ATP6_CYPCA
ID ATP6_CYPCA Reviewed; 227 AA.
AC P24946;
DT 01-MAR-1992, integrated into UniProtKB/Swiss-Prot.
DT 01-MAR-1992, sequence version 1.
DT 03-AUG-2022, entry version 104.
DE RecName: Full=ATP synthase subunit a;
DE AltName: Full=F-ATPase protein 6;
GN Name=mt-atp6; Synonyms=atp6, atpase6, mtatp6;
OS Cyprinus carpio (Common carp).
OG Mitochondrion.
OC Eukaryota; Metazoa; Chordata; Craniata; Vertebrata; Euteleostomi;
OC Actinopterygii; Neopterygii; Teleostei; Ostariophysi; Cypriniformes;
OC Cyprinidae; Cyprininae; Cyprinus.
OX NCBI_TaxID=7962;
RN [1]
RP NUCLEOTIDE SEQUENCE [GENOMIC DNA].
RX PubMed=8169959; DOI=10.1007/bf00166161;
RA Chang Y.S., Huang F.L., Lo T.B.;
RT "The complete nucleotide sequence and gene organization of carp (Cyprinus
RT carpio) mitochondrial genome.";
RL J. Mol. Evol. 38:138-155(1994).
CC -!- FUNCTION: Mitochondrial membrane ATP synthase (F(1)F(0) ATP synthase or
CC Complex V) produces ATP from ADP in the presence of a proton gradient
CC across the membrane which is generated by electron transport complexes
CC of the respiratory chain. F-type ATPases consist of two structural
CC domains, F(1) - containing the extramembraneous catalytic core and F(0)
CC - containing the membrane proton channel, linked together by a central
CC stalk and a peripheral stalk. During catalysis, ATP synthesis in the
CC catalytic domain of F(1) is coupled via a rotary mechanism of the
CC central stalk subunits to proton translocation. Key component of the
CC proton channel; it may play a direct role in the translocation of
CC protons across the membrane.
CC -!- SUBUNIT: F-type ATPases have 2 components, CF(1) - the catalytic core
CC - and CF(0) - the membrane proton channel. CF(1) has five subunits:
CC alpha(3), beta(3), gamma(1), delta(1), epsilon(1). CF(0) has three main
CC subunits: a, b and c.
CC -!- SUBCELLULAR LOCATION: Mitochondrion inner membrane; Multi-pass membrane
CC protein.
CC -!- SIMILARITY: Belongs to the ATPase A chain family. {ECO:0000305}.
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DR EMBL; X61010; CAA43343.1; -; Genomic_DNA.
DR PIR; S36012; S36012.
DR RefSeq; NP_007087.1; NC_001606.1.
DR AlphaFoldDB; P24946; -.
DR SMR; P24946; -.
DR Ensembl; ENSCCRT00000000023; ENSCCRP00000000007; ENSCCRG00000000023.
DR GeneID; 807763; -.
DR KEGG; ccar:807763; -.
DR CTD; 4508; -.
DR GeneTree; ENSGT00390000005568; -.
DR OrthoDB; 1095315at2759; -.
DR GO; GO:0016021; C:integral component of membrane; IEA:UniProtKB-KW.
DR GO; GO:0005743; C:mitochondrial inner membrane; IEA:UniProtKB-SubCell.
DR GO; GO:0045263; C:proton-transporting ATP synthase complex, coupling factor F(o); IEA:UniProtKB-KW.
DR GO; GO:0015078; F:proton transmembrane transporter activity; IEA:InterPro.
DR GO; GO:0015986; P:proton motive force-driven ATP synthesis; IEA:InterPro.
DR Gene3D; 1.20.120.220; -; 1.
DR InterPro; IPR000568; ATP_synth_F0_asu.
DR InterPro; IPR023011; ATP_synth_F0_asu_AS.
DR InterPro; IPR045083; ATP_synth_F0_asu_bact/mt.
DR InterPro; IPR035908; F0_ATP_A_sf.
DR PANTHER; PTHR11410; PTHR11410; 1.
DR Pfam; PF00119; ATP-synt_A; 1.
DR PRINTS; PR00123; ATPASEA.
DR SUPFAM; SSF81336; SSF81336; 1.
DR TIGRFAMs; TIGR01131; ATP_synt_6_or_A; 1.
DR PROSITE; PS00449; ATPASE_A; 1.
PE 3: Inferred from homology;
KW ATP synthesis; CF(0); Hydrogen ion transport; Ion transport; Membrane;
KW Mitochondrion; Mitochondrion inner membrane; Transmembrane;
KW Transmembrane helix; Transport.
FT CHAIN 1..227
FT /note="ATP synthase subunit a"
FT /id="PRO_0000082112"
FT TRANSMEM 9..29
FT /note="Helical"
FT /evidence="ECO:0000255"
FT TRANSMEM 69..89
FT /note="Helical"
FT /evidence="ECO:0000255"
FT TRANSMEM 98..118
FT /note="Helical"
FT /evidence="ECO:0000255"
FT TRANSMEM 135..157
FT /note="Helical"
FT /evidence="ECO:0000255"
FT TRANSMEM 179..199
FT /note="Helical"
FT /evidence="ECO:0000255"
FT TRANSMEM 202..222
FT /note="Helical"
FT /evidence="ECO:0000255"
SQ SEQUENCE 227 AA; 24988 MW; C3B52B268F34CA42 CRC64;
MMVSFFDQFA SPSYLGIPNI AVAIALPWVL YPTPPARWIN NRLITIQGWF INRFTNQLML
PLNVGGHKWA LLLASLMIFL ITINMLGLLP YTFTPTTQLS LNMGFAVPLW LATVIIGMRN
QPTIALGHLL PEGTPIPLIP VLIIIETISL LIRPLALGVR LTANLTAGHL LIQLIATAVF
VLLPMMPTVA ILTAAVLFLL TLLEVAVAMI QAYVFVLLLS LYLQENV