CDS

Accession Number TCMCG081C32183
gbkey CDS
Protein Id XP_002280824.1
Location complement(join(2692406..2692519,2695232..2695543,2695637..2695861,2695957..2696115,2696247..2696350,2696443..2696560,2696705..2696793,2697219..2697294,2697983..2698450))
Gene LOC100259544
GeneID 100259544
Organism Vitis vinifera

Protein

Length 554aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA33471
db_source XM_002280788.3
Definition PREDICTED: ATP synthase subunit beta, mitochondrial [Vitis vinifera]

EGGNOG-MAPPER Annotation

COG_category C
Description Produces ATP from ADP in the presence of a proton gradient across the membrane
KEGG_TC 3.A.2.1
KEGG_Module M00158        [VIEW IN KEGG]
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko00002        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K02133        [VIEW IN KEGG]
EC 3.6.3.14        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00190        [VIEW IN KEGG]
ko01100        [VIEW IN KEGG]
ko04714        [VIEW IN KEGG]
ko05010        [VIEW IN KEGG]
ko05012        [VIEW IN KEGG]
ko05016        [VIEW IN KEGG]
map00190        [VIEW IN KEGG]
map01100        [VIEW IN KEGG]
map04714        [VIEW IN KEGG]
map05010        [VIEW IN KEGG]
map05012        [VIEW IN KEGG]
map05016        [VIEW IN KEGG]
GOs -

Sequence

CDS:  
ATGGCTTCTCGAAAGCTTCTCTCATCTCTTCTCCGGACCTCCGTCCGCCGTCCGATCTCCAGGTCCGTACTCTCCAACCCTAGATCTCCACTCCCTCGTCCTTCTCCTGTCGGCCACCTCCTCGCCCGCGCGGCTAACTATGCCAGCTCCGCCTCCGCCGCCGCTCCTGCGGCCTCAACTCCCTCTGCCGCCAAGGGGGCTGGTCCCAGCGGCAAGATTACAGACGAGTTCACAGGCGCTGGAGCCATCGGGCAGGTGTGCCAGGTGATCGGAGCCGTCGTGGATGTTAGATTCGATGAAGGTTTGCCTCCGATCTTGACGGCACTGGAGGTTCTGGACAATTCGATCCGGTTGGTTCTGGAGGTCGCTCAGCATTTGGGAGAGAACATGGTGAGGACGATCGCTATGGACGGTACGGAAGGGCTTGTCAGAGGACAGAGAGTCCTCAACACTGGTTCTCCTATCACTGTTCCTGTGGGTAGGGCAACCCTTGGACGGATCATAAATGTTATTGGAGAGCCTATTGATGAGAGGGGTGACATAAAAACTGATCACTTTCTGCCTATCCATCGAGAAGCTCCATCCTTTGTTGATCAGGCTACTGAACAACAGATTCTTGTTACTGGAATTAAGGTTGTCGATCTTCTTGCACCATATCAAAGAGGTGGAAAGATTGGGCTCTTTGGTGGTGCTGGTGTAGGGAAAACTGTTCTTATTATGGAACTTATTAACAATGTTGCTAAAGCTCATGGTGGTTTCTCTGTCTTTGCTGGTGTGGGAGAACGCACTCGTGAGGGGAATGATTTGTACAGAGAAATGATCGAAAGTGGTGTCATTAAGCTTGGCGAGAAGCAGAGTGAAAGCAAGTGTGCACTTGTGTACGGTCAAATGAATGAGCCTCCTGGTGCTCGTGCTCGTGTTGGGCTTACTGGTCTTACTGTGGCTGAGCACTTCCGTGATGCTGAAGGGCAAGATGTGCTCCTCTTTATTGATAACATTTTCCGCTTTACCCAAGCAAACTCAGAGGTGTCTGCTTTGCTTGGTCGTATCCCATCTGCTGTTGGTTATCAGCCTACCTTGGCTACAGATCTTGGAGGTCTTCAGGAGCGTATTACCACAACCAAGAAAGGTTCCATCACATCTGTCCAAGCTATTTATGTGCCTGCTGATGACTTGACAGATCCAGCTCCAGCAACCACTTTTGCCCATCTTGATGCCACAACAGTGTTGTCTCGTCAGATTTCTGAGCTTGGTATTTATCCTGCTGTTGACCCCTTGGATTCCACATCTCGCATGCTCTCCCCCCATATTTTAGGAGAAGAGCATTATAACACTGCTCGTGGCGTTCAGAAGGTTCTCCAGAACTATAAGAATCTTCAAGATATTATTGCCATTTTGGGAATGGATGAGCTTAGTGAAGATGACAAGTTGACTGTTGCTCGTGCTCGTAAAATTCAAAGGTTCTTGAGCCAGCCTTTCCATGTTGCTGAAGTGTTCACGGGAGCCCCTGGAAAATACGTAGAACTAAAAGAGAGCATTACCAGTTTCCAAGGTGTCTTGGATGGAAAATACGATGATCTTTCTGAGCAATCTTTCTACATGGTTGGTGGAATTGAAGAAGTTATTGCCAAGGCCGAGAAAATTGCCAAGGAGTCAGCTGCTTAA
Protein:  
MASRKLLSSLLRTSVRRPISRSVLSNPRSPLPRPSPVGHLLARAANYASSASAAAPAASTPSAAKGAGPSGKITDEFTGAGAIGQVCQVIGAVVDVRFDEGLPPILTALEVLDNSIRLVLEVAQHLGENMVRTIAMDGTEGLVRGQRVLNTGSPITVPVGRATLGRIINVIGEPIDERGDIKTDHFLPIHREAPSFVDQATEQQILVTGIKVVDLLAPYQRGGKIGLFGGAGVGKTVLIMELINNVAKAHGGFSVFAGVGERTREGNDLYREMIESGVIKLGEKQSESKCALVYGQMNEPPGARARVGLTGLTVAEHFRDAEGQDVLLFIDNIFRFTQANSEVSALLGRIPSAVGYQPTLATDLGGLQERITTTKKGSITSVQAIYVPADDLTDPAPATTFAHLDATTVLSRQISELGIYPAVDPLDSTSRMLSPHILGEEHYNTARGVQKVLQNYKNLQDIIAILGMDELSEDDKLTVARARKIQRFLSQPFHVAEVFTGAPGKYVELKESITSFQGVLDGKYDDLSEQSFYMVGGIEEVIAKAEKIAKESAA