CDS

Accession Number TCMCG004C09595
gbkey CDS
Protein Id XP_029151249.1
Location join(5156408..5156620,5156720..5156932,5157225..5157425,5157538..5157624,5157722..5157886,5158234..5158357,5158473..5158636,5158900..5159215,5166426..5166544,5166640..5166774,5166874..5166996,5167102..5167209,5167300..5167377,5167463..5167570,5167668..5167775,5167964..5168065,5168152..5168184,5168302..5168325,5168558..5168620,5168866..5168952,5169051..5169095,5169173..5169264,5169341..5169458,5169936..5170024,5170158..5170242,5170336..5170427,5170586..5170890,5171167..5171198)
Gene LOC112789008
GeneID 112789008
Organism Arachis hypogaea

Protein

Length 1142aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA476953
db_source XM_029295416.1
Definition nucleolin 2 isoform X1 [Arachis hypogaea]

EGGNOG-MAPPER Annotation

COG_category G
Description Belongs to the glycosyl hydrolase 9 (cellulase E) family
KEGG_TC -
KEGG_Module -
KEGG_Reaction R06200        [VIEW IN KEGG]
R11307        [VIEW IN KEGG]
R11308        [VIEW IN KEGG]
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K01179        [VIEW IN KEGG]
EC 3.2.1.4        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00500        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
map00500        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGAACATCTCTTTATGCATCATAACACTACTACTGTTGCACTTAGGCTTATTTTTAGGGGCAAGCTTAGCCTACTCCTCAAGCTTCAACTATGGTGATGCTGTTGACAAGAGCTTGATGTTCTTTGAAGCTCAAAGGTCTGGTAAATTGCCACCTCAGCAGCGAGTCAAGTGGCGTGGTGATTCTGGCCTCAATGATGGACTTTCACAAGGAGTGGACCTTGTGGGAGGGTACTATGATGCTGGGGATCATGTGAAGTTTGGGCTGCCAATGGCATATAGTGTGACAATGCTTGCATGGGGAGCCATTGAGTTCAGAAAAGAGATCACTGACTTGAACCAAATGGGACACACTTTATGGGCCATTAAATGGGGAACTGATTACTTCCTCAAAGCACATCCTCAGCCTAATGTTCTTTGGGGACAGGTGGGGGATGGAGCCTCGGATCACTATTGCTGGGAGCGTGCTGAAGACATGACAACTTCAAGAACTGCCTATAAAGTTGATGAAGAGCATCCTGGCTCTGATATTGCAGGTGAAACTGCAGCTGCATTGGCTGCAGCATCCATAGCCTTCAAGCCCTACAACTCTTCTTACTCTAGTCTTCTCCTAATTCATGCAAAACAGCTCTTCACATTTGCAGATAGGTTCAGGGGTCTATATGATGATTCCATAACTAGTGCTCAGCAATTCTACACTTCTTCCGGTTACTCAGATGAACTATTATGGGCTGCAGCATGGTTGCATCAAGCAACTGATGATGAATACTACCTAAAGTATGTAGTGGACAATGCTGTGTACATGGGTGGAACTGGCTGGGCAGTGAAGGAGTTCTCTTGGGACAATAAATATGCCGGTGTACAAATCCTCTTGTCGAAGGTGTTACTAGAAGGAAAGGCTGGTTCATATGCCTCTACACTAAAGCAGTATCAAGCCAAGGCAGATTATTTTACCTGTGCTTCCTTGCAAAAGAATGATGGTTACAATGTCCAGAAGACTCCAGGTGGTCTAGTATACGTGCGCGAATGGAACAACATGCAGTATGTTTCTTCTTCTGCATTTCTCTTGGTTGCTTACTCTAAGTATCTATCAGATGCAAAAACTCAGATTAATTGTCCAGATGGACAAGTTCAGCCTCAGGAGCTCCTCAATTTTGCAAAATCACAGGCTGATTACATCCTTGGCAAAAACCCTGAGGGTATGAGCTATTTGGTTGGATCTGGACCAAAATATCCTGTGCATGTTCACCACAGAGGAGCTTCCATTGCTTCAATCTTTTCTATTAGGTCTGAGGTTGGCTGCATCCAAGGATTCGAGGCATGGTATCACCGTGCCGAACCGAATCCTAACATCATCTATGGTGCCCTTGTGGGTGGTCCTGATAAAAATGATGAATTCTCTGATGACAGATCAAATTATGAACAAACTGAGCCTACACTTTCAGGATCAGCTCCTCTTGTAGGCATCTTTGCTAAACTGCAGATTAGTTTAAAGAAACAGAAGATCGAAGAGGCTGCTCAGAAGCAAAAGAAGGAAGTGAAGGTGCAGAAGAAAAAGGAGGAAAGTAGTTCAGATGATTCTTCTTCAGATTCTGAAGATGAGAAACCTGCTACCAAAGTTGCTGTTGCTTCAAAGAAGCAGCCTGCTAAGAACGGCACTTTAAGCTCCCCTGCAAAGAAAGCCAAGCCAGCTAGTAGTTCTAGCTCTGATGATTCTGCTTCAGAGTCTGAAGATGAGAAACCTGCAGCAAAGGCTCCTCCAAAAAGTCAGGCTGCAAAAAATGTTGCTCCAGCAAAGAAAGTCAAGCCAGCTTCCTCTTCAAGTTCTGAATCCTCAGATGATGACTCTGATGACGACGAAGTGCCCAAATCCAAGGTGCTGCCTGCTGTGGTTAAGAATGGATCTGCTTCTGCAAAGAAACCAAATGAAAGCTCTGAGTCTGAGGACAGCAGCTCTGGGGAGGAAAATAAAGCAAAATCAAGCAAAAAGGTGCCTGCTAAGAAGGTTGAATCAGAGTCATCCTCTGATAGTAGCTCTGATGAAGAAGATGAGAAAAAACCAGTAGCCAAATCATCTGCAGTTCCAAGTAAGAAAGTTGAGACAACTGAAACTTCAGATGATGATTCAAGTGAAAGCTCTGATGATGAAGAAAATGGTGCAAAACCTACTGCAAATGCGGCTTCCAAGCCTTCTGCTATAGCTAAGAAGAACGATGACAGTGACAGTTCAGATTCTGATGATAGCAGCTCCGAAGATGAGAAGAAAACTGCTCCCAAGACTGTTTCCAATGCCAAGTCAGTACCCGTGCCAAAGCCTGCCAAGAAGTCTAGTAATTCTAGTGAGAGTGAGTCGGATGAGGAAGAGGACTCATCTGATAGTGAATCTGAAGATGAAAAGAAAACTGCTAAAAGCTCCGGTCAGGGAAAAATGGATGTTGATGAAGAAGAGAGCTCTGATGAAAGTGATGACGAGCCAAAAAAGAAGCCTGTGAAAGTTTCAAAAGAAAGCAGTGATAGTTCAGATGACAGTGATGAGGAAGAAGAGAAACCTTCTAAAACTCCTCAGAAAAGTGCTAAGGATGTGGAGATGGTTGATGCTGACTCAGCAAAGAAAGTTCCTAAAACCCCTTCTACACCTAGTGCTGCAACAGGTGGTACAAAGACACTATTTGTTGGAAACCTGTCATTTAATGTGCAACGATCTGACGTTGAGGAGTTTTTCAAAGATTGTGGAGAAGTTGTTGATGTTCGTTTTTCTGTTGACGATACTGGGAGGTTTAAAGGCTTTGGACATGTTGAGTTTGCTACTGCAGAGGCGGCACAAAGTGCTCTTGAATTGAATGAGCATGAGTTGTTGAATCGTCCTGTTAGGCTTGATTTAGCTCGTGAAAGAGGTGCATATACCCCTGGTGGCAGCAATTCCTTCCAGAAAGGTGGTCAGCGTCAATCTGGTCAAACTATATACATAAGGGGTTTTGATAAATCTCTTGGAGAAGAAGAGATAAGAGCTAGCCTAAATGAGCATTTTGGTTCGTGCGGGGAGATCTCGAGGGTGTCAATCCCAAAAGATTTTGAGTCTGGATGTCCTAAAGGTTTTGCCTACATGGACTTCAAGGATTCTTCTAGCATGAAGAAAGCTCTAGAACTCAATGAGACTGAACTTGCTGGTGGTTATTACCTCTCAGTTGAAGAAGCCAAACCTAGATCTGATGGCTTTGGTTCAGGTGGAAGAGGTGGCGGTCGATTTGGAGGTAGGAGTAATGAAGGTGGTCGATTTGGAGGAAGGAGTGGTGGTGGCCGATTTGGTGGTGGAAGGGGTGGTAGTGATCGAGGCAGAGGTGGTCGAGGAAGAGGTGGTGGAAGGGGTTTTGGAAATAAACCGACATTTGCTGCAGAAGGAAAAAAGACCACATTTGCCGATGACGACTAG
Protein:  
MNISLCIITLLLLHLGLFLGASLAYSSSFNYGDAVDKSLMFFEAQRSGKLPPQQRVKWRGDSGLNDGLSQGVDLVGGYYDAGDHVKFGLPMAYSVTMLAWGAIEFRKEITDLNQMGHTLWAIKWGTDYFLKAHPQPNVLWGQVGDGASDHYCWERAEDMTTSRTAYKVDEEHPGSDIAGETAAALAAASIAFKPYNSSYSSLLLIHAKQLFTFADRFRGLYDDSITSAQQFYTSSGYSDELLWAAAWLHQATDDEYYLKYVVDNAVYMGGTGWAVKEFSWDNKYAGVQILLSKVLLEGKAGSYASTLKQYQAKADYFTCASLQKNDGYNVQKTPGGLVYVREWNNMQYVSSSAFLLVAYSKYLSDAKTQINCPDGQVQPQELLNFAKSQADYILGKNPEGMSYLVGSGPKYPVHVHHRGASIASIFSIRSEVGCIQGFEAWYHRAEPNPNIIYGALVGGPDKNDEFSDDRSNYEQTEPTLSGSAPLVGIFAKLQISLKKQKIEEAAQKQKKEVKVQKKKEESSSDDSSSDSEDEKPATKVAVASKKQPAKNGTLSSPAKKAKPASSSSSDDSASESEDEKPAAKAPPKSQAAKNVAPAKKVKPASSSSSESSDDDSDDDEVPKSKVLPAVVKNGSASAKKPNESSESEDSSSGEENKAKSSKKVPAKKVESESSSDSSSDEEDEKKPVAKSSAVPSKKVETTETSDDDSSESSDDEENGAKPTANAASKPSAIAKKNDDSDSSDSDDSSSEDEKKTAPKTVSNAKSVPVPKPAKKSSNSSESESDEEEDSSDSESEDEKKTAKSSGQGKMDVDEEESSDESDDEPKKKPVKVSKESSDSSDDSDEEEEKPSKTPQKSAKDVEMVDADSAKKVPKTPSTPSAATGGTKTLFVGNLSFNVQRSDVEEFFKDCGEVVDVRFSVDDTGRFKGFGHVEFATAEAAQSALELNEHELLNRPVRLDLARERGAYTPGGSNSFQKGGQRQSGQTIYIRGFDKSLGEEEIRASLNEHFGSCGEISRVSIPKDFESGCPKGFAYMDFKDSSSMKKALELNETELAGGYYLSVEEAKPRSDGFGSGGRGGGRFGGRSNEGGRFGGRSGGGRFGGGRGGSDRGRGGRGRGGGRGFGNKPTFAAEGKKTTFADDD