P60900: Proteasome subunit alpha type-6 (PSMA6)

Proteasome subunit alpha type-6 (PSMA6) is a 246-residue protein from Homo sapiens. This is its AlphaFold structure prediction, created 1 Aug 2025. UniProt accession: P60900.

Gene
PSMA6
Organism
Homo sapiens
Length
246 residues
Mean pLDDT
96.1
Model
AF-P60900-F1 v6
Model created
1 Aug 2025
PDB structures
168

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Model confidence (pLDDT)

The mean pLDDT of this model is 96.1 (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 accurate93%
70 to 90Confident: backbone generally right7%
50 to 70Low: treat with caution1%
Below 50Very low: often disordered regions0%

What pLDDT means and how to read it

Function

Component of the 20S core proteasome complex involved in the proteolytic degradation of most intracellular proteins. This complex plays numerous essential roles within the cell by associating with different regulatory particles. Associated with two 19S regulatory particles, forms the 26S proteasome and thus participates in the ATP-dependent degradation of ubiquitinated proteins. The 26S proteasome plays a key role in the maintenance of protein homeostasis by removing misfolded or damaged proteins that could impair cellular functions, and by removing proteins whose functions are no longer required. Associated with the PA200 or PA28, the 20S proteasome mediates ubiquitin-independent protein…

Subunit structure

The 26S proteasome consists of a 20S proteasome core and two 19S regulatory subunits (PubMed:25599644, PubMed:26133119, PubMed:27342858, PubMed:27428775, PubMed:27493187, PubMed:34711951). The 20S proteasome core is a barrel-shaped complex made of 28 subunits that are arranged in four stacked rings (PubMed:25599644, PubMed:26133119, PubMed:27342858, PubMed:27428775, PubMed:27493187,…

Subcellular location

Cytoplasm, Nucleus

Experimental structures in the PDB

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

PDB IDMethodResolutionChains and residues
5LE5X-ray1.8 ÅG/U=1-246
5LEYX-ray1.9 ÅG/U=1-246
5LF4X-ray1.99 ÅG/U=1-246
5LF1X-ray2.0 ÅG/U=1-246
5LF7X-ray2.0 ÅG/U=1-246
8UD9EM2.04 ÅA/O=1-246
5LF6X-ray2.07 ÅG/U=1-246
5LF3X-ray2.1 ÅG/U=1-246
8BZLX-ray2.14 ÅG/U=1-246
5LEZX-ray2.19 ÅG/U=1-246
5LEXX-ray2.2 ÅG/U=1-246
7AWEX-ray2.29 ÅA/O=4-245
5LF0X-ray2.41 ÅG/U=1-246
7B12X-ray2.43 ÅA/O=4-245
9K53EM2.5 ÅG/g=1-246
9HMNEM2.55 ÅA/O=1-246
4R3OX-ray2.6 ÅA/O=2-245
6RGQEM2.6 ÅA/O=1-246
9YUZEM2.6 ÅG/U=1-246
8QYLEM2.67 ÅG=1-246

Showing 20 of 168 experimental structures (best resolution first).

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