CDS

Accession Number TCMCG042C08546
gbkey CDS
Protein Id XP_016440682.1
Location join(18188..18739,19680..19847,19931..20164,20248..20310,20447..20809,20891..20944,21035..21096,21833..21965,22111..22221,22347..22443,22626..22708,23744..23809,24771..24926,25051..25106,25233..25290,25410..25520,26021..26077,27112..27246,27328..27582,28357..28431,29331..29452,29540..29612,29711..29815,30026..30238)
Gene LOC107766417
GeneID 107766417
Organism Nicotiana tabacum

Protein

Length 1133aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA319578
db_source XM_016585196.1
Definition PREDICTED: DNA replication ATP-dependent helicase/nuclease DNA2-like isoform X1 [Nicotiana tabacum]

EGGNOG-MAPPER Annotation

COG_category L
Description DNA replication ATP-dependent helicase nuclease dna2-like
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:  
ATGGCTCCAAAGAAAAGAACAAGTTCAGGATCAGTGAAGAAATCAAGCAATCAAAACCAGAACCTTCAGCATCAGCAGCAATCTCAGCCTTCCAAATTCGGGATCCAGCATTTCTTTGAACGCCACACCCAAAATGTCCTCTCTCAGAAATCCAAACCCCTCCTCGTTCCCCACAACTCCAATTCCAACTCATTTCAAAACCCTAAAGAAAATTCCAGTGTATCAGTACCAGAAACTTCTACAAATAATGGATTGAATTCGAAGAAGTGTGACAAGGATAATGCGGTGTCTCGAGATAAAGACCGTAGAAATGTGAATAAATCGGATCATATTGATGTAACGGAGAGATTTAAGGATAAGGGAGTTGGGGATGGTAAAACTAAGGGAAAAAGAGTGACTTCGAAAAAGAATGAATTGGGTGGTCCGTCTCAGAGTACACCTACGGAGAATGTGGTAACTGCAGGTTCAGTGGAGGATAAAAATCAAGCAGAAACAACGCCTGAGTTTTGCAAGTCAGTGTCTGTGAAGCGCTTCAAGTTTTCTCCAGGAATGCTGATCAAGCAAAGCCAGGATGATGGAGGTGATGAAGTAACATGGAGAATATCTCCAGTGAATGAACGACTTCATGCCGTGTCCAAACAGTTACCAGAGATGGTAAAGGTGTTGGCGGATTCATCACGCTTCAACTCCTTAAGTATTCAAGAATGTTCGCTGAAAAAGACGTCTCCTGGGACAGAAAGAAAGTTTGAGAAGCGGCTTTGTTCACCTCCACTGAAGGCGCTTGATAAATCATTAGTAAGCTCAAATAGGGCTAGCTTGAGAAACAGAAACAACGATCATGTAATGGATCTGTGGGAAACCAATGGAAACTTTAACTGCCAGAGCAAAACTGAAGTAACTAACAGTCAGAGTCCTTTTCAAACTCCACCATCTTTGACATACGGCAGTGATAAGCCTGCCAATGCGGTCAATAATAATGAAGTTACTGATCAGCTTGGTTCAAGGCAACACAAAAAGGCATTGATTGAGCTTTTAGACCAAGTAGAAGATGTTATCTCGGTTGAACCAAAATCTAAGGAGAAAGTTGCCCATAGTCATGATGAACCAGCTAAGCCAGCTTCCATTGTGCTAGAAGATGTAATTTCTGTTATACCAAAATATGAGGAGAAAGTTGCATCCCATAGTCATGAAGAGCCAGCTAGGCCAGCTGCCATTGTGCTAGAAGATGTCATTAATGTTGAACCAAAATGTGAGGAGAAAGTTACATCCCATAGTCATGATGAACCAGCTAATCCAGCTGCCATTTTGCAGAAATCGGCAGAAATATTTTGTGCACGTGACCAAAGGAAAGAGTCAACTATCTATTTTCTTGTATTGGAGGTTTCTGAGAAGCATGGACAAGTTGAAACATCTGGACAGCAGTACTCCTTCAAGGTTTTGCGCATACTGAATGAACAAAGTGGAGAAGAGCGGGTTTTGCAATTGAGAGATGAGTGGTGCTATAGTGTTGTTGCACCAGGAGATACTATTCATGTCATTGGTGAGTTTGACAGCGAAGGAAAATGTGAAATAGACCGTGAGAAGAATTTTCTCATTGTTCATCCAGATATTTTAGTCTCTGGAACAAGGGTTGCTTCCAGTTTCAGTTGCTCAAGGCGAGCTGTGCTGGATGAGAGGTTAAAATCTGGCGAGTATTCAGCTGCAGCATTGATTGGCACATTATTGCATCAGATGTTTCAGGCTGGGCTGATCAGAGAGTCTCCTACACAAGAATTCTTGGAGGATTATGCAAGGATAGTGCTCCAGAAAAGTCTTGAGAGCCTATATGCATGTGGAGTTGATGAAAATGATACTCACAAGACATTGATCGAGGCAATTCCAAAATTGCTGAATTGGATACGTTCCTTCCAATATTCGGAGGTTTCAGAAGGCCCAAGTATTGATTTTGGAAGTGAAGATGGAGTTAAGAAGATTAAAGTATCTGAAGTACTTGATATTGAAGAAATGGCATGGGCCCCAAAATATGGGTTGAAAGGTATGATTGATGCATCCTTGCGAGTAAATGTAAAATTCAACACCAGTAAACATAATGAGATGATTATGCCTCTCGAATTTAAAACTGGGAAGGCAACAAATGGACAGACAGCTATGGAACATAATGCTCAAGTGATGCTGTATACCCTTCTTATGTCAGAAAGATACTCGCAGCATATTGGACATGGTCTCCTGTATTATCTGCATACAGATCAGACGCAGGGAATAACTGTTCGAAGATCTGACTTGGTTGGCCTAATAATGCGCCGTAATGAACTTGCAAATGATCTTCTCAAAACCACTATAACTCAACAACTGCCACCAATGTTACAGAGTCCAAATATGTGCAGAGCCTGTCGACACCTCAATGTCTGTACCATTTATCATAAGGCATACGGTGGCAACACAGAAGGTAGCGGTTTGGGTGGTGTTTTTGATTCACTTGTTAGCCATCTAACAAATGCACATACTAATTTTCTTCAAAAATGGGATCAGTTGATTGACTTGGAGGCTAAAGAAGTTGAGGTTGTAAAGAAAGAAATTTGGAGTTCACAAAGTCCAAAGAATGACCTTTACGCTCCTTACTTATCTTCTCTTGTCCTTGATACATCAGAACGAACCACACCAACAAAGTTTTGCAAAGGAAATCAATTTACTTATCACTTTGTACATCGAGATTGGACTTCCTTGGGCACTCACCAACAGGATGGAGATGCTCTTAATAGTTATAATTTTCCTATGAAAAAGTTTGAATCCTCACTTAGGAATGGGGATTATGTGATATTGAGCACTGAACCTGGTGGTATACTAATAGCTACTGGAGTTGTTGTAGATATGAGTTGCTCTCGCATCTCGGTATCTCTTTCCAAACGCTTAAGGCTTCCAGGTAGCAGCCGGACTTCACAGGCACAAGATCTTCATCAGCAGTTGTGGCGAATCCATAAAGATGAGTTTATGGGTTCATTTGCAATTATGAGATTCAACCTCATACAACTATTTCTGCAAAATGAGCAGAGTTCTCATCTGAGGAAGATGATAGTTGATTTGGAGGTGCCTAGGTTTGATAGTGGATGTCAATTTAGTCAAGACCCCGCCATCTCATACATTTGGTCGGAGAAAAACTTGAATGACGATCAGCGCCGAGCCATACTTAAGATACTTACGGCAAAGGATTATGCGCTGATACTAGGAATGCCAGGGACAGGCAAAACATCCGCTATGGTCTATGCTGTGAAGGCGCTGTTGATGAGAGGTTCATCCATTTTGCTTACCTCCTATACAAACTCAGCTGTTGATAATCTGCTTCTCAAACTGAAGGCTCAGGTCATCTCCATCCTTGATGCTTCTATTAGAAACTTATTGTTTTGA
Protein:  
MAPKKRTSSGSVKKSSNQNQNLQHQQQSQPSKFGIQHFFERHTQNVLSQKSKPLLVPHNSNSNSFQNPKENSSVSVPETSTNNGLNSKKCDKDNAVSRDKDRRNVNKSDHIDVTERFKDKGVGDGKTKGKRVTSKKNELGGPSQSTPTENVVTAGSVEDKNQAETTPEFCKSVSVKRFKFSPGMLIKQSQDDGGDEVTWRISPVNERLHAVSKQLPEMVKVLADSSRFNSLSIQECSLKKTSPGTERKFEKRLCSPPLKALDKSLVSSNRASLRNRNNDHVMDLWETNGNFNCQSKTEVTNSQSPFQTPPSLTYGSDKPANAVNNNEVTDQLGSRQHKKALIELLDQVEDVISVEPKSKEKVAHSHDEPAKPASIVLEDVISVIPKYEEKVASHSHEEPARPAAIVLEDVINVEPKCEEKVTSHSHDEPANPAAILQKSAEIFCARDQRKESTIYFLVLEVSEKHGQVETSGQQYSFKVLRILNEQSGEERVLQLRDEWCYSVVAPGDTIHVIGEFDSEGKCEIDREKNFLIVHPDILVSGTRVASSFSCSRRAVLDERLKSGEYSAAALIGTLLHQMFQAGLIRESPTQEFLEDYARIVLQKSLESLYACGVDENDTHKTLIEAIPKLLNWIRSFQYSEVSEGPSIDFGSEDGVKKIKVSEVLDIEEMAWAPKYGLKGMIDASLRVNVKFNTSKHNEMIMPLEFKTGKATNGQTAMEHNAQVMLYTLLMSERYSQHIGHGLLYYLHTDQTQGITVRRSDLVGLIMRRNELANDLLKTTITQQLPPMLQSPNMCRACRHLNVCTIYHKAYGGNTEGSGLGGVFDSLVSHLTNAHTNFLQKWDQLIDLEAKEVEVVKKEIWSSQSPKNDLYAPYLSSLVLDTSERTTPTKFCKGNQFTYHFVHRDWTSLGTHQQDGDALNSYNFPMKKFESSLRNGDYVILSTEPGGILIATGVVVDMSCSRISVSLSKRLRLPGSSRTSQAQDLHQQLWRIHKDEFMGSFAIMRFNLIQLFLQNEQSSHLRKMIVDLEVPRFDSGCQFSQDPAISYIWSEKNLNDDQRRAILKILTAKDYALILGMPGTGKTSAMVYAVKALLMRGSSILLTSYTNSAVDNLLLKLKAQVISILDASIRNLLF