CDS

Accession Number TCMCG051C40684
gbkey CDS
Protein Id XP_024440028.1
Location complement(join(14955375..14955443,14955613..14955674,14955788..14955827,14956277..14956414,14956497..14956589,14956675..14956752,14957059..14957210,14957289..14957358,14958024..14958191,14958356..14958460,14958597..14958669,14958789..14958910,14959110..14959184,14960490..14960744,14960837..14960971,14961062..14961118,14961196..14961306,14961433..14961490,14961612..14961667,14961786..14961941,14962291..14962356,14962983..14963065,14963278..14963374,14963499..14963609,14963779..14963911,14964657..14964718,14964802..14964855,14964959..14965162,14965296..14965358,14965542..14965751,14965842..14966015,14966104..14966169))
Gene LOC7463392
GeneID 7463392
Organism Populus trichocarpa

Protein

Length 1131aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA17973
db_source XM_024584260.1
Definition DNA replication ATP-dependent helicase/nuclease DNA2 isoform X4 [Populus trichocarpa]

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:  
ATGGATGTCTCACCTGAAATCACCAAGTCGGTGTCTCTCCAACGCTTCAAGTTCTCTCCTGGAATGTTGATAAAGCAGAGCCAGGATGATGGTGGCGATGAGGTCACATGGAAGATATCTCCGGTTAGTGAAAGACTCCAAGCTGTCTCCAAGCAAATGCCCCAACTCATTCAACTCTTAGCTGAAACTTCAAAGCTTAATTCTTTCAGCATTCGTCCTTGTTCCTCTTTAAATGACGAGATTTCATCTGGTACTGCTGGCAAGGTTGATAAGCAGGTTCCTTCACCTCCATGGAAGGGTGCTGACAGATCTTTGGTGCCTGCTAGTAGAGTTGGATTGAAAAGAATAAACCCACGTCAGGATGTAAATTTGACTGATGTTAATTGCTCGCTTGCTGGTCGACAAAGTCCTTTCAGAACTCCGCCGTCCCTTTCGTATTGTCACGAAAAGCTTTCTAATGTTGCTGAATGCAATGGAGCATCAGATCAACTGGATCAAAGGCAACACAAAAAGGCATTGCTTGAGCTTTTGGATCAAGTAGAAGATGCAATTTCTGTTGAAGATTCAGAACCTAGTACTGTCAATTCATCTAAAACTCAAGATGGAAATGGTTATGACATGCCCTGCAATGCTGGATCTCTAGTAAAAGAAGCAGCAATAGATCCACCAGAAAGTGTTGCTGTGCCATTGTCAAATTATAATTTTCTTGTATTGGAGGTATCTGAGAAGCACAGGCCCGCGGATTTATCTGGTGCTCAATGCCCTTATAAGGTTCTTCGATTGTTGAATGAGCAAAGTGGAGAAGAGCGAACTGTCTATTTGTGGGAAGAGTGGTTCTATAGTGTCATTGCACCTGGAGATACTGTAAATGTGATAGGTGAATTTGATGACCAAGGAAAGTGTGACGTGGATCGTGACAATAATCTCTTAATTGTTCATCCTGACATTCTAGTCTCTGGAACTCGGGTTGCTGCTAGTTTCAGTTGTCCACGTCGAACTGTTTTAGATGAGAGACTAAAATGCAGTGAGCATTCAACTGCTGCATTAATTGGTACCTTGCTGCACCAAATTTTTCAGGCTGGACTCATGCAAGATAATCCTACCATAAACTTTTTGGAGGAATATGCTAGAATAGTACTCCAGAAAAATATTGAAAGCCTGCATGCATGTGGAGTAAATGAAAATGATATCTTCAATACTTTGGTTGAGGCAATTCCTAAACTAATAAATTGGATCAACCTGTTCAAAGATTCACAGGATTCAAAAGCCCCCATTATTGATTTTGGTCCTGACAATGGATTGAAAAAGCTAAGTATATCTGAGGTGATTGATATCGAGGAGATGGCATGGGCCCCAAAATATGGGTTGAAAGGAATGATTGATGCTTCTGTCCGCGTTAAAGTAGAGTCAGGCAGAAATAAAGCAGATGAGAAGATTGTGCCTCTAGAGTTTAAAACTGGGAAAGTTTCCAATGGGCAGTCATCCATGGAACATGTAGCCCAAGTGATTTTGTACACTCTTCTCATGTCTGAGAGGTATCTGAAACATATTGATTCTGGTCTTCTGTATTACCTCCAATCAGATCAGACACGGGGAATCACGGTTCAAAGGTCTGATGTGGTTGGGCTAATCATGCGTCGAAATGAGCTTGCAAATGACATCCTTAAGGCATCAAGAACTCAACAATTGCCTCCAATGCTACAGAGCCTAAATATGTGCAGAAGTTGCCGCCATCTTGATGTTTGTACAATCTATCATAAGGTGCATGGTGGAAGCAAAGAGAGTAGTGGACTAGGTGATCTGTTTGATTCACATGTTCATCATCTGACAACTGCTCATTATGTTTTTCTTCGACGCTGGGATCAGTTGATTGACTTAGAGGCTAAAGAGACACAGCTTGTAAAAAACAGAATATGGCGTCCACATAGTTTGAAGAGTGATCGTTCCACTAGTTGCCTTTCTTCTGTTGTTCTTGATACTTCAGATCGAGTTCCATATCAGAAATCTCTCAAAGACAACCGATTCATTTATCGTTTTGTCCATAAAAAAATGCCTCTTCATGACGTGCATGCTTCTGGTGGAGAATCTTTGAGTTTTCCTTCATCTTCGGCAGAAGATTTCGATTATACACTTAAAAGTGGAGACTATGTGATTATTAGTACCAAATTTGGCCATCAAACTGTAGCAAGTGGGTTCATAACAGATATCAGTCGGTCCCATGTTTCTGTTTCTTTTCCTAAGCACTTAAGACTCCCTGGCAGCAATTCTTCGTCAGAAGCACATAATCTCTTTAGGGAGGTCTGGCAGATTGACAAGGACGAGTTTATGACTTCATTTTCAGTTATGCGGTTCAACCTTGTACAACTGTTTCTCCAAAGTGAACAAAGTTCTCACCTTAGGAAGATGATTGTTGATCTTGAGGCTCCTCGATTTGACAGTGGATGTATATTTAGTCAAGATCCAGCCCTATCTTATATATGGTCAGTGAAGAATTTAAATGGAGATCAGCGTCGGGCAATTCTGAAGACTCTTACAGCTAAGGATTATGCTCTAATACTAGGGATGCCTGGAACTGGAAAGACATCGACCTTGGTACATGCTGTCAAGGCCATGTTGATGAGAGGTGCATCCATTTTGCTCACGTCCTACACAAACTCTGCAATTGATAATTTACTAATCAAATTAAAAGCTCAGGGTATTGATTTTCTACGAATTGGAAGACATGAAGTTGTCCATGAGGAAGTCCGTGCCAATTGCGTTTCTGCAATGGATGTACACAGTGTAGAAGACATTAAATTAAGATTAGAGCAAGTCAAGGTTGTTGCAGTAACTTGCTTGGGAATTTCTAGTCCCTTGCTTGCCAACAAGAAATTTGATGTATGCATCATGGATGAAGCTGGACAAATTACCCTCCCAATAGCTTTGGGACCCTTGATGTTTGCTTCAAAGTTTGTTCTTGTTGGTGATCACTATCAACTGCCTCCACTTGTCCAGAGTACAGAGGCTCGCGAGAATGGAATGGGGATAAGTTTGTTTTGTAGGCTTTCTGAGGCACATCCTCAAGCAATTTCAGCTTTGCAAAGCCAGTACCGCATGTGTCAAGATATTATGGAACTATCAAATGCCTTGATATATGGTGACAGACTGCGTTGTGGTTCTTCTGAAATAGCAAATGCCAGGCTTAAATTTTCAGGTTTACAGTCCTGTTCATCGTGGCTAAAGGAGGTATTAAATCCTGGCAGACCCGTCATATTTATTAACACAGCTTACGAGGCAAAGGACTCCAAAACTGTGAATAACCCAATAGAAGCTTACATAGTTGCAGAGGTGATGATATTGGCATTATTACCCCTTATAATTCCCAGGCAAATCTCATCCGAGCTTCTGTTAACGTAA
Protein:  
MDVSPEITKSVSLQRFKFSPGMLIKQSQDDGGDEVTWKISPVSERLQAVSKQMPQLIQLLAETSKLNSFSIRPCSSLNDEISSGTAGKVDKQVPSPPWKGADRSLVPASRVGLKRINPRQDVNLTDVNCSLAGRQSPFRTPPSLSYCHEKLSNVAECNGASDQLDQRQHKKALLELLDQVEDAISVEDSEPSTVNSSKTQDGNGYDMPCNAGSLVKEAAIDPPESVAVPLSNYNFLVLEVSEKHRPADLSGAQCPYKVLRLLNEQSGEERTVYLWEEWFYSVIAPGDTVNVIGEFDDQGKCDVDRDNNLLIVHPDILVSGTRVAASFSCPRRTVLDERLKCSEHSTAALIGTLLHQIFQAGLMQDNPTINFLEEYARIVLQKNIESLHACGVNENDIFNTLVEAIPKLINWINLFKDSQDSKAPIIDFGPDNGLKKLSISEVIDIEEMAWAPKYGLKGMIDASVRVKVESGRNKADEKIVPLEFKTGKVSNGQSSMEHVAQVILYTLLMSERYLKHIDSGLLYYLQSDQTRGITVQRSDVVGLIMRRNELANDILKASRTQQLPPMLQSLNMCRSCRHLDVCTIYHKVHGGSKESSGLGDLFDSHVHHLTTAHYVFLRRWDQLIDLEAKETQLVKNRIWRPHSLKSDRSTSCLSSVVLDTSDRVPYQKSLKDNRFIYRFVHKKMPLHDVHASGGESLSFPSSSAEDFDYTLKSGDYVIISTKFGHQTVASGFITDISRSHVSVSFPKHLRLPGSNSSSEAHNLFREVWQIDKDEFMTSFSVMRFNLVQLFLQSEQSSHLRKMIVDLEAPRFDSGCIFSQDPALSYIWSVKNLNGDQRRAILKTLTAKDYALILGMPGTGKTSTLVHAVKAMLMRGASILLTSYTNSAIDNLLIKLKAQGIDFLRIGRHEVVHEEVRANCVSAMDVHSVEDIKLRLEQVKVVAVTCLGISSPLLANKKFDVCIMDEAGQITLPIALGPLMFASKFVLVGDHYQLPPLVQSTEARENGMGISLFCRLSEAHPQAISALQSQYRMCQDIMELSNALIYGDRLRCGSSEIANARLKFSGLQSCSSWLKEVLNPGRPVIFINTAYEAKDSKTVNNPIEAYIVAEVMILALLPLIIPRQISSELLLT