Adi_g107288 (AHA10)


Aliases : AHA10

Description : P3A-type proton-translocating ATPase *(AHA) & original description: none


Gene families : No families found for this sequence

Sequence : coding (download), protein (download)


Note:Only the main profile, including all conditions, is shown. Additional statistics and tissue specific profiles are available here.


Type Description Actions
Neighborhood HRR: Adi_g107288
Cluster HCCA: Cluster_58


Type GO Term Name Evidence Source

No GO annotation available for this sequence

Type GO Term Name Evidence Source
MF GO:0000166 nucleotide binding IEP HCCA
MF GO:0003674 molecular_function IEP HCCA
MF GO:0003824 catalytic activity IEP HCCA
MF GO:0004017 adenylate kinase activity IEP HCCA
MF GO:0004616 phosphogluconate dehydrogenase (decarboxylating) activity IEP HCCA
MF GO:0004834 tryptophan synthase activity IEP HCCA
BP GO:0006091 generation of precursor metabolites and energy IEP HCCA
BP GO:0006098 pentose-phosphate shunt IEP HCCA
BP GO:0006520 amino acid metabolic process IEP HCCA
BP GO:0006568 tryptophan metabolic process IEP HCCA
BP GO:0006576 biogenic amine metabolic process IEP HCCA
BP GO:0006586 indolalkylamine metabolic process IEP HCCA
BP GO:0006725 cellular aromatic compound metabolic process IEP HCCA
BP GO:0006739 NADP metabolic process IEP HCCA
BP GO:0006740 NADPH regeneration IEP HCCA
BP GO:0006793 phosphorus metabolic process IEP HCCA
BP GO:0006796 phosphate-containing compound metabolic process IEP HCCA
MF GO:0008483 transaminase activity IEP HCCA
BP GO:0009072 aromatic amino acid metabolic process IEP HCCA
BP GO:0009308 amine metabolic process IEP HCCA
MF GO:0009916 alternative oxidase activity IEP HCCA
MF GO:0016301 kinase activity IEP HCCA
MF GO:0016491 oxidoreductase activity IEP HCCA
MF GO:0016614 oxidoreductase activity, acting on CH-OH group of donors IEP HCCA
MF GO:0016616 oxidoreductase activity, acting on the CH-OH group of donors, NAD or NADP as acceptor IEP HCCA
MF GO:0016667 oxidoreductase activity, acting on a sulfur group of donors IEP HCCA
MF GO:0016671 oxidoreductase activity, acting on a sulfur group of donors, disulfide as acceptor IEP HCCA
MF GO:0016679 oxidoreductase activity, acting on diphenols and related substances as donors IEP HCCA
MF GO:0016682 oxidoreductase activity, acting on diphenols and related substances as donors, oxygen as acceptor IEP HCCA
MF GO:0016740 transferase activity IEP HCCA
MF GO:0016769 transferase activity, transferring nitrogenous groups IEP HCCA
MF GO:0016772 transferase activity, transferring phosphorus-containing groups IEP HCCA
MF GO:0016776 phosphotransferase activity, phosphate group as acceptor IEP HCCA
MF GO:0016835 carbon-oxygen lyase activity IEP HCCA
MF GO:0016836 hydro-lyase activity IEP HCCA
MF GO:0017076 purine nucleotide binding IEP HCCA
MF GO:0019205 nucleobase-containing compound kinase activity IEP HCCA
BP GO:0019362 pyridine nucleotide metabolic process IEP HCCA
MF GO:0019842 vitamin binding IEP HCCA
MF GO:0030170 pyridoxal phosphate binding IEP HCCA
MF GO:0033743 peptide-methionine (R)-S-oxide reductase activity IEP HCCA
MF GO:0036094 small molecule binding IEP HCCA
BP GO:0042430 indole-containing compound metabolic process IEP HCCA
MF GO:0043168 anion binding IEP HCCA
BP GO:0044281 small molecule metabolic process IEP HCCA
BP GO:0046483 heterocycle metabolic process IEP HCCA
BP GO:0046496 nicotinamide nucleotide metabolic process IEP HCCA
MF GO:0050145 nucleoside monophosphate kinase activity IEP HCCA
MF GO:0050661 NADP binding IEP HCCA
BP GO:0051156 glucose 6-phosphate metabolic process IEP HCCA
MF GO:0070279 vitamin B6 binding IEP HCCA
BP GO:0072524 pyridine-containing compound metabolic process IEP HCCA
MF GO:0097159 organic cyclic compound binding IEP HCCA
MF GO:1901265 nucleoside phosphate binding IEP HCCA
BP GO:1901360 organic cyclic compound metabolic process IEP HCCA
MF GO:1901363 heterocyclic compound binding IEP HCCA
BP GO:1901605 alpha-amino acid metabolic process IEP HCCA
InterPro domains Description Start Stop
IPR004014 ATPase_P-typ_cation-transptr_N 95 150
No external refs found!