CDS

Accession Number TCMCG077C21213
gbkey CDS
Protein Id KAF5746469.1
Location join(3877816..3877941,3878068..3878141,3878516..3878561,3879218..3879323,3880038..3880180,3881277..3881387,3881922..3882085,3882227..3882605,3882712..3882820,3884742..3884881,3885103..3885240,3885356..3885447,3885789..3885918,3886005..3886163,3886719..3886886,3887191..3887325,3887574..3887636,3887729..3887885,3889999..3890063,3890182..3890704,3891118..3891395,3891490..3891727,3891820..3892152,3892357..3892442,3892531..3892638,3892768..3893073)
Organism Tripterygium wilfordii
locus_tag HS088_TW06G00640

Protein

Length 1458aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA542587, BioSample:SAMN11634134
db_source JAAARO010000006.1
Definition urease [Tripterygium wilfordii]
Locus_tag HS088_TW06G00640

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:  
ATGAAGTTGACTCCAAGAGAAGTGGAGAAGCTAGGGCTCCACAACGCTGGTTACCTTGCCCAGAAGCGTCTCGCTCGCGGTCTTCGCCTTAATTACATTGAAGCTGTTGCGCTTATCGCCACTCAGATTTTGGAGTTTGTTCGTGATGGTAATAAGACCGTGGCAGAATTGATGGACGTTGGGAAACAACTTCTTGGAAGGAGACAAGTTCTTCCTGCAGTTCCCTACCTTTTAGATTCTGTACAGGTTGAAGGAACATTTCCTGATGGGACAAAGTTGGTCACCATTCATGATGCAATTGCTAGTGAAAATGGAAATCTAGAGCTTGCCTTTCATGGTTCTTTCCTTCCAGTTCCTTCATTAGAATTGTTTTCTGGAATGGAAGATATTGAAATTCCTGGTCAGATAATTTTTCAAAAAAGGGAGATTGTGCTTAATCCTCGAAGGAAAGCGGTAATTCTCAAAGTTGCTAACCATGGAGACAGGCCAGTTCAGGTTGGCAGCCATTATCACTTTATCGAGGTGAATCCATTCCTGGTTTTTGATAGACGAAAATCATATGGAATGAGGCTGAATATACCTGCGGGGACTGCTACACGATTTGAGCCAGGAGAAACCAAAAGTGTTGTACTCGTAAGCATCGGAGGTAATAGAGTGATTAGAGGTGGGAATGGAATGGCTGATGGTCCAGTCAATGATGCCAGATGCACCACTGTGATTGAAGCTGTAAACAGGACTGTATTCAAGAATCCAGAGGAAGCAGATGCTAGGGAAGGTGTCTGTGGAGAAGATTCTGCTTTTACCACTACAATGTCTCCTGAGACATATGCAAGCATATATGGCCCCAGTAAAGGAGACAAGATTCGGCTTGGTGATACTGATTTGTATGCTGAAATTGAGAAAGATTTTGCTGTTTACGGTGATGAAAGTGTTTTTGGAGGTGGAAAAGTAATAAGAGATGGAATGGGCCAATCGAGTGGGCGTTTACCGGCTGACTCCCTGGATACTGTTATAACAAATGCTGTGATCATTGATTATAGTGGAATATACAAAGCGGATATTGGTATCAAAGGTGATCTTATTGTGGGGCTTGGAAAATCAGGCACTCCGGATGTTATGGAAGGTGTAAACTTGGATATGATTATAGGGGTAAACACGGAAGTTATTGCAGGAGAAGGAATGATTGTAACTGCAGGGGCAATAGACTGTCATGTGCACTTCATATGCCCTCAACTGGTTTATGAGGCTATATCAAGTGGCATTACAACGTTAGTGGGAGGCGGAACGGGACCTGCTGATGGTACGCGTGCAACTACTTGTACACCTGCTCCGTCACATATCAAATTAATGCTGCAAGCTACTGATGACATGCCTCTAAATTTTGGCTTCACAGGAAAAGGAAATGGCTCAAAACCTGATGAACTGCATGAGATAATCAAATCTGGAGCTATGGGACTGAAGCTGCATGAGGACTGGGGAACTACTCCTGCTGTAATAGATAACTGTTTGGCTGTCGCAGAAGAATACGACGTTCAGGTTAATATCCACACTGACACCTTGAATGAATCTGGATTCGTGGAACATACAATTGCTGCTTTCAAAGGAAGAACTATTCATACGTACCACAGTGAAGGTGCAGGTGGTGGTCATGCTCCAGATATCATTAAAGTATGTGGAGTGAAAAATGTCCTACCCTCGTCAACAAACCCAACACGACCTTATACGTCCAATACTATAGATGAGCATCTTGATATGCTGATGGTTTGCCATCATCTTGATAAGGACATTCCAGAAGATGTAGCTTTTGCTGAATCAAGGATTAGAGCTGAAACAATTGCTGCAGAAGACATATTGCATGATATGGGAGCGATTAGCATCATAGCATCTGATTCACAGGCAATGGGTCGCATTGGAGAGGTGATAAGCAGAACTTGGCAGACTGCCCACAAAATGAAGACACAAAGGGGTTCCATTCACCCGAGTGAAGCAGACAATGACAACCTTCGTATCAAACGATATATTGCCAAATACACAATAAATCCAGCAATAGCTAATGGTTTTTCTCAATTTGTTGGTTCAATTGAGGTAGGGAAGTTGGCCGATCTTGTACTCTGGAAGCCTTCTTTCTTTGCGGCAAAGCCAGAGATGGTGATTAAAGGTGGTGTGATTGCATGGGCAAATATGGGTGATCCGAATGCAAGCATTCCCACACCTGAACCGGTGATATCGAGGCCAATGTTTGGAGCATTTGGCAAAGCTGGAAGTTCTCACTCCATTGCTTTTGTTGCTGCGAATAATGGGGTTAAGGCGTTGTATGAACTCAGCAAGAGGGTTGAACCAGTTGGCAATGTCAGGAAACTCACCAAACTGGACATGAAGCTCAACGATGCCCTTCCTGATATTCAGGTAGACCCAGAAACATACACAGTGACTGCTAACGAGGCTAATGCATTTCGCGTTATAGCGCACTCATTGGCAAGTGTTTCCACGCGCAACGAAGCGAAGTTAAGAACTTTCCAAAACGATACCGTTTTTGTAATTGCGAACTATGCAACGGTGTTGTATTTAGTCAACATCACCTCCACTTTCATATGTGGAACGTGCATTGACTCGGAGAGACTGACAGGCAAGATGTATGCACTGAAGCCGATCACTCGAGAGCTCGCTAGCTCTGCTGTCCGACAATCTCCGGCGATAACTGTTGCCGGAAGAAGTAGAAGTCTTTGGCGTAGCCAGGTGCCTGGTTCGAGATCACGAGTCAACTCGGGCTGCTCAGTCCGGGCTGTGATCAGCCGTGAAGACAAAGTTGTGGACTCAGCAAAGTCCGTGGAGACCGAGAACCATAATGGTCCGTTGCTATCTTCTTCTTCTTCGAAAGGGGCGGGGATTGATGTGAGAGCAGTAATCACTATAAAGAAGAAGATGAAGGAGAAGATCACTGAGAAGATCGAGGATCAGTGGGAGTTCTTCATCAATGGTATTGGTCAAGGGATCTTGATGCAGCTCATCAGTGAAGAGATTGACCCTGTTACCAATTCAGGCAAGAGTGTAGAGTCTTGTGTGAGGGGATGGCTGCCTAGGCATCCAAAGCAGTCCCATATTGTTGAATATGCAGCTGATTTCACTGTCCCCCACGACTTTGGTACTCCGGGAGCCATTCTCATTACCAATCTTCATGGGAAGGAGTTCCATTTGTTGGAGATAGTCGTTCATGGTTTCAATGCAGGCCCAATTTTCTTTCCAGCAGATACATGGATCCATTCACGGAATGATAATCCCGAAAGTAGGATTATCTTTACAAACAAAGTATACCTACCATCACAAACACCGACAGGCATCAAAGATCTTAGACGCGAAGACTTGTTGAGCGTGCGTGGTAATGGGAAAGGCGAGAGAAAGCCTCATGAAAGAATTTATGACTATGCTCCTTATAATGATCTTGGTAAGCCTGATAAGGACAAAGAGCTTGCCCGACCAGTTTTGACTGGTGCGGAATGGCCTTATCCTAGGCGATGTAGAACTGGCCGCCCACCAACCAACAATGACCCTCGTTCCGAAAGTAGAATTGAGAAGCCACATCCAGTGTATGTACCTCGGGATGAAACATTTGAGGAGATTAAGCAGAACACTTTCTCTGCAGGCAGATTGAAAGCTTTGCTTCACAATCTTGTACCATCTATTATTGCAACACTGTCAAGTTCAGACGTACCCTTCACATGCTTCTCAGATATTGACAAACTATATAAAGTCGGCGTTCTCTTGAAAGATGAAGAACAACATGGAATGTTTAGTAATCCACTTTTCGGTGATGTCTTGAAACAAGTCCTGAGTGTCGGTGAAAAATTGTTAAAATATGAAATTCCGGCTGTTATAAAAAGAGATAGATTTGCATGGTTGCGTGATAATGAATTTGCACGTCAGACATTTTCTGGAGTCAATCCAGTGAACATTGAGCTCCTAAGGGGCTTTCCAATCCTCAGCAGTCTAGACCCTGCCATTTATGGTTCACCCGAGTCAGCAATTACAAAGGAGCTGATAGGGCAAGAAATCCATGGAATGAGTGTAGAAAAGGCTATTGAGGAAAAGAGATTGTTTATACTCGATTACCATGATACGCTTCTGCCATTTATGGAGAGAATGAACTCCCTGCCAGGAAGAAAAGCGTATGCCTCTAGGACAGTTTTCTTCTATACACAAAAAGGTTTTCTAAGGCCAATAGCCATTGAGCTTTCGCTTCCTCCTACATTTTCTTCACTTCGGAACAAAAGTGTTTTTACACACGGGCATGATCCTACGGAGCATTGGATTTGGAAGCTAGCCAAAGCTCATGTTTGCTCAAATGATGCTGGAATACATCAACTTGTAAATCATTGGTAA
Protein:  
MKLTPREVEKLGLHNAGYLAQKRLARGLRLNYIEAVALIATQILEFVRDGNKTVAELMDVGKQLLGRRQVLPAVPYLLDSVQVEGTFPDGTKLVTIHDAIASENGNLELAFHGSFLPVPSLELFSGMEDIEIPGQIIFQKREIVLNPRRKAVILKVANHGDRPVQVGSHYHFIEVNPFLVFDRRKSYGMRLNIPAGTATRFEPGETKSVVLVSIGGNRVIRGGNGMADGPVNDARCTTVIEAVNRTVFKNPEEADAREGVCGEDSAFTTTMSPETYASIYGPSKGDKIRLGDTDLYAEIEKDFAVYGDESVFGGGKVIRDGMGQSSGRLPADSLDTVITNAVIIDYSGIYKADIGIKGDLIVGLGKSGTPDVMEGVNLDMIIGVNTEVIAGEGMIVTAGAIDCHVHFICPQLVYEAISSGITTLVGGGTGPADGTRATTCTPAPSHIKLMLQATDDMPLNFGFTGKGNGSKPDELHEIIKSGAMGLKLHEDWGTTPAVIDNCLAVAEEYDVQVNIHTDTLNESGFVEHTIAAFKGRTIHTYHSEGAGGGHAPDIIKVCGVKNVLPSSTNPTRPYTSNTIDEHLDMLMVCHHLDKDIPEDVAFAESRIRAETIAAEDILHDMGAISIIASDSQAMGRIGEVISRTWQTAHKMKTQRGSIHPSEADNDNLRIKRYIAKYTINPAIANGFSQFVGSIEVGKLADLVLWKPSFFAAKPEMVIKGGVIAWANMGDPNASIPTPEPVISRPMFGAFGKAGSSHSIAFVAANNGVKALYELSKRVEPVGNVRKLTKLDMKLNDALPDIQVDPETYTVTANEANAFRVIAHSLASVSTRNEAKLRTFQNDTVFVIANYATVLYLVNITSTFICGTCIDSERLTGKMYALKPITRELASSAVRQSPAITVAGRSRSLWRSQVPGSRSRVNSGCSVRAVISREDKVVDSAKSVETENHNGPLLSSSSSKGAGIDVRAVITIKKKMKEKITEKIEDQWEFFINGIGQGILMQLISEEIDPVTNSGKSVESCVRGWLPRHPKQSHIVEYAADFTVPHDFGTPGAILITNLHGKEFHLLEIVVHGFNAGPIFFPADTWIHSRNDNPESRIIFTNKVYLPSQTPTGIKDLRREDLLSVRGNGKGERKPHERIYDYAPYNDLGKPDKDKELARPVLTGAEWPYPRRCRTGRPPTNNDPRSESRIEKPHPVYVPRDETFEEIKQNTFSAGRLKALLHNLVPSIIATLSSSDVPFTCFSDIDKLYKVGVLLKDEEQHGMFSNPLFGDVLKQVLSVGEKLLKYEIPAVIKRDRFAWLRDNEFARQTFSGVNPVNIELLRGFPILSSLDPAIYGSPESAITKELIGQEIHGMSVEKAIEEKRLFILDYHDTLLPFMERMNSLPGRKAYASRTVFFYTQKGFLRPIAIELSLPPTFSSLRNKSVFTHGHDPTEHWIWKLAKAHVCSNDAGIHQLVNHW