CDS

Accession Number TCMCG067C42140
gbkey CDS
Protein Id KAF8059548.1
Location complement(join(57033..57080,57174..57402,57477..59170,59266..59349,59454..59724,59823..60076,60177..60386,60752..60940))
Organism Sinapis alba
locus_tag N665_1229s0012

Protein

Length 992aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA214277, BioSample:SAMN02744833
db_source MU106779.1
Definition hypothetical protein N665_1229s0012 [Sinapis alba]
Locus_tag N665_1229s0012

EGGNOG-MAPPER Annotation

COG_category S
Description nuclear matrix constituent protein 1-like protein
KEGG_TC -
KEGG_Module M00019        [VIEW IN KEGG]
M00036        [VIEW IN KEGG]
M00119        [VIEW IN KEGG]
M00570        [VIEW IN KEGG]
KEGG_Reaction R01090        [VIEW IN KEGG]
R01214        [VIEW IN KEGG]
R02199        [VIEW IN KEGG]
R10991        [VIEW IN KEGG]
KEGG_rclass RC00006        [VIEW IN KEGG]
RC00036        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko01007        [VIEW IN KEGG]
KEGG_ko ko:K00826        [VIEW IN KEGG]
EC 2.6.1.42        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00270        [VIEW IN KEGG]
ko00280        [VIEW IN KEGG]
ko00290        [VIEW IN KEGG]
ko00770        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01110        [VIEW IN KEGG]
ko01130        [VIEW IN KEGG]
ko01210        [VIEW IN KEGG]
ko01230        [VIEW IN KEGG]
map00270        [VIEW IN KEGG]
map00280        [VIEW IN KEGG]
map00290        [VIEW IN KEGG]
map00770        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01110        [VIEW IN KEGG]
map01130        [VIEW IN KEGG]
map01210        [VIEW IN KEGG]
map01230        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGCGACTTATAGTTCGCCGGCTAGTACCACCAGATTGGCGATTACGCCTGGTTCTAGGGTTTTAAAAAGCCCTTTGAGTGAAGAAGTCATGTGGAAGCGTCTCAAGGAAGCTGGTTTTGATGAACAATCGATCCAGCAGAGGGATAAAGCCGCCCTAATCGCTTACATCGCCAAGCTCGAATCTGAGGTCTATGATTATCAACACAACATGGGTCTTCTTCTTTTGGAGAAAGACCAATTGTTGTCCAAGTACGAAGAGGTTAAGGCCTCTGTCGATGAAGCCGACCTAGCACATAGGCGAGATCTATCTGCATATGTCTCTGCCTTAGGTGAAGCCAAGAAACGAGAAGAGAGTTTGAAGAAGGACGTTGGGATTGCGAAAGAGTGTATCTCTAGTCTGGAGAAGACTTTGCATGAGATTCGTGCAGAATGTGCAGAGACGAAAGTTTCTGCTGGGAGTAAAATGTCTGAAGCTCACACTATGATTGAGGATGCTCTCAAGAAATTTGCAGACGCTGAAGCAAAAATGCGCGCAGCTGAAGCTTTACAAGCAGAAGCTAATCGTTATCATCGTATTGCTGAGAGAAAACTGAAGGAAGTTGAAAGCCGTGAAGATGATCTTGTTCGGCGTCTTGCATCTTTCAAGTCTGAGTCTGAAACGAGAGAGAGCGAGATTGTTATTGAGCGACAGACTTTAAGTGAGAGGCGAAAGAGCTTGCAACAAGAGCAGGAAAGATTATTGGATGCAAAAGCTTCACTAAATCAACGAGAAGATCACATTTTTGGTAGATCCCAAGAATTAGCTGAACTTGAAAAAGGGTTAGAGTCTGCAAAGACCACATTTGAGGAGGAACGTAGAGCCTTGGAGGACAAAAAGTCGAATTTGGAGATCGAATTAGCTTCACTTGCTCAAAGAGAAGTGGTCGTCTCTGAAAGGGAATCTTCACTACTTGAGAAAGAACAAGAGCTGCTTGTTGCTGAAGAAAAAATTGCCAGCAAGGAATCTGAACTGATTCAGAAGGTCTTAGCAAATCAAGAAGTTATCCTGAGGAAAAGAAAATCTGATGTGGAAGCTGAGTTGGAAAGTAAATGCAAATTAGTGGAAAATGAAATCGAGAGCAAGAGACGGGCTTGGGAACTAAGAGAGGTTGACATCAGCCAGAGGGAGGACCTAGTAGGTGAAAAGGAACATGACATGGAAGTTCAATCAAGGGCAGTGGCTGAGAAAGAAAAGGATATAACAGAGAGGTCTTATAATCTTGATGAGAAAGAGAAGCATTTGGATGCTATGGAGAAAGATATCAACCGTAAGACAACTCTGCTAGAGGATGAGAAGGAACGGCTAAGAAAATTAGACTTAGATCTGCAGGAGGCTTTGATGTCGTTGGAAGACAAGAGAAAACGTGTTGACTCTGCAACGGAAAAACTTGAAGCCTTGAAGAGTGAGACAAACGAATTATCCATTCTGGAGATGAAACTCAAGGAGGAGCTAGATGATATGAGGGGTCAAAAGCTTGAACTCCTGGCTGAAGCGGATAGAATGAAAGTGGAGAAAGCTAAATTTGAAGCCGAGTGGGAACACATTGATGTGAAAAGGGAAGAGTTAAGAAAAGAAGCGGAGTATATTACTCGTCAAAGGGAGGCTTTCTCAATGTATCTCAAGGACGAGCGTGATAACATCAGGGAGGAAAGGGATGCGTTGAGAAACCAGCACAAAAACGATGTGGAGGCGCTAAACCGAGAGCGTGAAGAATTCATGAATAAAATGGTGGAGGAACATTCAGAGTGGCTTAGCAAGATACAGCGCGAACGTGCTGACTTCTTGTTGGGTATTGAGACGCAGAAGAGAGAGTTGGAGTATTGCATTGAGAACAGAAGAGAAGAGTTGGAGAATTCTTCGAGGGAGAGAGAGAAGGCATTTGAGCAAGAGAAGAAGTTGGAAGAGGAGCGTATACAGTCCCTCAAGGAGTCGGCACAGAAAGAGTTAGAAAATGTCCTAGTGGAACTAAAGAGGTTGGATGCGGAGAGGCTGGAGATCAAATTGGACCGTGAGAGGAGGGAGAGGGAGTGGTCTGAGTTGAAGGGATCGGTTGAGGAGCTAAAGGTTCAACGAGAGAAACTAGAGACGCAAAGGCATATGCTTCGATCTGAAAGAGAAGAAATCAGACATGAGGTTGAAGAACTGAAGAAGTTAGAGAATCTGAAAGTTACGTTAGATGATATGTCAATGGCGAAAATGCAACTGTCCAATTTAGAGCGTAGCTGGGAAAAAGTATCTGCGTTGAAGCAGAAGGTTGTTGTTGTTACTCGGGACGACGAACTAGACTTGCAAAATGGAGTCAGCACTGTGAGTAATAGCGAAGATGGTTATAATAACTCAAACAATGGCTCAAGCCCTTCATCCGCCACTCCGTTTTCATGGATAAAACAATACACTAATCTGATATTCAAGAATCCTCCGGACACATCGCTTCCAATGCATCATCATGAAGAAGAAGGAGCATTGCCTTCAGAAAAGTTGAAGCTAGATTCATCGAAAAGAGAAGAAAAGGCTTACACCGAGGGGCTTTCGATTGCAGTTAAAGAACTTGAAGCCGGAAGGAAAAGAAGAGGTAACGCATCTGGAAGTGACACTAATGAAACAAGCAATCACAAGAAGAGGAAACATGATGTTGTTATCCATGAAGCTGATCCGGAGAGTGTAATTGCAAGCCCTGAGAATGTGCCCGAGGACAAACATGAACTGCCATCAAACCAAAACCAGGGCCCAAGTGGTATGGTAGTCCTCAGTGAAATCGTGAAGATCACAAAGGTTACGTGTGAGACAGAAGTCATCAACGAAGTGTCAAACATTGACTGCTCAGAAGATCCTTCCGAAGCAGGAACAAAAATGGTAGAGGAGGAGAAACAAGATAGTGATTGCAATCAGACCGGGATAAAGGAGAAGGACTCTGACGATGGTGGCATTGTGACATGA
Protein:  
MATYSSPASTTRLAITPGSRVLKSPLSEEVMWKRLKEAGFDEQSIQQRDKAALIAYIAKLESEVYDYQHNMGLLLLEKDQLLSKYEEVKASVDEADLAHRRDLSAYVSALGEAKKREESLKKDVGIAKECISSLEKTLHEIRAECAETKVSAGSKMSEAHTMIEDALKKFADAEAKMRAAEALQAEANRYHRIAERKLKEVESREDDLVRRLASFKSESETRESEIVIERQTLSERRKSLQQEQERLLDAKASLNQREDHIFGRSQELAELEKGLESAKTTFEEERRALEDKKSNLEIELASLAQREVVVSERESSLLEKEQELLVAEEKIASKESELIQKVLANQEVILRKRKSDVEAELESKCKLVENEIESKRRAWELREVDISQREDLVGEKEHDMEVQSRAVAEKEKDITERSYNLDEKEKHLDAMEKDINRKTTLLEDEKERLRKLDLDLQEALMSLEDKRKRVDSATEKLEALKSETNELSILEMKLKEELDDMRGQKLELLAEADRMKVEKAKFEAEWEHIDVKREELRKEAEYITRQREAFSMYLKDERDNIREERDALRNQHKNDVEALNREREEFMNKMVEEHSEWLSKIQRERADFLLGIETQKRELEYCIENRREELENSSREREKAFEQEKKLEEERIQSLKESAQKELENVLVELKRLDAERLEIKLDRERREREWSELKGSVEELKVQREKLETQRHMLRSEREEIRHEVEELKKLENLKVTLDDMSMAKMQLSNLERSWEKVSALKQKVVVVTRDDELDLQNGVSTVSNSEDGYNNSNNGSSPSSATPFSWIKQYTNLIFKNPPDTSLPMHHHEEEGALPSEKLKLDSSKREEKAYTEGLSIAVKELEAGRKRRGNASGSDTNETSNHKKRKHDVVIHEADPESVIASPENVPEDKHELPSNQNQGPSGMVVLSEIVKITKVTCETEVINEVSNIDCSEDPSEAGTKMVEEEKQDSDCNQTGIKEKDSDDGGIVT