CDS

Accession Number TCMCG058C05228
gbkey CDS
Protein Id KAF7123426.1
Location join(16928856..16928981,16929282..16929355,16930386..16930505,16930900..16930945,16931434..16931539,16932204..16932263,16932900..16933042,16933935..16934045,16935458..16935621,16935784..16936159,16936234..16936342,16937758..16937897,16938124..16938261,16938365..16938456,16938872..16939001,16939089..16939247,16939343..16939393,16940866..16941033,16941475..16941609,16942866..16942928,16943074..16943295)
Organism Rhododendron simsii
locus_tag RHSIM_Rhsim12G0104500

Protein

Length 910aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA588298, BioSample:SAMN13241185
db_source WJXA01000012.1
Definition hypothetical protein RHSIM_Rhsim12G0104500 [Rhododendron simsii]
Locus_tag RHSIM_Rhsim12G0104500

EGGNOG-MAPPER Annotation

COG_category F
Description belongs to the metallo- dependent hydrolases superfamily. Urease alpha subunit family
KEGG_TC -
KEGG_Module -
KEGG_Reaction R00131        [VIEW IN KEGG]
KEGG_rclass RC02798        [VIEW IN KEGG]
RC02806        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K01427        [VIEW IN KEGG]
EC 3.5.1.5        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00220        [VIEW IN KEGG]
ko00230        [VIEW IN KEGG]
ko00791        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko01120        [VIEW IN KEGG]
map00220        [VIEW IN KEGG]
map00230        [VIEW IN KEGG]
map00791        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map01120        [VIEW IN KEGG]
GOs GO:0003674        [VIEW IN EMBL-EBI]
GO:0003824        [VIEW IN EMBL-EBI]
GO:0006807        [VIEW IN EMBL-EBI]
GO:0008150        [VIEW IN EMBL-EBI]
GO:0008152        [VIEW IN EMBL-EBI]
GO:0009039        [VIEW IN EMBL-EBI]
GO:0016787        [VIEW IN EMBL-EBI]
GO:0016810        [VIEW IN EMBL-EBI]
GO:0016811        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGAAGCTGACTCCGAGAGAGGTTGAGAAGCTTATGCTACACGATGCTGGATACCTTGCACAGAAGCGTCTTGCCCGCGGCCTGAGGCTCAATTACACTGAAGCTGTGGCACTTCTAGCAACACAGATTTTGGAATTTGTTCGTGATGGTGAGAAGACAGTGGCAGAATTGATGGACCTAGGGAAACAGTTGTTAGGAAGTTGTGATAGCTCTACTCAGATAACTTTTAGAGGGTATGCTCTGTCTCAGCTGATAGCTTGGCCGAGGTCTCTACTGGTCGGACTCCTTGTGTTGGCTGTTACCTTACTCTTAAGTGCTGAGAGACAAGTTTTTCCAGCTGTTCCACATCTTTTGCATACTGTGCAGGTTGAAGGGACCTTTCCTGATGGCACAAAGTTAATCACCATCCATGACCCAATTGCCAGTGAACATGGAAATCTGGAGCTAGCTTTACATGGCGCTTTTCTTCCAGGTATGACAGTTGATCTCTGTGTTAGGTTCATGTCGTTAATCAGCAGTGGAGCATATTTAGTTCCTTCACTAGACAAATTTTACGGGATAGTAGATGACAAAATTCCTGGTGAGCTACGACTTGGAGGCAGAAGTATTACGCTAAACCAAGGAAGAAAGGCTGTAACTCTCAAAGTCACCAACACAGGAGACAGACCAGTTCAGGTTGGAAGCCATTATCACTTTATTGAGGTGAACCCCTGCTTAGTTTTTGATCGAAGGAAAGCATATGGCATGCGGTTGAACATACCAGCTGGAACAGCTACGCGATTCGAGCCAGGGGATTCTAAAAGTGTTAATCTTGTAAGGATTGGTGGTAAGCAAGTGATCAGAGGTGGAAACGGCATTGCTGATGGTCCAGTTGATGATGCCAATATCACCTCAGTGATGGAAGCGGTGCACACAAAAGGATTTAAGCATGCAGAAGAGACAAATGCCAGTGAAGGTGTCATTGCTGAAGGATCTTCTACCTCTACAATTTCTTGTGAGGTCTATGCTAACATGTATGGTCCCACAGTTGGTGACAAAGTTCGGCTTGGTGATACAGATTTATTTGCGGAAATAGAAAGAGATTTTGCAGTATATGGCGATGAATGTGTATTTGGAGGTGGAAAAGTTATAAGGGATGGAATGGGGCAGGCTTGTGGATATGCAGCTTCTGACTGTCTAGATACAGTTATTACAAATGCTGTGATAATTGATTATACAGGAATTTTCAAGGCAGATATTGGTATTAAAGGAGGTGTTATTGTTTCTCTTGGAAAAGCTGGCAACCCAGACGTCATGGATGGGGTATCCTATGACATGGTCATTGGCGTTAACACCGAGGCTATTGCTGGAGAAGGAATGATCATAACCGCAGGGGCCATAGACTGTCACGTGCACTTCATATGCCCTCAATTGGCACATGAAGCAATAGCAAGCGGCATCACAACTTTAGTGGGTGGAGGGACCGGACCTGCTGATGGGACACGTGCAACAACATGTACTCCAGCACCAGTACAAATGAAGTTAATGCTAGAATCCACTGATGACCTGCCGCTAAATTTTGGTTTTACTGGCAAGGGAAATGGTTCCAAACCTGAAGGGCTTCATGAAATAGTTAGGGCTGGAGCAATGGGACTGAAGCTTCACGAGGATTGGGGAACTACACCTGCTGCAATAGACAACTGTTTGACGGTTGGCGAACAGTATGACATTCAGGTTAATATCCACACTGATACCTTGAATGAATCTGGATTTGTGGAACACACAATTGCTGCATTCAGAGATAGAACAATTCATACTTACCACAGTGAAGGTGCAGGCGGGGGTCATGCTCCAGATATCATCAAAGTCTGTGGTGTAAAAAATGTTCTACCCTCATCAACGAACCCAACACGTCCTTATACTTCAAATACCATAGATGAGCACCTTGACATGCTGATGGTATGTCATCACCTTGACAAGGACATTCCAGAGGATGTAGCTTTTGCGGAATCAAGAATACGGGCTGAAACAATTGCTGCAGAAGATATCTTGCATGACATGGGGGCAATTAGCATCATATCATCTGATTCACAGGCTATGGGTCGTATTGGGGAGGCAATTGGGTCTTATAGACTTGCATTTGGAACTTATCTGGGAAAAGCAACCGTTATTTGCAGAACTTGGCAAACTGCTCACAAGATGAAGCTGTCTAGAGGCTCAATTGAACCAAGTGGCTCAGATAACGATAACCTCCGGATCAAACGATACATAGCAAAATACACAATAAATCCTGCTATAGCTAATGGGTTTTCTCATTTTGTTGGGTCAGTTGAGGTAGGAAAGTTGGCTGATCTTGTTCTTTGGAAACCATCTTTCTTTGGAGCAAAACCTGAAATGGTGATCAAAGGTGGCACAATTGCATGGGCCAACATGGGTGATCCAAATGCTAGCATCCCAACTCCCGAACCGGTGATAATGAGACCGATGTTTGGAGCATTTGGAAAGGCAGGAAGTGCTAACTCCATTGCTTTTGCGGCTTTAGATGACGGAGTGAAAGCCTTGTATGGACTCAACAAAAGGGTGGAAGCTGTAGGCAATGTGAGGAGGCTCACCAAACTTGACATGAAGCTTAATGATGCCCTTCCAGACATCAAGGTGGACCCAGAGACTTACACAGTGACAGCAGATGATGTGGTTCTTACCTGCACTGCAGCTACCACTGTTCCCCTTTCTCGAAACTACTTCCTCTTTTAG
Protein:  
MKLTPREVEKLMLHDAGYLAQKRLARGLRLNYTEAVALLATQILEFVRDGEKTVAELMDLGKQLLGSCDSSTQITFRGYALSQLIAWPRSLLVGLLVLAVTLLLSAERQVFPAVPHLLHTVQVEGTFPDGTKLITIHDPIASEHGNLELALHGAFLPGMTVDLCVRFMSLISSGAYLVPSLDKFYGIVDDKIPGELRLGGRSITLNQGRKAVTLKVTNTGDRPVQVGSHYHFIEVNPCLVFDRRKAYGMRLNIPAGTATRFEPGDSKSVNLVRIGGKQVIRGGNGIADGPVDDANITSVMEAVHTKGFKHAEETNASEGVIAEGSSTSTISCEVYANMYGPTVGDKVRLGDTDLFAEIERDFAVYGDECVFGGGKVIRDGMGQACGYAASDCLDTVITNAVIIDYTGIFKADIGIKGGVIVSLGKAGNPDVMDGVSYDMVIGVNTEAIAGEGMIITAGAIDCHVHFICPQLAHEAIASGITTLVGGGTGPADGTRATTCTPAPVQMKLMLESTDDLPLNFGFTGKGNGSKPEGLHEIVRAGAMGLKLHEDWGTTPAAIDNCLTVGEQYDIQVNIHTDTLNESGFVEHTIAAFRDRTIHTYHSEGAGGGHAPDIIKVCGVKNVLPSSTNPTRPYTSNTIDEHLDMLMVCHHLDKDIPEDVAFAESRIRAETIAAEDILHDMGAISIISSDSQAMGRIGEAIGSYRLAFGTYLGKATVICRTWQTAHKMKLSRGSIEPSGSDNDNLRIKRYIAKYTINPAIANGFSHFVGSVEVGKLADLVLWKPSFFGAKPEMVIKGGTIAWANMGDPNASIPTPEPVIMRPMFGAFGKAGSANSIAFAALDDGVKALYGLNKRVEAVGNVRRLTKLDMKLNDALPDIKVDPETYTVTADDVVLTCTAATTVPLSRNYFLF