CD4+T-cells create a stable mechanical environment for force-sensitive TCR:pMHC interactions

L Lukas Schrangl F Florian Kellner R René Platzer V Vanessa Mühlgrabner P Paul Hubinger J Josephine Wieland R Reinhard Obst J José L. Toca-Herrera J Johannes B. Huppa G Gerhard J. Schütz J Janett Göhring

Abstract

Abstract Mechanical forces acting on ligand-engaged T-cell receptors (TCR) have previously been implicated in T-cell antigen recognition and ligand discrimination, yet their magnitude, frequency, and impact remain unclear. Here, we quantitatively assess forces across various TCR:pMHC pairs with different bond lifetimes at single-molecule resolution, both before and during T-cell activation, on platforms that either include or exclude tangential force registration. For this purpose, we use glass-supported lipid bilayers presenting pMHC conjugated to a molecular force sensor unit at its base, adhesion factors and costimulatory molecules to the approaching T-cells. Our results imply that CD4 + T-cell TCRs experience significantly lower forces than previously estimated, with only a small fraction of ligand-engaged TCRs being subjected to these forces during antigen scanning. These rare and minute mechanical forces do not impact the global lifetime distribution of the TCR:ligand bond. We propose that the immunological synapse is created as biophysically stable environment to prevent pulling forces from disturbing antigen recognition.

Article Details

Volume / Issue Vol. 16, Issue 1
Published August 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

L

Lukas Schrangl

F

Florian Kellner

R

René Platzer

V

Vanessa Mühlgrabner

P

Paul Hubinger

J

Josephine Wieland

R

Reinhard Obst

J

José L. Toca-Herrera

J

Johannes B. Huppa

G

Gerhard J. Schütz

J

Janett Göhring