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3.A.2.1.1
H+-translocating F-type ATPase. The loop-regions in subunits a and c that are implicated in H+ transport likely interact in a single structural domain which then functions in gating H+ release to the cytoplasm (Steed et al. 2014). Three different states that relate to rotation of the enzyme have been observed, with the central stalk's epsilon subunit in an extended autoinhibitory conformation in all three states (Sobti et al. 2016). The Fo motor consists of seven transmembrane helices and a decameric c-ring, and invaginations on either side of the membrane indicate the entry and exit channels for protons. The proton translocating subunit contains near parallel helices inclined by ~30 degrees to the membrane, a feature corresponding to rotary ATPases. This rotary ATPase subtype, the peripheral stalk, is resolved over the entire length of the complex, revealing the F1 attachment points and a coiled-coil that bifurcates toward the membrane with its helices separating to embrace subunit a from two sides (Sobti et al. 2016). Reversible beta/epsilon (stator/rotor) interactions may block rotation and thereby inhibit catalysis (Bulygin et al. 2004). Current views on unidirectional catalysis by the F1·Fo ATP synthase/ATPase have been reviewed (Zharova et al. 2023). Hypermucoviscosity is a hallmark of hypervirulent Klebsiella pneumoniae, and OmpR regulates its energy status, via the F-type ATPase of this organism; this influences hypermucoviscosity (Wang et al. 2023).

Accession Number:P68699
Protein Name:ATP synthase C chain ATPL aka ATPE aka UNCE aka PAPH aka B3737
Length:79
Molecular Weight:8256.00
Species:Escherichia coli [83333]
Number of TMSs:2
Location1 / Topology2 / Orientation3: Cell inner membrane1 / Multi-pass membrane protein2
Substrate hydron

Cross database links:

RefSeq: AP_004050.1    NP_418193.1   
Entrez Gene ID: 948253   
Pfam: PF00137   
BioCyc: EcoCyc:ATPE-MONOMER    ECOL168927:B3737-MONOMER    MetaCyc:ATPE-MONOMER   
KEGG: ecj:JW3715    eco:b3737   

Gene Ontology

GO:0016021 C:integral to membrane
GO:0005886 C:plasma membrane
GO:0045263 C:proton-transporting ATP synthase complex, c...
GO:0046933 F:hydrogen ion transporting ATP synthase acti...
GO:0008289 F:lipid binding
GO:0015986 P:ATP synthesis coupled proton transport

References (17)

[1] “Nucleotide sequence of genes coding for dicyclohexylcarbodiimide-binding protein and the alpha subunit of proton-translocating ATPase of Escherichia coli.”  Kanazawa H.et.al.   6266400
[2] “The nucleotide sequence of the atp genes coding for the F0 subunits a, b, c and the F1 subunit delta of the membrane bound ATP synthase of Escherichia coli.”  Nielsen J.et.al.   6278247
[3] “The atp operon: nucleotide sequence of the promoter and the genes for the membrane proteins, and the delta subunit of Escherichia coli ATP-synthase.”  Gay N.J.et.al.   6272190
[4] “The F1F0-ATPase of Escherichia coli. Substitution of proline by leucine at position 64 in the c-subunit causes loss of oxidative phosphorylation.”  Fimmel A.L.et.al.   6193778
[5] “DNA sequence around the Escherichia coli unc operon. Completion of the sequence of a 17 kilobase segment containing asnA, oriC, unc, glmS and phoS.”  Walker J.E.et.al.   6395859
[6] “Amino acid replacement in dicyclohexylcarbodiimide-reactive proteins from mutant strains of Escherichia coli defective in the energy-transducing ATPase complex.”  Wachter E.et.al.   6446460
[7] “Mutations in the uncE gene affecting assembly of the c-subunit of the adenosine triphosphatase of Escherichia coli.”  Jans D.A.et.al.   6309138
[8] “DNA sequence and analysis of 136 kilobases of the Escherichia coli genome: organizational symmetry around the origin of replication.”  Burland V.D.et.al.   7686882
[9] “The complete genome sequence of Escherichia coli K-12.”  Blattner F.R.et.al.   9278503
[10] “Highly accurate genome sequences of Escherichia coli K-12 strains MG1655 and W3110.”  Hayashi K.et.al.   16738553
[11] “The preferred stoichiometry of c subunits in the rotary motor sector of Escherichia coli ATP synthase is 10.”  Jiang W.et.al.   11320246
[12] “Global topology analysis of the Escherichia coli inner membrane proteome.”  Daley D.O.et.al.   15919996
[13] “Heteronuclear 1H-15N nuclear magnetic resonance studies of the c subunit of the Escherichia coli F1F0 ATP synthase: assignment and secondary structure.”  Norwood T.J.et.al.   1385726
[14] “Determination of local protein structure by spin label difference 2D NMR: the region neighboring Asp61 of subunit c of the F1F0 ATP synthase.”  Girvin M.E.et.al.   7849023
[15] “Solution structure of the transmembrane H+-transporting subunit c of the F1F0 ATP synthase.”  Girvin M.E.et.al.   9636021
[16] “Structural changes linked to proton translocation by subunit c of the ATP synthase.”  Rastogi V.K.et.al.   10580496
[17] “Model of the c-subunit oligomer in the membrane domain of F-ATPases.”  Groth G.et.al.   9237612
Structure:
1A91   1ATY   1C0V   1C17   1C99   1IJP   1J7F   1L6T   1QO1   4UTQ   [...more]

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FASTA formatted sequence
1:	MENLNMDLLY MAAAVMMGLA AIGAAIGIGI LGGKFLEGAA RQPDLIPLLR TQFFIVMGLV 
61:	DAIPMIAVGL GLYVMFAVA