CDS

Accession Number TCMCG064C02120
gbkey CDS
Protein Id XP_011087923.1
Location complement(join(15692383..15692996,15693345..15693444,15693596..15693663,15693745..15693907,15693989..15694396,15694489..15694538,15694617..15694803,15694875..15695232,15695312..15695445,15695546..15695887,15696004..15696168,15696307..15696420,15696509..15696622,15696745..15696954,15697037..15697236,15697336..15697615,15697762..15697828,15697922..15698214,15698515..15699099))
Gene LOC105169247
GeneID 105169247
Organism Sesamum indicum

Protein

Length 1483aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA268358
db_source XM_011089621.2
Definition DNA topoisomerase 2 isoform X2 [Sesamum indicum]

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:  
ATGGCCGGAGCCAAGAAAGCCCCTTTGACCACCAGCAATAATGCCAATATCCCACCACCTGAAACTACCATCGCCGGCGGGGGCGCCGGCAAAAAGACTATAGAACAGACCTACCAGAAGAAAACCCAGCTCGAACACATCCTTCTCCGCCCTGATACCTACATTGGTTCCATTGAGAAACACACCCAAACCCTGTGGGTGTACGAGGACGAACAAATGGTTCAAAAATCAATCACCTATGTGCCGGGCCTTTACAAGATCTTCGACGAGATCCTCGTCAATGCTGCCGATAACAAACAGAGGGACCCCAAGATGGATTCCGTGAAAGTGACGATTGATGTTGAATCCAATAGCATTAGCGTGTACAACAACGGGGATGGGGTCCCTGTTGAGATCCATCAGGAGGAAGGGGTTTATGTGCCGGAATTGATTTTTGGGCATTTGTTGACTAGTAGTAATTATGATGACAATGAGAAGAAGACGACGGGTGGGAGGAACGGGTATGGGGCGAAACTCACAAATATATTCTCGACTGAGTTTGTGATTGAGACTGCGGACGGGAAGAGGCAGAGAAAATACAAGCAGGTTTTCTCTAATAACATGGGCACAAAATCTGAGCCTATTATATCAAAATGCAAAGCTGGGGAGAATTGGACTAAGATTACGTTCAAGCCAGATTTGGCAAAATTTAGCATGAGTTATTTGGAGGAGGACGTTGTTGCCCTGATGAAGAAGCGTGTAATTGATGTTGCGGGATGCCTTGGGAAGACTGTGAAGGTGGAATTGAATGGACGGCTGTTCCATTTCAAATCATTTTCCAACTATTGTGACCTTTATCTAAAACCTGCATCAGCTTCCAGCTCAGATCCACTCCCAAGATTTGAAGAGGAAGTGCATGATAGGTGGCAGATTTGTATAAGTCGTAGTGAAGGACAATTTCAACAGGTCAGCTTCGTAAATGGAATTGCAACAGTCAAGGGTGGGACTCATGTCGATTATGTAACTAATAAGATAACAAGCCATCTTGTTACTGTAATAAAGAACAAGAACAAGAAGAACAAGAAGTTTGACCTTAAACCTCATGCTGTGAAGAACCATCTCTGGGTGTTTGTCAATGCCCTCATTGACAATCCTGCATTTGATTCTCAAACCAAAGAGACTCTAACACTTCGTGCAGCGAGTTTTGGCTCTTCGTGGGATTTCTCTTCGAAGTTCCTAGACAAAGTTGCCAAGTCAGATATAATGAAAAACATTGAGGAATGGGCAGAATTTAAACAGAAGAAAGATCTTAAGAAAACAGACGGATCAAAAGACAGGAGGATTTATGGACTAACCAAACTAGCTGATGCTAATGAGGCTGGGGGGAAGAATTCCGAGAAATGTACCTTGATTTTGACAGAAGGAGATTCAGCCAAGGCACTTGCAATTGCTGGACTTTCTGTGGTTGGGCGAGATCACTATGGTGTGTTCCCTCTAAGAGGAAAGTTGCTCAATGTGAGGGAAGCAAGCCATAATCAGCTAATGCAGAATGTTGAAATACAGCATATCAAGCAGATTTTAGGACTCCAGCATGGTAAACAGTATGATAGTGTCAAGTCACTCAGATATGGACACTTGATGATAATGACTGATCAGGATCATGATGGTTCTCATATCAAGGGTCTATTAATTAACTTCATCCATTCATTCTGGCCATCTTTGCTCAAAGTTCCTACCTTCCTGTTGGAGTTCATTACTCCTATCGTAAAGGCCAGTCGTAAAGATGGGAAGAAAAAAGAATCCTTCTATACTATGCCTCAGTATGAAGCATGGAAAGAGAAGTTGGGGGCAGATGCAAAGAATTGGTCTATTAAGTACTATAAGGGGTTGGGGACGAGCACAGATCAGGAAGGGAAGGAGTATTTCGAAGATCTTGGCAAGCACAAGAAGGATTTTGTTTGGGTGGATGAACAAGATGGGGAGGCAATAGAACTTGCTTTCAGTAAGAAAAAGATTGAAGCTAGAAAGAATTGGATCCGGCAATTTGAGCCTGGCACGTACCTTAGTGAGCAAGATAAACACATCAAATATCGTGACTTTGTCCATAAAGAACTCATATTGTTTTCAATAGCAGATCTCCAGAGATCGATTCCATCAATGGTTGATGGGCTGAAACCTGGTCAAAGAAAGATTCTTTTCTGTTCTTTCAAAAGGAACTTTATCAAGGAAGCGAAAGTTGCACAGTTCTCTGGTTATGTGTCAGAACACTCGGCTTACCATCATGGAGAACAAAGTCTTGCTAGTACCATAATAGGCATGGCTCAAGATTATGTGGGTAGCAACAATATAAATCTTCTTTTACCAAATGGGCAGTTTGGTACACGAGGCCAGGGTGGGAAAGATCATGCCAGTGCAAGGTATATTTTCACGCAGCTGTCTCCTATTACACGTTATTTGTTTCCAAAGGCAGATGACATTCTCCTCAACTACCTAAATGAAGATGGACAATCGATTGAACCTTCTTGGTATGTCCCAATCATACCAATGGTTCTAGTAAATGGAAGTGAAGGAATAGGCACTGGATGGAGTTCTTTCATACCTAATTATAACCCTCTGGATATTATTGCCAATCTGAGGCATTTGTTGAACGATGAACCAATGGTTCCTATGCATCCATGGTATAAAGGATTCAGAGGTTCAATCGAGAAAACTGCCACAAAAGAAGCTGGGAATAGCTACACAGTCAGTGGAATCATAGAAGAACTGGATGAAAGAACATTAAGTATAACAGAACTTCCAGTTCGAAAGTGGACCCAAGATTATAAGGAATTTTTGGAGTCCATTTCTGCTGAGAATGAGAAGAGCAAGGATCCATTTATAGAGGGTTGCCGCGATAACAGTGGTGGAGAAATTGTGAATTTCTTGGTTTATTTGTCAGCGGAGAATCTTTTGATAGCTAAGCAAGAGGGTTTGCTGAAGAAATTTAAGTTAACCACTTCTATAAGCACAAGTAACATGCATCTATTTGATGCGAAAGGTGTGATCAAGAAATACGACACCCCTGAACAAATTCTTGAGGAATTCTTCCACATAAGGCTTGAGTTTTACGAGAAAAGAAAGAGAGTTTTGTTGGCCAACCTTGAAAACGATATGTTAAAATGTGAAAATAAGTGTAGATTTATTCAGTGCGTGGTGGAAAGTAGCATCATTGTGAGCAACAGGAGAAGGGCTGATTTATTCCTTGAGTTAAAAGAAAAGGGTTTTACTCCTTTCCCAAAAAAGAAAACCGCTGCTGAAGTTGCTATTGCTGGTTCACTTGATGAGGCAGAGGAAACTGAAGAGAACACTTCTGCAAGTGATTATGACTACTTGTTGTCTTTGGCGATTGGTACCTTAACTGCTGAAAAGATACAAGAATTACGTGCTGAGAGGGATAAGCTCATGCAAGAAGTTGAAAACCTGAAAAGAGCAACCGTAAAGTCTTTGTGGATGAATGACCTTGATGCTCTTGAGAGCAAATTCATCGAGGAACAAAACAAAAGTGAGAAAAAATGGGAGAAGGAAAGAGAAAAGATAAACGGCACTGTAAACATATCAAGACCAGTGCAAAAGAATCCACGTAAGAACAACAAGAAGGCAACCAACAAAGAGTCGCAAATGGAAGTGTCAGGTGATACTGTACCTGAAGCAGGTAATGCTGGTGACATCAAGAAACCAAAAGGCAGGACAGCTGCTAAAAAGAAAGCTCCAGCAGAAAAGGTTACATCAGTTGCTGATGAAAATGATGATGAGGAAATATCTGATCTGAGACATCGACTTGCAGCTTACAATTTTGACTCTTCTCCTGATCGGCCACAAGAAATGGAAACAGAAGAGGTGTCGCAGTTGCAAACAAAGAAGAAAGAACCAAGTAGAAAGGCTGCTGCACAGAAGAAGCCATTGCCAACTGTTTCAGAGTCTCATGATGATGATGATATCCAGATCATTGATGATGACGATGACTTTGTGCCTGACGAGAAGAAAAAGAAAGGAGGCAGAAAACCAGGAAATGCCAAAGCAGCCAAACCTCCTTCAACAAAGAAAAGAGGGCCGGCTGCTAGCAAGCAGTCTCAGACTCTAGGCCAGAAACTGATCACAGAAGTGCTCAAGCCCGCAGAAAATTCGCCTGAAAAGAAAGTGAGGAAAGTGAGAGCATCTCCATTTAACAAGAAAAGCGGTTCCATTCTGGGAAGGACGATCAATGTCGAAGAGGAAGAAGAGGGCTCCACTTCAGCAGAACAAGCAGACTCAACTTCTACCTTGGGTAGCGTGACAGACGTAGGCCAAGCAGTGGCTCCGAAAGCTAGACCTCAGAGAGCTAACCGAGGCAAAGCAACATATGTCATAAGTGATGATTCTGAGAGTGATGATCCAGCTGAAGATTTTGAGAGTGATGCAGCTGAAGATTACTCTGACTTTGATGATGAGGACTAA
Protein:  
MAGAKKAPLTTSNNANIPPPETTIAGGGAGKKTIEQTYQKKTQLEHILLRPDTYIGSIEKHTQTLWVYEDEQMVQKSITYVPGLYKIFDEILVNAADNKQRDPKMDSVKVTIDVESNSISVYNNGDGVPVEIHQEEGVYVPELIFGHLLTSSNYDDNEKKTTGGRNGYGAKLTNIFSTEFVIETADGKRQRKYKQVFSNNMGTKSEPIISKCKAGENWTKITFKPDLAKFSMSYLEEDVVALMKKRVIDVAGCLGKTVKVELNGRLFHFKSFSNYCDLYLKPASASSSDPLPRFEEEVHDRWQICISRSEGQFQQVSFVNGIATVKGGTHVDYVTNKITSHLVTVIKNKNKKNKKFDLKPHAVKNHLWVFVNALIDNPAFDSQTKETLTLRAASFGSSWDFSSKFLDKVAKSDIMKNIEEWAEFKQKKDLKKTDGSKDRRIYGLTKLADANEAGGKNSEKCTLILTEGDSAKALAIAGLSVVGRDHYGVFPLRGKLLNVREASHNQLMQNVEIQHIKQILGLQHGKQYDSVKSLRYGHLMIMTDQDHDGSHIKGLLINFIHSFWPSLLKVPTFLLEFITPIVKASRKDGKKKESFYTMPQYEAWKEKLGADAKNWSIKYYKGLGTSTDQEGKEYFEDLGKHKKDFVWVDEQDGEAIELAFSKKKIEARKNWIRQFEPGTYLSEQDKHIKYRDFVHKELILFSIADLQRSIPSMVDGLKPGQRKILFCSFKRNFIKEAKVAQFSGYVSEHSAYHHGEQSLASTIIGMAQDYVGSNNINLLLPNGQFGTRGQGGKDHASARYIFTQLSPITRYLFPKADDILLNYLNEDGQSIEPSWYVPIIPMVLVNGSEGIGTGWSSFIPNYNPLDIIANLRHLLNDEPMVPMHPWYKGFRGSIEKTATKEAGNSYTVSGIIEELDERTLSITELPVRKWTQDYKEFLESISAENEKSKDPFIEGCRDNSGGEIVNFLVYLSAENLLIAKQEGLLKKFKLTTSISTSNMHLFDAKGVIKKYDTPEQILEEFFHIRLEFYEKRKRVLLANLENDMLKCENKCRFIQCVVESSIIVSNRRRADLFLELKEKGFTPFPKKKTAAEVAIAGSLDEAEETEENTSASDYDYLLSLAIGTLTAEKIQELRAERDKLMQEVENLKRATVKSLWMNDLDALESKFIEEQNKSEKKWEKEREKINGTVNISRPVQKNPRKNNKKATNKESQMEVSGDTVPEAGNAGDIKKPKGRTAAKKKAPAEKVTSVADENDDEEISDLRHRLAAYNFDSSPDRPQEMETEEVSQLQTKKKEPSRKAAAQKKPLPTVSESHDDDDIQIIDDDDDFVPDEKKKKGGRKPGNAKAAKPPSTKKRGPAASKQSQTLGQKLITEVLKPAENSPEKKVRKVRASPFNKKSGSILGRTINVEEEEEGSTSAEQADSTSTLGSVTDVGQAVAPKARPQRANRGKATYVISDDSESDDPAEDFESDAAEDYSDFDDED