CDS

Accession Number TCMCG012C32638
gbkey CDS
Protein Id XP_004514619.1
Location complement(join(219207..219365,219621..219740,220021..220158,220734..220807,220893..220932,226683..226805,226918..227010,227092..227169,234138..234289,234370..234439,235544..235711,235830..235934,236042..236114,236207..236322,236520..236594,244966..245208,245321..245455,246208..246264,246351..246461,246535..246592,246685..246740,246834..246989,249862..249927,250159..250241,251043..251139,251274..251384,252075..252207,252596..252657,252733..252786,252881..253087,254092..254271))
Gene LOC101502632
GeneID 101502632
Organism Cicer arietinum

Protein

Length 1130aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA190909
db_source XM_004514562.3
Definition DNA replication ATP-dependent helicase/nuclease DNA2 [Cicer arietinum]

EGGNOG-MAPPER Annotation

COG_category L
Description DNA replication ATP-dependent helicase nuclease
KEGG_TC -
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko03032        [VIEW IN KEGG]
KEGG_ko ko:K10742        [VIEW IN KEGG]
EC 3.6.4.12        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko03030        [VIEW IN KEGG]
map03030        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGAGAGATTTTGCAATTCGGCTTGGAATTTTTTATTTCCTATTTCATTCTCGGTTTCTTTATGAATCACTACTCCTTCTCCCGCCATGGATGAAAAACAAAAAACATCAAGTTTGTCTAATTCACAATCTACGAAAAAAGGGCGGCGAACAGCTGATTGGAGGGCGGTGGCGTGATATGGCATTGCTTGAACTTTTAGATCAAGTTGAAGATGCAATCGGTGTTGATAGTGATACAATATGTGATAAAGCCACTCATTCCTTTAAATCACAAGTTGGAATCGCTAACGATCTCCCTGTCAGAGTCAACCATACAGTTGAAAGGACTAAATCACATATACCTAAAGACATTGGTGTTTTCTCCAATTATAATTATTTGGTTTTGGAGGTATCTGAAAAATTGCAACCTGCTGATTCTTCTGCTGCTAAATGCCCGTACAAGGTGCTTCGTTTACTAAATGAACAAACTGGAGAAGAGCGAGCTGTAAACTTGTGGGATGAATGGTCTTACAGTGTAATTTCACCTGGAGATACTGTGAACGTAATTGGTCAATTTGATGAAGGGGGAAATTGTGATATTGATCATGATAATAATTTTTTGATTGTACACCCAGATATTCTTGTGTCTGGAACACGGGTTGCTGGCAGTTTTAGTTGCCCAAGGAGAGCTGTCTTAGATGAGAGGCTAAAATCCAATGAGTACTCAATTGCAGCTTTATGTGGAACCTTGCTTCACCAAATTTTTCAGGCTGGGCTTACAAGTAACAATCCCACAATAAACTTCTTGGAATGTTACACAGAAGTAGTTTTGCAGAAAAATATTGAAAGTTTATTTGCATGTGGAGTAAATGAAAAGGATGTTCACAAAACCTTGATTGATGGTATCCCTAAAATATACAATTGGATCATGCTGTTCAGAAATATGGAGGAAAGAGAAGACCCTAATGTTGACTTTGGATGTGTTAATGGAATGAAGAAAGTTGGCATATCTGAGGTAATAGATATTGAAGAAATGGCATGGGCACCAAAATATGGTTTGAAAGGGATTGTTGATGCTTCGGTTAGAGTGATGGTCCAATCAAGAAAAGATAAACCAGAGGAAAAGATCATGCCAGTAGAGTTCAAAACGGGAAAATCAACTAATAGCCAGTCATCAGTAGAACATAACGCCCAAGTCATTTTGTACACTCTCCTGATGTCTGAAAGGTACCAGAAGACCATTGATTCTGGCCTTCTATATTATCTCCAAACAGATCATACACAGGGCATTATGGTTCAAAGATCTGACTTAGTTGGGTTAATAATACGGCGTAATGAGCTAGCAAGTGATATTTTGAAGGCATTACTCTTGCAACAACTTCCACCAGTGTTACAGAGTCCTAGCATGTGCAGAGGTTGTCGCCATCTTAATGTCTGTAGCATTTTTCATAAGGCACATAGTGGAGGAGTAGAGAGCAAAGGATTGGGAGATGTTTTTGATTCCCATACTAGTCACTTGACATCATCTCATTCTAAGTTCCTCTGCCATTGGGATCATTTGATTGATTTAGAAGCTAAAGGGATTGAGTATTTGAAGAAAGAGGTGTGGCGATCATATAATTTGAGGACTCGAAACGCTGGTGGTCTTTCTTCTATTGTTATTGATGCTTCACAAGGAATACCTTATTCGAAATCTCACGAAGATAATCGTTTCGTTTATCGTTTTGTTCCACAAGATAGTTCTTGCCCCGCTATAATTTCTGATGGCGATCCTTCTAGTGCTTCTTTGAAAACTGATTTAGATCTCACACTGAGAAGTGGCGACCACGTGATATTGAGTAATGAATCAAGTCATCAAACTATTGCAAGAGGGGTGATTTCAGATATTAGCCAGAATCATATATCTGTTTCCTTTTCCAAGCTCTTAAGAATTCCTGGGATGTCTTCCACGGCACATGATCTCCTTCAGCAGGTTTGGAGAATCGACAAGGATGAAGCTGTGACTTCGTTTGCAATTATGAGGTTTAATCTAGTACAACTTTTTCTACAAAATGATCAAAGTGCTCATCTCCGGAGAATGATTGTAGACCTTGAGGCTCCTAGATTTGACAGTGGTTCTATAGTTAGCCAGGATCCAGCAATATCATACGTTTGGTCTGAGAAGAGTTTGAATGATGATCAACGTAGAGCAATTCTCAAGATACTCACGGCAAAAGATTATGCGCTTATATTAGGGATGCCAGGAACGGGGAAGACATCCACGATGGTCCATGCTGTGAAAGCCTTGTTGATTAGAGGCACATCCATTTTGCTTACAGCCTATACGAATTCTGCAGTTGATAATTTACTAATCAAATTAAAAGCACAGGGAATTGATTTTGTACGTGTTGGAAGACATGAAGCAGTGAATGAAGAGGTCAGAGGGCACTGCCTATCAGAAACAAACGTACAGAGTGTTGAAGATATCAAAATAAGGTTAGAACAAGCCAAAGTTGTTGCAGTTACTTGTTTGGGCATTTCTAGTCCCTTGCTTGCCAACAAGAGATTTGATGTATGCATTATGGATGAAGCCGGGCAGACAACTCTGCCGGTGTCTTTGGGCCCTCTAAGATTTGCTTCAACGTTTGTTCTTGTTGGGGATCATTATCAACTGCCACCACTTGTCCAAAGCACAGAGGCCCGAGAGAATGGCATGGGGATGAGTTTGTTTTGTAGGCTTTCAGAAGCTCATCCACAGGCAATTTCAGCTTTGCAGAGTCAGGGTATTATGGAGTTGTCAAATGCCTTGATATATGGTGACAGATTGAGGTGTGGTTCAATTGAGATAGCTAATGCCAAACTTGAGTTTTCTGGTTTAAACTGCTGTTTTCCTTGGCTAGAAGATGTTTTGAATCCTGGAAGGCCAGTGATATTTATTGATACTGATATGTTGCCTGCCTTAGAGGAAAGAGATCAGAAAATTGTAAATAACCCTATTGAAGCTCACATAATAGCTGAGGTTGCAAAGGAATTGGTAAAAAATGGAATTGGAGGAGAGCACATTGGCATTATTACTCCATATAATTCACAGGCAAACCTCATCCGGAGTGCTGTTTGCATAACATCCTTGGAAATACATACCATTGACAAATACCAGGGTAGAGATAAGGACTGTATATTAGTATCTTTTGTACGGTCATGTGAGAATCCAACAAGCTGTGTGGCTTCTCTACTTGGTGACTGGCACAGAATAAATGTGGCTCTTACTCGTGCTAAGAGAAAGTTGATCATGGTGGGATCTCGTAAAACTTTGTTGAAGGTTCCACTACTTAAGCTTCTCATTAAGAAAGTTGAGGAGCAATCTGGAATTTTAAGTGTGTCTAAGAAGGATATCTATCAAAAAGGGGAGCTCATTCGATGTTCCCAAATGAGATGA
Protein:  
MRDFAIRLGIFYFLFHSRFLYESLLLLPPWMKNKKHQVCLIHNLRKKGGEQLIGGRWRDMALLELLDQVEDAIGVDSDTICDKATHSFKSQVGIANDLPVRVNHTVERTKSHIPKDIGVFSNYNYLVLEVSEKLQPADSSAAKCPYKVLRLLNEQTGEERAVNLWDEWSYSVISPGDTVNVIGQFDEGGNCDIDHDNNFLIVHPDILVSGTRVAGSFSCPRRAVLDERLKSNEYSIAALCGTLLHQIFQAGLTSNNPTINFLECYTEVVLQKNIESLFACGVNEKDVHKTLIDGIPKIYNWIMLFRNMEEREDPNVDFGCVNGMKKVGISEVIDIEEMAWAPKYGLKGIVDASVRVMVQSRKDKPEEKIMPVEFKTGKSTNSQSSVEHNAQVILYTLLMSERYQKTIDSGLLYYLQTDHTQGIMVQRSDLVGLIIRRNELASDILKALLLQQLPPVLQSPSMCRGCRHLNVCSIFHKAHSGGVESKGLGDVFDSHTSHLTSSHSKFLCHWDHLIDLEAKGIEYLKKEVWRSYNLRTRNAGGLSSIVIDASQGIPYSKSHEDNRFVYRFVPQDSSCPAIISDGDPSSASLKTDLDLTLRSGDHVILSNESSHQTIARGVISDISQNHISVSFSKLLRIPGMSSTAHDLLQQVWRIDKDEAVTSFAIMRFNLVQLFLQNDQSAHLRRMIVDLEAPRFDSGSIVSQDPAISYVWSEKSLNDDQRRAILKILTAKDYALILGMPGTGKTSTMVHAVKALLIRGTSILLTAYTNSAVDNLLIKLKAQGIDFVRVGRHEAVNEEVRGHCLSETNVQSVEDIKIRLEQAKVVAVTCLGISSPLLANKRFDVCIMDEAGQTTLPVSLGPLRFASTFVLVGDHYQLPPLVQSTEARENGMGMSLFCRLSEAHPQAISALQSQGIMELSNALIYGDRLRCGSIEIANAKLEFSGLNCCFPWLEDVLNPGRPVIFIDTDMLPALEERDQKIVNNPIEAHIIAEVAKELVKNGIGGEHIGIITPYNSQANLIRSAVCITSLEIHTIDKYQGRDKDCILVSFVRSCENPTSCVASLLGDWHRINVALTRAKRKLIMVGSRKTLLKVPLLKLLIKKVEEQSGILSVSKKDIYQKGELIRCSQMR