CDS

Accession Number TCMCG049C20139
gbkey CDS
Protein Id XP_034906873.1
Location join(1655852..1656629,1656727..1656979,1658536..1659343,1659980..1660104,1660530..1660614,1660893..1661058,1661155..1661195,1661301..1661571,1661803..1661926,1662136..1662496,1663031..1663390)
Gene LOC118043128
GeneID 118043128
Organism Populus alba

Protein

Length 1123aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA638679
db_source XM_035050982.1
Definition type II inositol polyphosphate 5-phosphatase 15-like isoform X2 [Populus alba]

EGGNOG-MAPPER Annotation

COG_category U
Description Type II inositol 1,4,5-trisphosphate 5-phosphatase
KEGG_TC -
KEGG_Module -
KEGG_Reaction R04404        [VIEW IN KEGG]
R09827        [VIEW IN KEGG]
KEGG_rclass RC00078        [VIEW IN KEGG]
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
ko04131        [VIEW IN KEGG]
KEGG_ko ko:K01099        [VIEW IN KEGG]
EC 3.1.3.36        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00562        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko04070        [VIEW IN KEGG]
map00562        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map04070        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGACCCAAACGACGACGTTTTCTTCTCCGTTCACTCTCCATCTTCTCAAATCAACAACAACGATGATTCTTCTTTGTCTTCACCTCCGGTCCGAACGCCCAAGATATTCGACCGTTACATTTCCTCCTCAATCTCATCACCATCCTCATCCGACTACGAGGACGATTTGCAGCCCTCCAACTCCATCTCCTCCTTGGAAGCCTCCAATAAACGCCTCGATTACATGATCCAATTCCTCGACCGCAAACTCTCCAACAACACCACAACCAATACCTCAAACAACGACAGTGTTTCCCACACACACAAAACTCTCGGTTTACCCGAATTCATCGGCAAAGGAGGAGGAGCCGGAATTTTCCGTGTCCCGGTTCGAGCTGCGGTTCACCCATACCGTCCACCGAGTCTCGAAATTCGGCCACATCCATTGAGAGAATCTCAAATTGGTCGGGTTTTGAAAACGATTGTAACCACCGAGAATCAACTATGGGGTGGGAGAGAAAACGGTGCCGTTCAGGTCTGGGAATTGAAGGAAATGTACGGTGGGAGTGATGAAGCGGCGCCGTGCAAGGAGTCTGTGGCTTTGACTTCGGGTTCCGGTGTTACGTGTTTGATTGGTGATGAAGGGAGTCGAGTTGTTTGGAGTGGGCATATAGATGGCAGAATCCGGTGTTGGAAAATGGATCCAGGTCCAGATTCGGATTCAAGTCGGGTCAAGGAGGTCTTGTCTTGGGTCGCACATCGTGGGCCAGTCATGTCCATGATCATGACTTGCTATGGGGATTTGTGGTCGGGATCGGAGGGGGGAGTTATTAAGATATGGCCATGGGAAGAGCTGGAAAAGGCCTTTTCATTCACAGCTGAAGAGAGGCACATGGCTGCATTGTTAGTGGAGAGGTCATTTATTGATCTAAGGAACCAAGTTACTGCGAATGGATTCAGCAATGTGTTGAACTCTGATGTTAAACACTTGCTTTCAGATAACTCTACGGCTAAAGTATGGAGTGCTGGGTTCTTGTCGTTTGCATTGTGGGATGCTCGCACAAGGGAGTTGCTGAAAATGTTTAATATAGATGGTCAGATTGAAAGACTGGACATGTTGTCAGGACAGGACCTTGCCTTTGAAGATGAGATCAAGATGAAAATTGTTTCTGGTTCAAAGAAAGAGAAAATGCAAACTTCATTTGGTTTCTTTCAGCGTTCACGCAATGCTATAATGGGAGCAGCTGATGCTGTTCGTCGAGTTGCTTCTAAAGGTGGCTTGGGAGATGATAATAGGAGAACCGAAGCGCTGATAATAACAAGAGATGGAATGATTTGGACTGGGTGTGCAAACGGCTCACTTGTGCAATGGGATGGAAATGGCAATCGTTTGCAATATTTCCACTATCATTCTGTGGCTGTTCAGTGCTTGTGTACATTTGGTTTGCGAATATGGGTTGGTTATGCAAGTGGTACTGTTCAGTTATTAGACCTTGAGGGTAATCTGCTTGGAGGATGGGTGGCACACAGCAGTCCAGTTGTAAAATTGGCTGTTGGAGCCGGCTATGTTTTCACCTTGGCTAATCATGGCGGTATACGCGGATGGAATGCTATGTCTCCAGGACCCCTTGACAATATGTTGCGTTCAGAGTTAGCTGGAAAAGAATTTTTGTATACAAGGATAGAGAATTTAAAAATATTGACTGGTACATGGAATGTAGCACAAGGAAAAGCTTCACAAGACTCACTTGTGTCCTGGTTAGGTTCTGCTGCTGGGGATGCTGGCATTGTTGTTGTTGGGTTGCAAGAAGTTGAAATGGGTGCTGGTGTGCTTGCAATGTCTGCAGCAAAGGAAACTGTTGGACTGGAGGGCAGTTCTGTCGGGCAGTGGTGGCTAGACATGATTGGCAAAACATTGGATGAAGGGTCAACGTTTGAACGTGTTGGTTCAAGGCAGCTCGCAGGCTTGCTGATTGCCATGTGGGTTAGAAATAGTCTTAAAGCTCATGTGGGGGATGTTGATGCTGCCGCAGTTCCATGTGGCTTTGGACGTGCAATTGGTAATAAGGGTGCTGTTGGTTTGAGGATTAGGGTATATGATCGGGTAATGTGCTTTGTTAATTGCCACTTTGCAGCACATTTAGAAGCGGTTAGTCGTCGGAATGCTGATTTTGACCATGTATATCGGACTATGACCTTTGGCCGACCATCTAATTTCTTCGGTGCTGCAGCCGCTGGCACTTCATCAGCAGCCCAAATGCTTCGCGGTGCAAATGTTATGGGTGCTAACTACTCCCCAGAAGGAATACCCGAGTTATCAGAGGCAGACATGGTTATATTTCTTGGTGATTTTAATTATCGGCTTGATGGTATATCTTATGATGAAGCAAGGGATTTTGTATCTCAGAGATCCTTTGATTGGCTTAGAGAAAAGGACCAACTCCGCACAGAAATGGGAGCTGGAAATGTGTTCCAAGGAATGCGTGAAGCAGTTATTAGATTTCCTCCCACATACAAGTTTGAAAAGCACCAACCTGGTTTAGCAGGGTATGATTCAGGTGAAAAGAAGCGCATCCCTGCCTGGTGTGACAGAGTGCTATATCGTGATAGCCGGTCAGCTCATGTATCTGAATGCAGCTTAGACTGTCCTGTTGTCTCTTTGATATCACAGTATGATGCCTGCATGGATGTGACCGACAGTGATCACAAACCTGTTCGTTGCATATTCAGTATTGATATTGCAAAAGTTGACGAGTCAGTGAGGAGACAAGAGTTTGGAGACATTATGAAATCAAATGAGGAAATTAGATACATAATTGATGAACTATGCAAGATTCCAGAAACCATTGTAAGCACGAACAACATAATCCTTCAAAACCAGGATACAACCATCTTGCGTATCACAAATAAATGCGGGGAAAATTATGCTTTGTTCGAAATTATTTGTGAAGGCCAGTCAATAGTTGATGAAGATGGACAAGCATCAGATCATCATCCAAGAGGTTCCTATGGCTTTCCCCAATGGCTTGAGGTCACTCCAGCTGCTGGCATAATCAAACCAGACCATACTGCTGAGGTGTCAATTCATCTTGAAGATTTCCCCACCGTGAAGGTTTTTGTTGATGGTGCCCCTCAGAATTCATGGTGTGAAGACACCAGGGACAAGGAAGCTATGTTGGTGGTGAAAGTTCAAGCTAGTTACAACACAAATGAGACCAAAACTCATCGGATTCGCGTGCGTCACTGCTGTTCATCACAAACAGCACAACTTGGCACAAGACCAAATGGCTCGGGGCAAATCCAAGGAAATCTTCTCCGCCGGGCTGATTACCAACATCTTAGCAGTTCCTATGACATGGTTAATCACCTGCGCAATTTGCACAGTCCATAA
Protein:  
MDPNDDVFFSVHSPSSQINNNDDSSLSSPPVRTPKIFDRYISSSISSPSSSDYEDDLQPSNSISSLEASNKRLDYMIQFLDRKLSNNTTTNTSNNDSVSHTHKTLGLPEFIGKGGGAGIFRVPVRAAVHPYRPPSLEIRPHPLRESQIGRVLKTIVTTENQLWGGRENGAVQVWELKEMYGGSDEAAPCKESVALTSGSGVTCLIGDEGSRVVWSGHIDGRIRCWKMDPGPDSDSSRVKEVLSWVAHRGPVMSMIMTCYGDLWSGSEGGVIKIWPWEELEKAFSFTAEERHMAALLVERSFIDLRNQVTANGFSNVLNSDVKHLLSDNSTAKVWSAGFLSFALWDARTRELLKMFNIDGQIERLDMLSGQDLAFEDEIKMKIVSGSKKEKMQTSFGFFQRSRNAIMGAADAVRRVASKGGLGDDNRRTEALIITRDGMIWTGCANGSLVQWDGNGNRLQYFHYHSVAVQCLCTFGLRIWVGYASGTVQLLDLEGNLLGGWVAHSSPVVKLAVGAGYVFTLANHGGIRGWNAMSPGPLDNMLRSELAGKEFLYTRIENLKILTGTWNVAQGKASQDSLVSWLGSAAGDAGIVVVGLQEVEMGAGVLAMSAAKETVGLEGSSVGQWWLDMIGKTLDEGSTFERVGSRQLAGLLIAMWVRNSLKAHVGDVDAAAVPCGFGRAIGNKGAVGLRIRVYDRVMCFVNCHFAAHLEAVSRRNADFDHVYRTMTFGRPSNFFGAAAAGTSSAAQMLRGANVMGANYSPEGIPELSEADMVIFLGDFNYRLDGISYDEARDFVSQRSFDWLREKDQLRTEMGAGNVFQGMREAVIRFPPTYKFEKHQPGLAGYDSGEKKRIPAWCDRVLYRDSRSAHVSECSLDCPVVSLISQYDACMDVTDSDHKPVRCIFSIDIAKVDESVRRQEFGDIMKSNEEIRYIIDELCKIPETIVSTNNIILQNQDTTILRITNKCGENYALFEIICEGQSIVDEDGQASDHHPRGSYGFPQWLEVTPAAGIIKPDHTAEVSIHLEDFPTVKVFVDGAPQNSWCEDTRDKEAMLVVKVQASYNTNETKTHRIRVRHCCSSQTAQLGTRPNGSGQIQGNLLRRADYQHLSSSYDMVNHLRNLHSP