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Biophysical and Structural Features of αβT-Cell Receptor Mechanosensing: A Paradigmatic Shift in Understanding T-Cell Activation.

Authors :
Mallis RJ
Brazin KN
Duke-Cohan JS
Akitsu A
Stephens HM
Chang-Gonzalez AC
Masi DJ
Kirkpatrick EH
Holliday EL
Feng Y
Zienkiewicz KJ
Lee JJ
Cinella V
Uberoy KI
Tan K
Wagner G
Arthanari H
Hwang W
Lang MJ
Reinherz EL
Source :
Immunological reviews [Immunol Rev] 2025 Jan; Vol. 329 (1), pp. e13432. Date of Electronic Publication: 2024 Dec 29.
Publication Year :
2025

Abstract

αβT cells protect vertebrates against many diseases, optimizing surveillance using mechanical force to distinguish between pathophysiologic cellular alterations and normal self-constituents. The multi-subunit αβT-cell receptor (TCR) operates outside of thermal equilibrium, harvesting energy via physical forces generated by T-cell motility and actin-myosin machinery. When a peptide-bound major histocompatibility complex molecule (pMHC) on an antigen presenting cell is ligated, the αβTCR on the T cell leverages force to form a catch bond, prolonging bond lifetime, and enhancing antigen discrimination. Under load, the αβTCR undergoes reversible structural transitions involving partial unfolding of its clonotypic immunoglobulin-like (Ig) domains and coupled rearrangements of associated CD3 subunits and structural elements. We postulate that transitions provide critical energy to initiate the signaling cascade via induction of αβTCR quaternary structural rearrangements, associated membrane perturbations, exposure of CD3 ITAMs to phosphorylation by non-receptor tyrosine kinases, and phase separation of signaling molecules. Understanding force-mediated signaling by the αβTCR clarifies long-standing questions regarding αβTCR antigen recognition, specificity and affinity, providing a basis for continued investigation. Future directions include examining atomistic mechanisms of αβTCR signal initiation, performance quality, tissue compliance adaptability, and T-cell memory fate. The mechanotransduction paradigm will foster improved rational design of T-cell based vaccines, CAR-Ts, and adoptive therapies.<br /> (© 2024 The Author(s). Immunological Reviews published by John Wiley & Sons Ltd.)

Details

Language :
English
ISSN :
1600-065X
Volume :
329
Issue :
1
Database :
MEDLINE
Journal :
Immunological reviews
Publication Type :
Academic Journal
Accession number :
39745432
Full Text :
https://doi.org/10.1111/imr.13432