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Major histocompatibility complex (MHC) class I molecules present cell internally derived peptides at the plasma membrane for surveillance by cytotoxic T lymphocytes. The surface expression of most class I molecules at least partially depends on the endoplasmic reticulum protein, tapasin, which helps them to bind peptides of the right length and sequence. To determine what makes a class I molecule dependent on support by tapasin, we have conducted in silico molecular dynamics (MD) studies and laboratory experiments to assess the conformational state of tapasin-dependent and -independent class I molecules. We find that in the absence of peptide, the region around the F pocket of the peptide binding groove of the tapasin-dependent molecule HLA-B*44:02 is in a disordered conformational state and that it is converted to a conformationally stable state by tapasin. This novel chaperone function of tapasin has not been described previously. We demonstrate that the disordered state of class I is caused by the presence of two adjacent acidic residues in the bottom of the F pocket of class I, and we suggest that conformational disorder is a common feature of tapasin-dependent class I molecules, making them essentially unable to bind peptides on their own. MD simulations are a useful tool to predict such conformational disorder of class I molecules.

More information Original publication

DOI

10.1096/fj.11-190249

Type

Journal article

Publication Date

2011-11-01T00:00:00+00:00

Volume

25

Pages

3989 - 3998

Total pages

9

Addresses

M, o, l, e, c, u, l, a, r, , L, i, f, e, , S, c, i, e, n, c, e, ,, , J, a, c, o, b, s, , U, n, i, v, e, r, s, i, t, y, , B, r, e, m, e, n, ,, , B, r, e, m, e, n, ,, , G, e, r, m, a, n, y, .

Keywords

Cell Line, Humans, Membrane Transport Proteins, Histocompatibility Antigens Class I, Protein Conformation, Protein Binding, Molecular Dynamics Simulation, HLA-B44 Antigen