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Conformational lability in the class II MHC 3-10 helix and adjacent extended strand dictate HLA-DM susceptibility and peptide exchange

Painter, Corrie A.
Negroni, Maria P.
Kellersberger, Kathy A.
Zavala-Ruiz, Zarixia
Evans, James E.
Stern, Lawrence J.
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Corrie A. Painter; Maria P. Negroni
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Document Type
Journal Article
Publication Date
2011-11-29
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Abstract

HLA-DM is required for efficient peptide exchange on class II MHC molecules, but its mechanism of action is controversial. We trapped an intermediate state of class II MHC HLA-DR1 by substitution of αF54, resulting in a protein with increased HLA-DM binding affinity, weakened MHC-peptide hydrogen bonding as measured by hydrogen-deuterium exchange mass spectrometry, and increased susceptibility to DM-mediated peptide exchange. Structural analysis revealed a set of concerted conformational alterations at the N-terminal end of the peptide-binding site. These results suggest that interaction with HLA-DM is driven by a conformational change of the MHC II protein in the region of the α-subunit 3(10) helix and adjacent extended strand region, and provide a model for the mechanism of DM-mediated peptide exchange.

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Proc Natl Acad Sci U S A. 2011 Nov 29;108(48):19329-34. Link to article on publisher's website

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DOI
10.1073/pnas.1108074108
PubMed ID
22084083
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<p>This article is freely available online through the PNAS open access option.</p>
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