCGACATACACTTTACGGAGGTGGAAGCCCAATCTAACGCCAACAAAGTCATAGAA
ACAACGCTCGATAATGACGAACTTCCAAGCATTGAACAATTACTTAGCGGCGAACTCACTTCTGGTATAGGGACT
GAAGTTCAAGGTTTACTACAGCGTGACAATCTCACGCCTCACAAGCGTCCACGCTTGAGCCTTGCAACGCAGGCG
ATTGGCACAAGAGACAACACAGGCGAACGGTTCTCCCAGATGCCATTGGACACACTGAATGAAGTCGGCAATCAT
TATGCAGAAGTAGCGAAACCTGTTCCAGAAAAAGATGAATTTGACGAATTGGAGGAATGGCTTGCAAGTGGACGT
GTTGAGATTGTTTAG
Transcript >Agabi119p4|056060
ATGCAGCCAAATTTCTCAGATAGTTATCACGACTACCTCGATCTTATGGACCCTCAAATGGACTCTGTAACTGTT
TTCGACACTGGGCCTACTTTCGGTGTATCCGAGGATGACTTCGACGATTATTTGAACCAATTGATGACGTCTTCC
CCATCACCTCCTCAACGTCCTATAGAATCATTTCGCTCTGATACAGCCTCTAGCAATCAATCGGCACCGTGTGGC
TCCGGTTTTTCGGCAGCTCATCAGGGAGGTTCTCGTCCTTTGCTCCCCACACGGCTCATTTCGCGTATGAACGAC
AACGTGCCGCCTTTCTCTGGACCTTCTGGCAACGCCTTTCATTCAGAAACATATTCAGGCGCTAACGACCCCTCG
GATGGTCATGTCCGCATGTTAGAATCAAGGAATCAAGTTGAAAACAGCTCTAGGCATCCCGGAACAATAATTGAC
GACCGCGAGAGAGGCACGGAATTTTCTAGAAACTCTATGGGCTTCAACCAAGGATCGAGGCCTCTGGTTTCAGAC
TTGCCGGACCTGTATCGTGGAATTTTCAAATTTCCTGCATTCAATGCTATGCAAACTAGATGTTTCGACCATATC
ATGACCTCAAATCGTGACTTGGTGGTCAGCGCCCCGACTGGGAGTGGTAAAACCGTCTTGTTTGAATTGGCTATA
GTCGCGTTGCTTAGCCAAGCCGATCCGACTCGTTCCAAAGCTGTTTATATGGCACCTACCAAGGCATTGTGTTCC
GAAAGATTTCGCGATTGGTCAGGGAAATTTAATCCGCTGGGGATTGAAGTTTGTGAGCTTACAGGGGATACGGTG
CAATTTGGTCGAAGTGCTTGGGGTGATGCGAAAAAAAGCTGCATAATCATCACAACGGCTGAAAAATGGGATAGT
TTGACTCGCACCTGGCGAGATCACGAAAGTATTTTGTCACAGATTAAATTATTTCTCGTTGATGAAGTTCATGTA
TTGAATGAAACCAGGGGAAGTACACTCGAAGTGGTAATATCCCGCATGAAAACCAGGAACGAGTGTATCAGATTC
CTTTTGGTTTCCGCGACGGTTCCCAATATCCGTGATATTGCCGATTGGATGGATAATAGTCGAGAATCCAATACG
TGTGAGGTTCTTGAGTTCGGGGAAGAATACCGACCATGTAGATTGACACGTTTTGTTATTGGCGTTCCACGATCG
AACAAGCAAAATGAGTTTCAATATGCGGCGACGCTGAACAACCAATTATTCCCAGTCCTTCAACAGTATTCAGTC
ATGAAACCAATATTAATATTCTGCTCAACGCGTAAAGGAACCCTGACGTCGGCCGGGACGCTCTTGAAGTCTTAC
GAGGAGGCCGCAAAACAGAAACAAAGACTGCCCTGGGTTACATCCCCTCAGTTGGATGCTCGTTTTCACGACAAG
CGTCTCCAAGAACTCGCTACATATGGCATTGGGGTCCACCATGCTGGCCTGGGGCTAGAGGATCGTAGATCAGTC
GAGGAACTGTTCCTAGGGGGTACTATTCGTGTTCTTGTCGCTACCTCCACTTTATCAGTCGGCGTCAACCTTCCC
GCTCATACAGTGATTATACAAGGAGTCAAGCTCTTTCAGAACAACACACACGTGGAGTATAGTGACCTGGATATT
ATGCAAATGATTGGCCGCGCGGGTCGTCCCCAGTTCGACAAAGATGGTATCGCAATAATCATGTGCGAGCCACAA
CTCGTCAGCAAATATCAGGCGCTTACACAAGGTAAAACGGTGTTGGAGAGCTCATTGCATCATAATATGCTCGAA
CATCTGAATTCCGAGATTGCATTGGGAACGATTACAAACCTCCAGTCGGCGAAAAGCTGGTTGCACAATTCGTTT
TTATACCAACGGCTGCGGAAAAATCCTAGTCACTATGCATTGCATCAGGATACAAGCAAGAATTGGCATGAAAGA
CTAGAAGACATTGTGCTCCAGAATGTTGGCCGGCTAGAAGCCACTCAATTGGTATGTAGGACCGAAGATGATCAG
ATACAACCTACAGATTATGGAGACATCATGTCAAAGTTTTATGTCCGCCAAATGACGATGGCAAATATCCTGAAC
TTCCCGGATAAGTCCGCAGAAAAGCCCACGCTACGCGAGATACTAGAAACAATAGCAGCCGCTGAAGAATTCTCG
AGTTTGAGGATGAGGGCTTCTGAAAAGCTTGTATATAATGAATTACGCACCCATAACGACATTCGGTACGCTATA
AAGAAAGTGGAAAAGACATCTGATAAGGTATTTCTCCTTATCCAGGCTATTCTCGGAAATATCCCTTTGAACACA
CCTGAAATGAGACGAGGGGATACACAGCCACAAGCGGACGCTTTATTTATCTTTAAACATGCGGTGCGACTGGCA
AAAGTAATCGTGGAAGTTGCAATTGTCAAGCAGCTCGGAACGCAGCTCCTGAACGGTCTCGAGGCTCTGCGGTGT
CTAAATGCCAAAGCTTGGGAGGATAGAGCGACCGTCTTGAGGCAAATCGACCAAATTGGGGAAAAATCATTGAAA
GTACTTGCTGAGCATGGAATCACAACATTGGATCTTCTTCGTCAACAGCCTCCGGCACGCATCGAAATCCTGCTT
AATCGAAAAAGTCCTTTTGGCCATGTAGTTCTAGACTCGCTCGCGGAGCTCCCAAAATACCGAATAAAAGTATCC
CAAACATCAGTTATGACCGACAATGGAAAAAATCCCGTGCGTATCAAATTCTCGATCGAATGCGAACTTGTTAGC
TCGGCGTCCGCGAAAGTTAAGAAGTTTCGATATCACGATGTCACGGCGATTTTGAGCTTGACATCGGACTACGAT
TTGATCGACTTTCGGAGGATATCCACCAAGGCACTCAGAGAAAGGAAATCCTTCGATGTTGTTGCTGAACTTGTC
AAACCCAGCCAGACAATTATCGTGATGATTGCATCGGAATCCTTCGCAGGCACGCTGGTGAGGTCCGTGGTGAGA
CCAGATGTGCCAGTTTCAGAATTCCCGACGCCCGACACCCGCCCTCTCTCAACACTGGCACTCGACTTGAAGGAG
TTCGAGAACGATCCTAACTTCTGGAACATGAAATTTGATGAAGCGGATGGATCGGATACAGCGGATACCCGCAAC
TCCGCAAGCCAGAATATCAAGAGTGGAGAAAAGTCGAACCAAAAAGATCAACCGCCAAAATTGCGGGATGATAAT
GACAGATGCAAGCACACTTGCACGGACAAATTGAAATGTTTGCATTTATGCTGTAAAAAGGTAAAACAATATCCT
GAGCGGAAAAAGGGGAAGAACAATCCCTCGGATGCGAAAGGGAGAAAAGAACTTAGGGACCGTCAATCGATCGGA
GACGCGACTCACAATGGTCGTAGCCATGTTCACGAACGCCAGATCAGAGACTTGGAAAGGATTCATGAAAAATCC
GACGTTCAAAATAGCCTCAAGATGAAGAAAGAACATCGATTAAAACTGGACACCACAAGTTCTGAAAGTCGGAAA
AGGAAGATCAAGCCGTCGTTCGACATACACTTTACGGAGGTGGAAGCCCAATCTAACGCCAACAAAGTCATAGAA
ACAACGCTCGATAATGACGAACTTCCAAGCATTGAACAATTACTTAGCGGCGAACTCACTTCTGGTATAGGGACT
GAAGTTCAAGGTTTACTACAGCGTGACAATCTCACGCCTCACAAGCGTCCACGCTTGAGCCTTGCAACGCAGGCG
ATTGGCACAAGAGACAACACAGGCGAACGGTTCTCCCAGATGCCATTGGACACACTGAATGAAGTCGGCAATCAT
TATGCAGAAGTAGCGAAACCTGTTCCAGAAAAAGATGAATTTGACGAATTGGAGGAATGGCTTGCAAGTGGACGT
GTTGAGATTGTTTAG
Gene >Agabi119p4|056060
ATGCAGCCAAATTTCTCAGATAGTTATCACGACTACCTCGATCTTATGGACCCTCAAATGGACTCTGTAACTGTT
TTCGACACTGGGCCTACTTTCGGTGTATCCGAGGATGACTTCGACGATTATTTGAACCAATTGAGTGAGTATATG
CTATACCAGACAATTAAAAATCCTCACAATTGATAGTGACGTCTTCCCCATCACCTCCTCAACGTCCTATAGAAT
CATTTCGCTCTGATACAGCCTCTAGCAATCAATCGGCACCGTGTGGCTCCGGTTTTTCGGCAGCTCATCAGGGAG
GTTCTCGTCCTTTGCTCCCCACACGGCTCATTTCGCGTATGAACGACAACGTGCCGCCTTTCTCTGGACCTTCTG
GCAACGCCTTTCATTCAGAAACATATTCAGGCGCTAACGACCCCTCGGATGGTCATGTCCGCATGTTAGAATCAA
GGAATCAAGTTGAAAACAGCTCTAGGCATCCCGGAACAATAATTGACGACCGCGAGAGAGGCACGGAATTTTCTA
GAAACTCTATGGGCTTCAACCAAGGATCGAGGCCTCTGGTTTCAGACTTGCGTTAGTTCCCTCCCTCCCTTGTGC
TTTGAGCAAACGATTGACGCGAACAAAGCGGACCTGTATCGTGGAATTTTCAAATTTCCTGCATTCAATGCTATG
CAAACTAGATGTTTCGACCATGTAAGCATCTTCGTTCGTCGATGTTAGCGTTCCATTCCCAGTTCATGTATTAGA
TCATGACCTCAAATCGTGACTTGGTGAGTTCCACGCGTGCCTTTCTTTGTTATTGTTATTATCTCATCGCGGTTT
CCTCTATAAAGGTGGTCAGCGGTAAGAAATTAGTTCATTGGCGAGATAAGTCTACATAAACGACTTTAGCCCCGA
CTGGGAGTGGTAAAACCGTCTTGTTTGAATTGGCTATAGTCGCGTTGCTTAGCCAAGCCGATCCGACTCGTTCCA
AAGCTGTTTATATGGCACCTACCAAGGTGGGTGATTTATTTTGCTCTACAACCTCTGTATTCACCTGCTGTATAG
GCATTGTGTTCCGAAAGATTTCGCGATTGGTCAGGGAAATTTAATCCGCTGGGGATTGAAGGTGAATGGCATACT
CTGAGGGATTTAAATCATCTGACGTTCTGTAGTTTGTGAGCTTACAGGGGATACGGTGCAATTTGGTCGAAGTGC
TTGGGGTGATGCGAAAAAAAGCTGCATAATGTGTATACTTTCATTCCTCATACAGGTCAGACCTCTGACAAGGTT
GTTCAGCATCACAACGGTTCTCTTCCTCCCAAGCTATTTTATGTCTCCGCTCACTCTACTACATATTGAAGGCTG
AAAAATGGGATAGTTTGACTCGCACCTGGTGGGTCCCGTTCTTTGCCGGAAATACAAGTATTGACTTGAATAAAA
GGCGAGATCACGAAAGTATTTTGTCACAGATTAAATTATTTCTCGTTGATGAAGTAAGTCGTCCGGTATCTGCTT
GGTACAATCTCAACGGTTCCTTCTATAGGTTCATGTATTGAATGAAACCAGGGGAAGTACACTCGAAGTGGTAAT
ATCCCGCATGAAAACCAGGAACGAGTGTATCAGATTCCTTTTGGTTTCCGCGACGGTTCCCAATATCCGTGATAT
TGCCGATTGGATGGATAATAGTCGAGAATCCAATACGTGTGAGGTTCTTGAGGTTCGAAGACATCTCTCTTCTTC
GTGATCTGTCACTCATGGATTCGTAGTTCGGGGAAGAATACCGACCATGTAGATTGACACGTTTTGTTATTGGCG
TTCCACGATCGAACAAGCAAAATGAGTTTCAATATGCGGCGACGCTGAACAACCAATTATTCCCAGTCCTTCAAC
AGTATTCAGTCATGAAACCAATATTAATATTCTGCTCAACGCGTAAAGGCACGTAACAGGTATTTATAGTTGGCT
TTGCTAAACCACTTCACGAATTGCTTCAGGAACCCTGACGTCGGCCGGGACGCTCTTGAAGTCTTACGAGGAGGC
CGCAAAACAGAAACAAAGACTGCCCTGGGTTACATCCCCTCAGTCAGTGTGCATATTTTTCCGTTCCCCGATAAC
TTTAGAAACCGTGTCGCCAGGTTGGATGCTCGTTTTCACGACAAGCGTCTCCAAGGTTTTGAAATCCTTCTCATG
TGTATAAACCGTCGTTAATCGTACTTCAGAACTCGCTACATATGGCATTGGGGTCCACCATGCTGGCCTGGGGCT
AGAGGATCGTAGATCAGTCGAGGAACTGTTCCTAGGGGGTACTATTCGTGTTCTTGTCGCTACCTCCGTGAGTTA
CTATCAATTTCCACAAATTTAACTCAAAGCTCTTCCTAGACTTTATCAGTCGGCGTCAACCTTCGTAAGTCATTC
AATCAAATATCCGGATAAATTGCGCTGACTCGCTTTTAGCCGCTCATACAGTGATTATACAAGGAGTCAAGCTCT
TTCAGAACAACACACACGTGGAGTATAGTGACCTGGATATTATGCAAATGATTGGCCGCGCGGTCTCAATCTTTA
TTTTCTGCCAATGTGTTTAGATTTTCTGACGCTTTAACAGGGTCGTCCCCAGTTCGGTACAGCAGTGCTATTGCT
AGTGATCTATTGAAAAACTCACTCGGGGGTTTAGACAAAGATGGTATCGCAATAATCATGTGCGAGCCACAACTC
GTCAGCAAATATCAGGCGCTTACACAAGGTAAAACGGTGTTGGAGAGCTCATTGCATCATAATATGCTCGAACAT
CTGAATTCCGAGATTGCATTGGGAACGATTACAAACCTCCAGTCGGCGAAAAGCTGGTTGCACAATTCGTTTTTA
TACCAACGGCTGCGGAAAAATCCTAGTCACTATGCATTGCATCAGGATACAAGCAAGAATTGGCATGAAAGACTA
GAAGACATTGTGCTCCAGAATGTTGGCCGGCTAGAAGCCACTCAATTGGTATGTAGGACCGAAGATGATCAGATA
CAACCTACAGATTATGGAGACATCATGTCAAAGGTTGTATCCAGCCCGTCTCCCGAATTCCATGTGTTTACTTTG
CCATGTTCTTAGTTTTATGTCCGCCAAATGACGGTCAGGGGGCATCATGCTTGTGGGACAAAAAAACACTCACTT
GACCCCTTCAAGATGGCAAATATCCTGAACTTCCCGGATAAGTCCGCAGAAAAGCCCACGCTACGCGAGATAGTA
TGTGTTCGCAGAATGCTTAATATCTAGGGATATTTATTCAAGAACAATAGCTAGAAACAATAGCAGCCGCTGAAG
AGTAGGCACATTCTTGACTTTACTCGCTAAAGGCTCAATTCCAGGTCCTTTAGATTCTCGAGTTTGAGGATGAGG
GCTTCTGAAAAGCTTGTAAGATTTCACCGGGGTCTGAATAGATTCAGTATACTAAGTGTTTCGCAGGTATATAAT
GAATTACGCACCCATAACGACATTCGGTACGCTATAAAGAAAGTGGAAAAGACATCTGATAAGGTATTTCTCCTT
ATCCAGGTTGGTATTATGAAATTCTATACATACAAAGTATTGACTCTTCCCCAGGCTATTCTCGGAAATATCCCT
TTGAACACACCTGAAATGAGACGAGGGGATACACAGCCACAAGCGGACGCTTTATTTATCTTTAAACATGCGGTG
CGACTGGCAAAAGGTTCGGGGCAGCTCGGAGCTCTTCATAGCCTGACGTGGTATTTAGTAATCGTGGAAGTTGCA
ATTGTCAAGCAGCTCGGAACGCAGCTCCTGAACGGTCTCGAGGCGTAGGTTCTTCCTTTTTGCCATTGTCATCTA
GGATCATGAAAGCAATTTCAGTCTGCGGTGTCTAAATGCCAAAGCTTGGGAGGATAGAGCGACCGTCTTGAGGCA
AATCGACCAAATTGGGGAAAAATCGTGAGCATTTTCAATCATTTGAACCATCAAAGTATTCAAACTCGTACAGAT
TGAAAGTGAGCTACTAGACTGAAAAATTGATTGAAAATTCAACCATGTATCAGGTACTTGCTGAGCATGGAATCA
CAACATTGGATCTTCTTCGTCAACAGCCTCCGGCACGCATCGAAATCGTGAGTTCTTGGCTCGCTTAGTCTTCTT
TTGACTCATTCAATCCACGTTCAGCTGCTTAATCGAAAAAGTCCTTTTGGCCATGTAGTTCTAGACTCGCTCGCG
GAGCTCCCAAAATACCGAATAAAAGTATCCCAAACATCAGTTATGACCGACAATGGAAAAAATCCCGTGCGTATC
AAATTCTCGATCGAATGCGAACTTGTTAGCTCGGCGTCCGCGAAAGTTAAGAAGTTTCGATATCACGATGTCACG
GCGATTTTGAGCTTGACATCGGACTACGATTTGATCGACTTTCGGAGGATATCGTGAGCAGTGACTGTGCTATCG
TCTCACTTATGAATCCTGACGAAGACATAGCACCAAGGCACTCAGAGAAAGGAAATCCTTCGATGTTGTTGCTGA
ACTTGTCAAACCCAGCCAGACAATTATCGTGATGATTGCATCGGTATTAATTTACCCTCGCGAAGAAATCAAATG
AATACATCTGCAATAGGAATCCTTCGCAGGCACGCTGGTGAGGTCCGTGGTGAGACCAGATGTGCCAGTTTCAGA
ATTCCCGACGCCCGACACCCGCCCTCTCTCAACACTGGTATGTTGTCCAGTCATGTACAAGCCTTACAGTTTTTG
TGAACCCATTATGACAGGCACTCGACTTGAAGGAGTTCGAGAACGATCCTAACTTCTGGAACATGAAATTTGATG
AAGCGGATGGATCGGATACAGCGGATACCCGCAACTCCGCAAGCCGTATGTCTTAACTCTTGGTATCATAGGACC
TTAACCGTTAGATACAGATGCACAGAGAATATCAAGAGTGGAGAAAAGTCGAACCAAAAAGATCAACCGCCAAAA
TTGCGGGATGATAATGACAGGTAAGTGAAGGGCTTCATATGAGTACGATGATGCTTCTAGCCGAATTAGATGCAA
GCACACTTGCACGGACAAATTGAAATGTTTGCATTTATGGTGACTTGAAGGCCAATTACTCTCCCCCTCGAACCT
TAATGACAACTCATTCGTAATAGCTGTAAAAAGGTAAAACAATATCCTGAGCGGAAAAAGGGGAAGAACAATCCC
TCGGATGCGAAAGGGAGAAAAGAACTTAGGGACCGTCAATCGATCGGAGACGCGACTCACAATGGTCGTAGCCAT
GTTCACGAACGCCAGATCAGAGACTTGGAAAGGATTCATGAAAAATCCGACGTTCAAAATAGCCTCAAGATGAAG
AAAGAACATCGATTAAAACTGGACACCACAAGTTCTGAAAGTCGGAAAAGGAAGATCAAGCCGTCGTTCGACATA
CACTTTACGGAGGTGGAAGCCCAATCTAACGCCAACAAAGTCATAGAAACAACGCTCGATAATGACGAACTTCCA
AGCATTGAACAATTACTTAGCGGCGAACTCACTTCTGGTATAGGGACTGAAGTTCAAGGTTTACTACAGCGTGAC
AATCTCACGCCTCACAAGCGTCCACGCTTGAGCCTTGCAACGCAGGCGATTGGCACAAGAGACAACACAGGCGAA
CGGTTCTCCCAGATGCCATTGGACACACTGAATGAAGTCGGCAATCATTATGCAGAAGTAGCGAAACCTGTTCCA
GAAAAAGATGAATTTGACGAATTGGAGGAATGGCTTGCAAGTGGACGTGTTGAGATTGTTTAG

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