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  • Assembly of the MHC I peptide-loading complex determined by a conserved ionic lock-switch.

Assembly of the MHC I peptide-loading complex determined by a conserved ionic lock-switch.

Scientific reports (2015-11-28)
Andreas Blees, Katrin Reichel, Simon Trowitzsch, Olivier Fisette, Christoph Bock, Rupert Abele, Gerhard Hummer, Lars V Schäfer, Robert Tampé
ABSTRACT

Salt bridges in lipid bilayers play a decisive role in the dynamic assembly and downstream signaling of the natural killer and T-cell receptors. Here, we describe the identification of an inter-subunit salt bridge in the membrane within yet another key component of the immune system, the peptide-loading complex (PLC). The PLC regulates cell surface presentation of self-antigens and antigenic peptides via molecules of the major histocompatibility complex class I. We demonstrate that a single salt bridge in the membrane between the transporter associated with antigen processing TAP and the MHC I-specific chaperone tapasin is essential for the assembly of the PLC and for efficient MHC I antigen presentation. Molecular modeling and all-atom molecular dynamics simulations suggest an ionic lock-switch mechanism for the binding of TAP to tapasin, in which an unfavorable uncompensated charge in the ER-membrane is prevented through complex formation. Our findings not only deepen the understanding of the interaction network within the PLC, but also provide evidence for a general interaction principle of dynamic multiprotein membrane complexes in immunity.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Anti-Myc Tag Antibody, clone 4A6, clone 4A6, Upstate®, from mouse
Sigma-Aldrich
Monoclonal Anti-β-Actin antibody produced in mouse, clone AC-74, ascites fluid
Sigma-Aldrich
Anti-Tapasin Antibody, clone 7F6, clone 7F6, from rat