P07766: T-cell surface glycoprotein CD3 epsilon chain (CD3E)

T-cell surface glycoprotein CD3 epsilon chain (CD3E) is a 207-residue protein from Homo sapiens. This is its AlphaFold structure prediction, created 1 Aug 2025. UniProt accession: P07766.

Gene
CD3E
Organism
Homo sapiens
Length
207 residues
Mean pLDDT
73.1
Model
AF-P07766-F1 v6
Model created
1 Aug 2025
PDB structures
43

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Model confidence (pLDDT)

The mean pLDDT of this model is 73.1 (confident 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 accurate28%
70 to 90Confident: backbone generally right28%
50 to 70Low: treat with caution28%
Below 50Very low: often disordered regions15%

What pLDDT means and how to read it

Function

Part of the TCR-CD3 complex present on T-lymphocyte cell surface that plays an essential role in adaptive immune response (PubMed:15294938, PubMed:15546002, PubMed:2470098, PubMed:40592325, PubMed:8490660). When antigen presenting cells (APCs) activate T-cell receptor (TCR), TCR-mediated signals are transmitted across the cell membrane by the CD3 chains CD3D, CD3E, CD3G and CD247/CD3Z (PubMed:2470098, PubMed:40592325). All CD3 chains contain immunoreceptor tyrosine-based activation motifs (ITAMs) in their cytoplasmic domain (PubMed:2470098, PubMed:40592325). Upon TCR engagement, these motifs become phosphorylated by Src family protein tyrosine kinases LCK and FYN, resulting in the…

Subunit structure

The TCR-CD3 complex is composed of a CD3D-CD3E and a CD3G-CD3E heterodimers that preferentially associate with TCRalpha and TCRbeta, respectively, to form TCRalpha-CD3E-CD3G and TCRbeta/CD3G-CD3E trimers (PubMed:15136729, PubMed:15534202, PubMed:40592325). In turn, the hexamer interacts with CD247/CD3Z homodimer to form the TCR-CD3 complex (PubMed:15136729, PubMed:15534202). Alternatively,…

Subcellular location

Cell membrane

Disease associations

Experimental structures in the PDB

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

PDB IDMethodResolutionChains and residues
5QU2X-ray1.04 ÅD/E=180-188
8VY4X-ray1.7 ÅC=22-28
8F0LX-ray1.81 ÅP/Q=22-34
1XIWX-ray1.9 ÅA/E=22-126
1SY6X-ray2.1 ÅA=21-118
8ES8EM2.65 ÅE/F=2-207
1A81X-ray3.0 ÅB/D/F/H/J/L=186-203
7FJEEM3.0 Åe/f=1-207
9CI8EM3.01 Åe/f=33-156
8ES7EM3.04 ÅE/F=2-207
7PHREM3.08 ÅE/e=23-158
9JY1EM3.08 ÅE/F/e/f=1-207
7FJFEM3.1 Åe/f=1-207
8TW6EM3.1 ÅE/F=1-207
9IRUEM3.14 Åe/f=1-207
9IRSEM3.18 Åe/f=1-207
7FJDEM3.2 Åe/f=1-207
9JY2EM3.24 Åe/f=33-154
8ES9EM3.25 ÅE/F=2-207
9CQ4EM3.27 ÅE/F=1-207

Showing 20 of 43 experimental structures (best resolution first).

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