P23968: V-type proton ATPase subunit c'' (VMA16)

V-type proton ATPase subunit c'' (VMA16) is a 213-residue protein from Saccharomyces cerevisiae (strain ATCC 204508 / S288c). This is its AlphaFold structure prediction, created 1 Aug 2025. UniProt accession: P23968.

Gene
VMA16
Organism
Saccharomyces cerevisiae (strain ATCC 204508 / S288c)
Length
213 residues
Mean pLDDT
90.1
Model
AF-P23968-F1 v6
Model created
1 Aug 2025
PDB structures
28

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Model confidence (pLDDT)

The mean pLDDT of this model is 90.1 (very high overall). pLDDT is AlphaFold's per-residue confidence score from 0 to 100. In MolViewer, choose the B-factor color scheme to color the model by pLDDT, because AlphaFold stores it in the B-factor column.

pLDDT bandMeaningShare of residues
Above 90Very high: backbone and side chains are usually accurate82%
70 to 90Confident: backbone generally right11%
50 to 70Low: treat with caution1%
Below 50Very low: often disordered regions6%

What pLDDT means and how to read it

Function

Proton-conducting pore forming subunit of the V0 complex of vacuolar(H+)-ATPase (V-ATPase), a multisubunit enzyme composed of a peripheral complex (V1) that hydrolyzes ATP and a membrane integral complex (V0) that translocates protons (PubMed:9030535). V-ATPase is responsible for acidifying and maintaining the pH of intracellular compartments (PubMed:9030535)

Subunit structure

V-ATPase is a heteromultimeric enzyme composed of a peripheral catalytic V1 complex (components A to H) attached to an integral membrane V0 proton pore complex (components: a, c, c', c'', d, e, f and VOA1) (PubMed:27776355, PubMed:29526695). The decameric c-ring forms the proton-conducting pore, and is composed of eight proteolipid subunits c, one subunit c' and one subunit c'' (PubMed:27776355,…

Subcellular location

Vacuole membrane

Experimental structures in the PDB

Compare the prediction with experimentally determined structures of the same protein:

PDB IDMethodResolutionChains and residues
8EASEM2.6 Åc=1-213
6M0REM2.7 ÅC=16-213
7TAPEM2.8 ÅC=1-213
6O7UEM3.1 Åc=1-213
6PE4EM3.1 ÅG=1-213
8EATEM3.1 Åc=1-213
8EAUEM3.1 Åc=1-213
6O7TEM3.2 Åc=1-213
6PE5EM3.2 ÅG=1-213
7TAOEM3.2 ÅC=1-213
9E7LEM3.33 ÅC=1-213
9E76EM3.4 ÅC=1-213
6C6LEM3.5 ÅC=1-213
7TMREM3.5 Åc=1-213
6M0SEM3.6 ÅC=16-213
9MJ4EM3.7 ÅC=1-213
7TMSEM3.8 Åc=1-213
7TMTEM3.8 Åc=1-213
5TJ5EM3.9 ÅB=1-213
7FDAEM4.2 ÅT=1-213

Showing 20 of 28 experimental structures (best resolution first).

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