CDS

Accession Number TCMCG063C35704
gbkey CDS
Protein Id KAF7836067.1
Location complement(join(23476534..23476587,23477234..23477802,23478025..23478186,23478292..23478460,23478553..23479002,23479088..23479137,23479232..23479418,23479553..23479901,23480002..23480135,23480236..23480577,23480682..23480846,23480958..23481068,23481168..23481281,23481433..23481642,23481728..23481927,23482016..23482286,23482375..23482441,23482525..23482817,23483023..23483097,23483186..23483746))
Organism Senna tora
locus_tag G2W53_010926

Protein

Length 1510aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA605066, BioSample:SAMN14013601
db_source JAAIUW010000004.1
Definition DNA topoisomerase 2 [Senna tora]
Locus_tag G2W53_010926

EGGNOG-MAPPER Annotation

COG_category B
Description Control of topological states of DNA by transient breakage and subsequent rejoining of DNA strands. Topoisomerase II makes double-strand breaks
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]
ko03036        [VIEW IN KEGG]
KEGG_ko ko:K03164        [VIEW IN KEGG]
EC 5.99.1.3        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko01524        [VIEW IN KEGG]
map01524        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGAAGGCCAAACGAAGCGCCCTCTGCAATCAAGCAACAATGCGAACATCGATCCTGTGGCAAAGGGGAAAACAATCGAGGAGATGTACCAGAAGAAGACCCAGCTTGAGCACATCCTGCTCCGACCCGACACCTACGTTGGATCCATCGAGAAGCACACACAAACCCTATGGGTCTACGAGAACGACGAGATGGTCAATCGCCCGGTGACCTACGTCCCGGGTCTGTACAAGATATTCGACGAGATCTTGGTCAATGCCGCCGACAACAAGCAGCGCGATCCGTCCATGGATTCCCTCAAAGTTTCGATCGATGTGGAGCAGAACTTGGTAAGCGTGTACAATAATGGAGATGGTGTTCCTGTGGAGATCCATCAGGAGGAGAAGGTGTATGTGCCTGAGTTGATATTTGGGCATTTGCTAACCAGTAGTAACTATGACGATAACGTGAAGAAGACCACCGGTGGGCGGAATGGGTACGGTGCGAAGCTTACCAATATATTTTCGACGGAGTTCGTGATCGAGACAGCTGATGGGAAGCGTCAGAGGAAGTATAAACAGAAATTCAAGAATTCTGTGGTTGAAATGCTATATATCCATGCAATTATATCTTCTATAGAATGGGACCTTCAGTTGGTATTTTGCAACAATATGGGGAAGAAATCTGATCCCGTTATAACGAAATGCAAAGTGGGTGAGAACTGGACCAAGGTTTCCTTTAAGCCTGACTTAGAAAAGTTTAAGATGAGCTATTTGGAAGAAGATGTTGTTGCTTTGATGAAGAAGCGGGTTGTGGACTTAGCTGGATGTCTTGGAAAGACAGTGAAGGTTGAACTCAATGGGCGCTTGATTCGACTAAAATCCTTCCGTGATTATGCTGATCTCTATTTGAAGTCTGCTGAGAAATCTAAACCAGTCCCACTTCCAAGGATTCATGCAAAAGTAGGTGATAGGTGGGAGATCTGTGTGAGTCTAAGTGATGGACAGTTTCAACAGGTCAGCTTTGTGAACTCCATTGCTACAATCAAGGGTGGAACACATGTTGATTATATTACCAATCAGATCACAGCTTATGTGATGAACAAAGTAAACAAGAAGAAAAAGGATGCCAATGTCAAAGCTCACAACGTGAAGAATCATTTGTGGGTTTTTGTCAATGCTCTGATTGACAACCCTGCTTTTGATTCTCAAACTAAAGAAACTCTTACCACTCGCCAAAACAGTTTTGGTTCCAAATGTGATGTTCCAGAATCAATGCTGAAGGAAGTTTCAAATTCTGGAATAGTGGACACTCTTCTATCATGGGCTGATTTTAAGCAAAGCAAAGATCTGAAGAAATCTGATGGAACTAAGACTCAGAGAGTTCGGGGGATTGTAAAACTAGAGGATGCCAATGATGCCGGAGGAAGGAATTCTGAAAAATGTACCTTGATATTGACAGAAGGAGATTCTGCTAAGGCTCTTGCAATGGCTGGGCTCTCTGTTGTGGGTCGTGACCACTATGGTGTATTTCCATTGAGGGGCAAATTGCTCAATGTACGGGAAGCTAGTAGTAAACAAATAGGTGAGAACGAAGAGATTCAAAATATCAAGAAGATTCTCGGACTCCAGCAGAACAAGGAGTATACAAGCGTCAAGTCTTTGAGATATGGTCATTTGATGATAATGGCTGATCAGGATCATGATGGTTCTCACATCAAAGGGCTCCTGATCAACTTCATTCATTCTTTCTGGCCCTCCTTGCTTAAAGTTCCATCTTTCATGGTTGAATTTACCACCCCAATTATAAAGGCATTTCACTCAAATGGGACAAAAATACCGTTTTACTCCATGCCAGAGTTCGAACGTTGGAAAGAAAGCTTGGGGAATAATGCAAATGGGTGGAAGATAAAGTACTATAAGGGGTTGGGAACAAGTTCTCCCCAGGAAGGAAGAGAGTACTTCAGAGATCTTGATAAGCACAGGAAAGACTTTGTCTGGGAAGATGACCACGACGGGAGTGCGATTGAAATGGCTTTCAGCAAGAAAAAAGCAGAAGATAGGAAGACCTGGATCCGTAACTTCGAGCCTGGCACTTGCCGTGATCATATGGCAAAATATATTAACTACAGAGACTTTGTGAATAAAGAGCTTATATTGTTCTCTAGGGCGGATCTTCAGAGGTCCATTCCTTCAATGGTTGATGGCCTGAAGCCTGGTCAGAGAAAGATCCTCTTTTGCTCATTCAAGAAAAAGCTGTTTAAAGAAATAAAAGTTGGACAGTTTATCGGTTATGTGTCTGAGCACTCAGCCTACCACCATGGTGAGCAGAGTCTTTCTAGTACTATTATTGGAATGGCACAGGACTTTGTTGGCAGTAACAACATCAACCTTCTTAAACCAAACGGTCAATTTGGTACTCGTAATTTGGGTGGAAAAGATCATGCAAGTGCCAGATACATATATACTGAACTAAGTCCTATAACTAGATGTCTCTTCTCTGAGGATGATGATAAGCTTCTTGATTATCTGAACGAAGATGGGAAGTCTATTGAACCAAATTGGTACATGCCAGTTATACCTATGGTTCTTGTCAATGGTAGTGAAGGAATTGGCACTGGGTGGAGTTCCTTCATTCCTAATTATAATCCAAGAGAAATTATTGCCAATGTTAGGCGCTTGTTAAATGGTGAGGAAATGGTGCCAATGGATCCATGGTACAAAGGATTTAAAGGAACCATCGAGAAAAGTGCCAAAGAAGGTGGGTATGTTGTCAATGGCTCGATAGAGGAAATAGATGAGCAATCTTTCAGGATTACCGAGCTTCCTATCCGTAGGTGGACCCAAGATTATAAGCAGTTCCTTGAATCTGTTACTGAAGGGTCACCTAATGCCAAGGATACTTTAATTGAGGATTTCAGGCAAAACGGTGATGATGCAACTGTAAATATAGAAATCAGGTTGAAGCAGGATAAGATAATTGCTATCATGCAAGAGGGTCTGCTAAAGAAGTTTAAACTGACTGGTACTATTAGCACGAGCAACATGCACCTCTTTGATGCGGAAGGAAAGATTAAGAAATATGACAATGCAGAACAAATCCTAGAGGAATTCTTTCCATTAAGGTTGGAGTATTACGAGAGGAGAAAGAAACATAAAATAGAAAATCTTGAACGACTTCTCTTGGTGTTGGACAATAAAGTCAGGTTTATATTAGGGGTTGTGAGTGGAGAGATTGTTGTTAGCAACAGGAAGAAAGCTGATTTGTTGATAGAGCTGAAGCAGAAAGGTTTCACTCCCATGCCAAGGAAAGGTAAATCAGCAGAACCACAAGTTGCAGGAGCAAATGATGAAAATTCAGAAGAGCAGGAAAATGACAATGGTAGAGATCAGGAAACTGAGTCTGTCAATGTTGATGGAGCAAGAAGTGGTGACTACGAATATCTGTTATCAATGTCCATTGGAACTTTGACCATTGAAAGTGTTCAGAAGCTACTAAATGAAAAGGATGAAAAGACTAGGGAGTATGAGATACTGAAATCAACACCTCCAACGTCAATGTGGATGACTGATCTGGATGAGCTTGAGAAGAAACTTGATGAACTAGATATCAAGGAGGCAGAAGAGATGCAAAAGAGATCAACTCAAGCAGCAAATAAAAGAACTAGTAGGGCTATACCCACAAAAGCACCTAAGAAACAACCGAGAAAGAACACTAAGGTTGTTGAGCCAGAGACAGAAAACACATCTAATTCTTCAATGGAAGTTGAGAAACCTGCTGAGATTGCTAAACCAAAAGGCAGAGGTGGTCCCAGGAAAGGTGCTGCTACAAAGACCAAGAAGAAGGATGAAGAAGAAGAAGAAGAAATGCTATCCCTTCAAGAACGACTTGCAGCATATAACCTTGGACCATCCGGTGATAAACCTGCAGTCATGGAAACTGAAGAACCCCATGCGCCTGCTGGGAAGAAACAAAATGGCAAAAGGGCTGTTGCACAAAAGAAGTCTTCAACTGTTACAGTTCTGGACACTTCTGATGATAGTGATCATGAAAATTTTGTTGATGATGAAGATGACGACGATGATTTCAGCTTACAACAGCAGGCTGCCCCAGAAACAGAGAAGAAGAAGCGAGGAAGGAAACCTGCTGCTCAGAATGCTGCCACCAAGAAGCCACCTGCAGCCGCCGCCAGAAGGAGAGGCGTAGCAGCCAACAAGCAGCAATCTATTCTGAGTCAGAAATTCATCACAGATATGTTGAAACCAGCAGGTGAAAACTCAGGGGTTTCACCTGAGAAGAAAGTGAGGAAAATGAGAGCATCCCCATTTAATAAGAAAAGTGGTTCCTTGCTGGCTAAGGTAGCAAACAAAGATGAAACTGAAAGTGAAGAAGTGTCAGGTTCTATCTCTACCATGCCTGATGTAGATGAAGTGGTTGAGATTGTACCAGCAGCTAGAGCTAGACCTCAGAGGGCGAATCGCAGGCAAACAACATATGTTGTCCGTGAAGGATTGACTCCAGATGCTGCTAGAAACTTCATGAACTCTTCTTAG
Protein:  
MEGQTKRPLQSSNNANIDPVAKGKTIEEMYQKKTQLEHILLRPDTYVGSIEKHTQTLWVYENDEMVNRPVTYVPGLYKIFDEILVNAADNKQRDPSMDSLKVSIDVEQNLVSVYNNGDGVPVEIHQEEKVYVPELIFGHLLTSSNYDDNVKKTTGGRNGYGAKLTNIFSTEFVIETADGKRQRKYKQKFKNSVVEMLYIHAIISSIEWDLQLVFCNNMGKKSDPVITKCKVGENWTKVSFKPDLEKFKMSYLEEDVVALMKKRVVDLAGCLGKTVKVELNGRLIRLKSFRDYADLYLKSAEKSKPVPLPRIHAKVGDRWEICVSLSDGQFQQVSFVNSIATIKGGTHVDYITNQITAYVMNKVNKKKKDANVKAHNVKNHLWVFVNALIDNPAFDSQTKETLTTRQNSFGSKCDVPESMLKEVSNSGIVDTLLSWADFKQSKDLKKSDGTKTQRVRGIVKLEDANDAGGRNSEKCTLILTEGDSAKALAMAGLSVVGRDHYGVFPLRGKLLNVREASSKQIGENEEIQNIKKILGLQQNKEYTSVKSLRYGHLMIMADQDHDGSHIKGLLINFIHSFWPSLLKVPSFMVEFTTPIIKAFHSNGTKIPFYSMPEFERWKESLGNNANGWKIKYYKGLGTSSPQEGREYFRDLDKHRKDFVWEDDHDGSAIEMAFSKKKAEDRKTWIRNFEPGTCRDHMAKYINYRDFVNKELILFSRADLQRSIPSMVDGLKPGQRKILFCSFKKKLFKEIKVGQFIGYVSEHSAYHHGEQSLSSTIIGMAQDFVGSNNINLLKPNGQFGTRNLGGKDHASARYIYTELSPITRCLFSEDDDKLLDYLNEDGKSIEPNWYMPVIPMVLVNGSEGIGTGWSSFIPNYNPREIIANVRRLLNGEEMVPMDPWYKGFKGTIEKSAKEGGYVVNGSIEEIDEQSFRITELPIRRWTQDYKQFLESVTEGSPNAKDTLIEDFRQNGDDATVNIEIRLKQDKIIAIMQEGLLKKFKLTGTISTSNMHLFDAEGKIKKYDNAEQILEEFFPLRLEYYERRKKHKIENLERLLLVLDNKVRFILGVVSGEIVVSNRKKADLLIELKQKGFTPMPRKGKSAEPQVAGANDENSEEQENDNGRDQETESVNVDGARSGDYEYLLSMSIGTLTIESVQKLLNEKDEKTREYEILKSTPPTSMWMTDLDELEKKLDELDIKEAEEMQKRSTQAANKRTSRAIPTKAPKKQPRKNTKVVEPETENTSNSSMEVEKPAEIAKPKGRGGPRKGAATKTKKKDEEEEEEMLSLQERLAAYNLGPSGDKPAVMETEEPHAPAGKKQNGKRAVAQKKSSTVTVLDTSDDSDHENFVDDEDDDDDFSLQQQAAPETEKKKRGRKPAAQNAATKKPPAAAARRRGVAANKQQSILSQKFITDMLKPAGENSGVSPEKKVRKMRASPFNKKSGSLLAKVANKDETESEEVSGSISTMPDVDEVVEIVPAARARPQRANRRQTTYVVREGLTPDAARNFMNSS