F pocket flexibility influences the tapasin dependence of two differentially disease-associated MHC Class I proteins

Publication date

2015-01-23

Authors

Abualrous, Esam T
Fritzsche, Susanne
Hein, Zeynep
Al-Balushi, Mohammed S
Reinink, PeterISNI 0000000506038488
Boyle, Louise H
Wellbrock, Ursula
Antoniou, Antony N
Springer, Sebastian

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Article
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Abstract

The human major histocompatibility complex (MHC) class I protein HLA-B*27:05 is statistically associated with ankylosing spondylitis (AS), unlike HLA-B*27:09, which differs in a single amino acid in the F pocket of the peptide binding groove. To understand how this unique amino acid difference leads to a different behavior of the proteins in the cell, we have investigated the conformational stability of both proteins using a combination of in silico and experimental approaches. Here, we show that the binding site of B*27:05 is conformationally disordered in the absence of peptide due to a charge repulsion at the bottom of the F pocket. In agreement with this, B*27:05 requires the chaperone protein tapasin to a greater extent than the conformationally stable B*27:09 in order to remain structured and to bind peptide. Taken together, our data demonstrate a method to predict tapasin dependence and physiological behavior from the sequence and crystal structure of a particular class I allotype. This article is protected by copyright. All rights reserved.

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Citation

Abualrous, E T, Fritzsche, S, Hein, Z, Al-Balushi, M S, Reinink, P, Boyle, L H, Wellbrock, U, Antoniou, A N & Springer, S 2015, 'F pocket flexibility influences the tapasin dependence of two differentially disease-associated MHC Class I proteins', European Journal of Immunology, vol. 45, no. 4, pp. 2248-1257. https://doi.org/10.1002/eji.201445307