TY - JOUR
T1 - Structures of peptide-free and partially loaded MHC class I molecules reveal mechanisms of peptide selection
AU - Anjanappa, Raghavendra
AU - Garcia-Alai, Maria
AU - Kopicki, Janine-Denise
AU - Lockhauserbäumer, Julia
AU - Aboelmagd, Mohamed
AU - Hinrichs, Janina
AU - Nemtanu, Ioana Maria
AU - Uetrecht, Charlotte
AU - Zacharias, Martin
AU - Springer, Sebastian
AU - Meijers, Rob
PY - 2020/3/11
Y1 - 2020/3/11
N2 - Major Histocompatibility Complex (MHC) class I molecules selectively bind peptides for presentation to cytotoxic T cells. The peptide-free state of these molecules is not well understood. Here, we characterize a disulfide-stabilized version of the human class I molecule HLA-A*02:01 that is stable in the absence of peptide and can readily exchange cognate peptides. We present X-ray crystal structures of the peptide-free state of HLA-A*02:01, together with structures that have dipeptides bound in the A and F pockets. These structural snapshots reveal that the amino acid side chains lining the binding pockets switch in a coordinated fashion between a peptide-free unlocked state and a peptide-bound locked state. Molecular dynamics simulations suggest that the opening and closing of the F pocket affects peptide ligand conformations in adjacent binding pockets. We propose that peptide binding is co-determined by synergy between the binding pockets of the MHC molecule.
AB - Major Histocompatibility Complex (MHC) class I molecules selectively bind peptides for presentation to cytotoxic T cells. The peptide-free state of these molecules is not well understood. Here, we characterize a disulfide-stabilized version of the human class I molecule HLA-A*02:01 that is stable in the absence of peptide and can readily exchange cognate peptides. We present X-ray crystal structures of the peptide-free state of HLA-A*02:01, together with structures that have dipeptides bound in the A and F pockets. These structural snapshots reveal that the amino acid side chains lining the binding pockets switch in a coordinated fashion between a peptide-free unlocked state and a peptide-bound locked state. Molecular dynamics simulations suggest that the opening and closing of the F pocket affects peptide ligand conformations in adjacent binding pockets. We propose that peptide binding is co-determined by synergy between the binding pockets of the MHC molecule.
U2 - 10.1038/s41467-020-14862-4
DO - 10.1038/s41467-020-14862-4
M3 - Journal articles
C2 - 32161266
SN - 1751-8628
VL - 11
SP - 1314
JO - Nature Communications
JF - Nature Communications
IS - 1
ER -