CDS

Accession Number TCMCG037C14134
gbkey CDS
Protein Id XP_022143027.1
Location complement(join(985293..985389,985586..985761,985873..986055,986157..986330,986439..986953,987054..987363,987453..987557,987636..987758,987875..987994,988082..988408,988489..988803,988903..989040,989748..989966,990058..990105))
Gene LOC111013016
GeneID 111013016
Organism Momordica charantia

Protein

Length 949aa
Molecule type protein
Topology linear
Data_file_division PLN
dblink BioProject:PRJNA397875
db_source XM_022287335.1
Definition ATPase 8, plasma membrane-type isoform X1 [Momordica charantia]

EGGNOG-MAPPER Annotation

COG_category P
Description ATPase 8, plasma
KEGG_TC 3.A.3.3
KEGG_Module -
KEGG_Reaction -
KEGG_rclass -
BRITE ko00000        [VIEW IN KEGG]
ko00001        [VIEW IN KEGG]
ko01000        [VIEW IN KEGG]
KEGG_ko ko:K01535        [VIEW IN KEGG]
EC 3.6.3.6        [VIEW IN KEGG]        [VIEW IN INGREDIENT]
KEGG_Pathway ko00190        [VIEW IN KEGG]
map00190        [VIEW IN KEGG]
GOs GO:0005575        [VIEW IN EMBL-EBI]
GO:0005623        [VIEW IN EMBL-EBI]
GO:0005886        [VIEW IN EMBL-EBI]
GO:0016020        [VIEW IN EMBL-EBI]
GO:0044464        [VIEW IN EMBL-EBI]
GO:0071944        [VIEW IN EMBL-EBI]

Sequence

CDS:  
ATGGCCGACATTTCCTTGGAAGATGTTAGAAATGAGAATGTTGATCTGGAGAGGATTCCGATTGAGGAGGTTTTTGAGCAGCTGAAATGTACCAAAAATGGTTTGTCATCTGAGGAAGGGGAAAAGAGGCTCCAAATCTTTGGCCCTAACAAACTTGAGGAGAAAAAAGAGAGCAAATTCCTCAAGTTCTTGGGCTTCATGTGGAATCCCCTATCATGGGTCATGGAGTCTGCTGCTATCATGGCTATTGTCTTGGCCAATGGAGGGGGAAAGCCTCCTGACTGGCAAGATTTCGTCGGAATAGTGGTGTTGCTCATTATCAACTCCACCATTAGCTTCATTGAAGAGAACAATGCAGGTAATGCAGCTGCTGCTCTAATGGCAGGTCTTGCTCCCAAAACCAAGGTTTTGAGAGATGGAAAATGGAGTGAGGAAGAGGCAGCTATTTTAGTACCAGGAGACTTGATCAGCATCAAGTTGGGGGATATTGTCCCTGCTGATGCCAGACTCCTGGAAGGAGATCCTCTTAAGATTGACCAATCTGCTCTCACCGGCGAATCCTTGCCCGTTACCAAGCACCCGGGCGACGAGGTATTCTCCGGCTCAACTTGTAAACAAGGAGAAATTGAGGCTGTTGTCATTGCCACCGGTGTCCACACCTTCTTCGGCAAGGCCGCTCATCTTGTTGATAGTACCAACCAAGTTGGCCATTTCCAAAAGGTGCTGACAGCCATTGGTAACTTCTGCATCTGCTCCATTGCCATAGGAATGCTTATTGAGATCATAGTGATGTACCCAATCCAGAACAGGGCATATAGAGAGGGCATTGACAACCTGCTGGTTCTTCTCATTGGTGGCATTCCCATTGCCATGCCCACGGTGTTGTCAGTCACCATGGCGATCGGTTCTCACCGCCTAGCGGAACAAGGTGCTATAACAAAAAGAATGACTGCCATTGAAGAGATGGCAGGAATGGATGTACTATGCAGTGACAAAACTGGGACTCTCACCCTCAACAAGCTTACAGTGGACAAAAGTCTGATTGAAGTATTTTCAAAGGGTGCTGATCCAGACACCTTGCTCCTGCTGGCTGCAAGAGCTTCCAGAGTTGAGAACCAGGATGCTATTGATGCATCGATTGTCGGGATGTTGGGTGATTCTAAGGAGGCCAGAGCAGGGATCACTGAGGTGCATTTCCTGCCTTTCAATCCTGTTGAGAAACGCACTGCCATCACCTACATTGACAGTAATGGAAACTGGCATAGAAGTAGCAAGGGTGCTCCTGAGCAGATCATTGACCTTTGTAACCTCAAAGGGGAGATAAGGAAGAAGGCTCATGATATAATCGCCAATTATGCAGATCGTGGTCTCCGTTCTCTAGCTGTTTCTCGCCAGACTGTTCTAGAGAAAACCAAAGAGAGTGCTGGAGAGCCATGGGACTTTGTGGGCTTGTTGCCTCTCTTTGATCCTCCAAGGCATGATAGTGCAGAGACTATTCGTCGAGCTCTCGAACTTGGGGTGAATGTTAAGATGATCACTGGTGATCAATTGGCCATTGGGAAAGAGACCGGTCGCAGGCTCGGGATGGGCACCAATATGTATCCATCATCTTCCTTACTTGGTCAGAGCAAGGATGAATCCATTGCCAGCCTTCCTGTAGATGAACTTATTGAGAAGGCTGACGGATTTGCTGGTGTCTTCCCAGAACACAAATATGAAATTGTTAAAAAGCTTCAAGAGAGGAAGCACATTTGCGGGATGACTGGTGATGGTGTAAACGATGCCCCTGCACTCAAGAAGGCCGACATTGGAATTGCTGTGGCTGATGCAACTGATGCAGCAAGGGGTGCATCCGACATTGTTTTAACAGAACCGGGTCTCAGTGTGATCGTGAGTGCGGTCTTAACAAGCAGGGCCATCTTTCAACGGATGAAGAACTACACAATCTATGCAGTTTCCATCACAATCCGTATCGTGTTGGGATTCATGCTTGTAGCTCTAATCTGGAAGTTCGACTTCTCACCTTTCATGGTCTTGATTATTGCCATTTTGAATGATGGAACCATCATGACCATCTCAAAGGATAGAGTGAAGCCATCTCCCATGCCTGATTCTTGGAAGCTAAACGAAATTTTTGCCACTGGTGTTGTCCTCGGAACGTACATGGCGATCATGACCGTGGTCTTCTTCTGGCTCGCACATGAGACTGATTTCTTCCCAGAAACATTTGGGGTAAAGCCAATCAGTGATAATTTGACTGAGCTTAACTCTGCTCTTTACCTCCAAGTGAGCATCATCAGTCAAGCCCTCATCTTCGTGACAAGGTCAAGGAGCTGGTCCTTTGTCGAACGCCCCGGTCTTTTGCTAGTCGGAGCATTCCTAATAGCTCAGCTGTTGGCAACTGTAATTGCCGTGTATGCTGAATGGGACTTTGCTAGAATTCACGGCATCGGTTGGGGATGGGCAGGAGTGATCTGGATTTATAGCATCATCACTTACTTCCCCCTTGATGTCCTCAAGTTCATCATCCGCTACGGATTGAGCGGGAAGGCATGGGATAATATGCTTCAAAACAAGACTGCATTTACAACTAAGAAGGATTATGGAAAGGGAGAGAGGGAGGCACAGTGGGCATTGGCCCAACGTTCGCTTCATGGCTTACAGCAACCGGAAGCCCTATTTAGCGACAGTAGTAGCTACCGAGAGCTGTCCGAGATCGCAGAACAGGCAAAGAGAAGAGCTGAAGTTGCCAGGCTGAAAGAGCTGTTCACTCTGAAGGGTCATGTTGAATCAGTGATGAAGCTGAAAGGCCTGGATACTGAAACCATACAGCAACACTATACACTTTAA
Protein:  
MADISLEDVRNENVDLERIPIEEVFEQLKCTKNGLSSEEGEKRLQIFGPNKLEEKKESKFLKFLGFMWNPLSWVMESAAIMAIVLANGGGKPPDWQDFVGIVVLLIINSTISFIEENNAGNAAAALMAGLAPKTKVLRDGKWSEEEAAILVPGDLISIKLGDIVPADARLLEGDPLKIDQSALTGESLPVTKHPGDEVFSGSTCKQGEIEAVVIATGVHTFFGKAAHLVDSTNQVGHFQKVLTAIGNFCICSIAIGMLIEIIVMYPIQNRAYREGIDNLLVLLIGGIPIAMPTVLSVTMAIGSHRLAEQGAITKRMTAIEEMAGMDVLCSDKTGTLTLNKLTVDKSLIEVFSKGADPDTLLLLAARASRVENQDAIDASIVGMLGDSKEARAGITEVHFLPFNPVEKRTAITYIDSNGNWHRSSKGAPEQIIDLCNLKGEIRKKAHDIIANYADRGLRSLAVSRQTVLEKTKESAGEPWDFVGLLPLFDPPRHDSAETIRRALELGVNVKMITGDQLAIGKETGRRLGMGTNMYPSSSLLGQSKDESIASLPVDELIEKADGFAGVFPEHKYEIVKKLQERKHICGMTGDGVNDAPALKKADIGIAVADATDAARGASDIVLTEPGLSVIVSAVLTSRAIFQRMKNYTIYAVSITIRIVLGFMLVALIWKFDFSPFMVLIIAILNDGTIMTISKDRVKPSPMPDSWKLNEIFATGVVLGTYMAIMTVVFFWLAHETDFFPETFGVKPISDNLTELNSALYLQVSIISQALIFVTRSRSWSFVERPGLLLVGAFLIAQLLATVIAVYAEWDFARIHGIGWGWAGVIWIYSIITYFPLDVLKFIIRYGLSGKAWDNMLQNKTAFTTKKDYGKGEREAQWALAQRSLHGLQQPEALFSDSSSYRELSEIAEQAKRRAEVARLKELFTLKGHVESVMKLKGLDTETIQQHYTL