CDS

Accession Number TCMCG081C08146
gbkey CDS
Protein Id XP_019075820.1
Location join(3932053..3932340,3932449..3932625,3932897..3933184,3933316..3933438,3933581..3933778,3933962..3934215,3934412..3934616,3934790..3935095,3935203..3935511)
Gene LOC100263026
GeneID 100263026
Organism Vitis vinifera

Protein

Length 715aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA33471
db_source XM_019220275.1
Definition PREDICTED: uncharacterized protein LOC100263026 isoform X2 [Vitis vinifera]

EGGNOG-MAPPER Annotation

COG_category F
Description inosine-uridine preferring nucleoside hydrolase
KEGG_TC -
KEGG_Module M00427        [VIEW IN KEGG]
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko03019        [VIEW IN KEGG]
KEGG_ko ko:K14319        [VIEW IN KEGG]
EC -
KEGG_Pathway ko03013        [VIEW IN KEGG]
map03013        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGATTGACACTATATCTTCAGGCCCCATTAATGTATTTGTTATAGGAGGACATACAAATTTTGCCATTTTTCTTATGAATAATCCACATCTAAAGAAAAATATCAAGCACATTTATGTCATGGGTGGCGGCGTAAGGTCAAAGAATCCAACTGGTTGTTGCCCAAAAAATGCCAGTTCAACGTGCAAGCCTCGACAGTGTGGTGACCCTGGTAATTTGTTCACGGGCTACACTAGTAATCCATATGCAGAATTCAATATTTTTGGAGACCCGTTTGCTGCATACCTGGTACTGCATTCTGGAATTCCACTCACCCTTGTTCCCCTGGATGCAACAAACACCATCCCCATAGACGAGGAATTTTTTGATGCATTTGATCAGAACCAGAAAACATATGAGGCACAATATTGCTTCAAATCCTTGAAAATGACTCGAGATACTTGGTTTGATGACCAATACTACACGAGCTATTTCATGTGGGACTCCTTTACATCAGGTATAGCAACCTCAATCATGCGTCACTCACAGAAGAACCATCATGGGGAAAATGAGTTTGCTGAAATGGAGTATATGAACATTACTGTTGTTACTTCAAACAAACCTTATGGAATATCTGATGGCTCAAATCCTTTCTTTGATGGCCTCAAAATTCCCAAGTTCAATCTAAAGAAAGGCGGAGTGCATAGTGGACATGTCCAGAAGAGTCTTCAAGACCCATTTTGCCTTACAGAAAATGGGAAAGGGAGATGTAAGGATGGTTATACAATGGAGGTAACCGGTCCAGAAGGGGTGCGTGTTCTTGTTGCTACAAAAGCAAAACCTAACCAGGATGCTAAAAGTCCACTTGAAAGAGAATTTTATAAGAGCTTTTTGGATGTTCTAAACAGCCCTGAGCAAAGTGGGAGGTTTAATTTTACAAACCAATTTCCTTATTTCAAAGAAGTTTTCTATAAACCAGATTTTGGAAAAAAGAAACTGGGGAAAAATGTCATCTTTGATATGGATATGAGTGCGGGAGATTTTCTAGCTTTGTTCTTTCTACTAAAAGTGCCAGTTGAAGTGATCAACCTCAAGGCAATTTTAGTAAGTCCAACTGGCTGGGCAAATGCTGCAACCATAGATATAATCTATGATTTACTGCATATGATGGGGCGTGATGACATTCCTGTTGGTCTAGGAGACGTATATGCAATGAACCAGTCTGATCCAATCTTCTCTTCTGTTGGAGACTGCAAGTATGTCAAGGCCATCCCACATGGCAGTGGCGGATTTCTAGACTCTGATACTCTCTATGGGTTTGCTCGTCATTTGCCCAGAAGCCCAAGAAGGTACACTGCAGAGAACTCTGTAAAATTTGGAGCTCCTCGAGATACTGATCACCCTGAACTCAGACAACCACTAGCATTGGACGTATGGGATTCTGTATTGAAAACACTAGATTCAGGATCCAAGATTACCATATTGACAAATGGACCCCTGACTACGTTAGCGAATATTATTCTCTCGAGGAAAAACACTACCTCTCTTATTCAGGATGTGTATGTAGTTGGAGGGCACATCAGCCATGGTGGCACAATGAAAGGAAATGTCTTCTCTGTTCCTTTAAATGAACATGCAGAACTGAACTTGTATCTTGACCCTTTTGCTGCAAAGACTGTGTTCGAATCTGATCTTGACATAAAGCTCATCCCACTTAGAGCCCAGCGTAGAGTGAGTTCGTTTCCTAAGATTATAGAAAGGTTGTGCCAGACCAAGAAGACACCTGAAGCTCTGTTTGCTCGTCGTTTGCTGTCAACGCTGCACCATTTGCAAGAAAAGCATCATAGATATCGACATATGCATACATTCTTGGGGGAAATTCTTGGTGCAGTAGTCTTGGCTGATGACCATTCTTTCCTGAATGCTACCTTTAAGTCAAAGCCCATCAAACTCTATGCAACTGGAGATGAATCCATGGATGGGCAACTTGCTATAGATGAAAAACAAGGTAAATTAGTCAAACTATTGAGAAGGGTGAACCCGAAGGCGTATTATGATCTCCTTGCAAATCGACTTGGTGATAAAAAGCAGTCTGCTGTGATAGCAAGCTTTGAAGAACAGAAAAGAATTTGGACTACACCTCCAAATCGAACTGAAACCAGTAGTTGA
Protein:  
MIDTISSGPINVFVIGGHTNFAIFLMNNPHLKKNIKHIYVMGGGVRSKNPTGCCPKNASSTCKPRQCGDPGNLFTGYTSNPYAEFNIFGDPFAAYLVLHSGIPLTLVPLDATNTIPIDEEFFDAFDQNQKTYEAQYCFKSLKMTRDTWFDDQYYTSYFMWDSFTSGIATSIMRHSQKNHHGENEFAEMEYMNITVVTSNKPYGISDGSNPFFDGLKIPKFNLKKGGVHSGHVQKSLQDPFCLTENGKGRCKDGYTMEVTGPEGVRVLVATKAKPNQDAKSPLEREFYKSFLDVLNSPEQSGRFNFTNQFPYFKEVFYKPDFGKKKLGKNVIFDMDMSAGDFLALFFLLKVPVEVINLKAILVSPTGWANAATIDIIYDLLHMMGRDDIPVGLGDVYAMNQSDPIFSSVGDCKYVKAIPHGSGGFLDSDTLYGFARHLPRSPRRYTAENSVKFGAPRDTDHPELRQPLALDVWDSVLKTLDSGSKITILTNGPLTTLANIILSRKNTTSLIQDVYVVGGHISHGGTMKGNVFSVPLNEHAELNLYLDPFAAKTVFESDLDIKLIPLRAQRRVSSFPKIIERLCQTKKTPEALFARRLLSTLHHLQEKHHRYRHMHTFLGEILGAVVLADDHSFLNATFKSKPIKLYATGDESMDGQLAIDEKQGKLVKLLRRVNPKAYYDLLANRLGDKKQSAVIASFEEQKRIWTTPPNRTETSS