Actin conformation dynamics precede force generation in cytotoxic T lymphocytes

Abstract Cytotoxic T lymphocytes (CTLs) are cells of the adaptive immune system that are able to recognise and kill cancerous or virally infected target cells. The biochemical basis of CTL-mediated killing has been examined in great detail. Recent work has underscored the importance of physical forces in T cell function too, but how CTLs sense and exert force during migration and killing is not fully understood. Here, by expressing actin conformation probes based on the CH domain of utrophin, we directly visualize regions of altered F-actin conformation in primary CTLs during migration and killing. By combining these probes with traction force microscopy, we correlate external force with the internal cytoskeleton. We show that actin conformation is regulated upstream of force production, and that force exertion at the cytotoxic immune synapse temporally follows actin conformation dynamics. Our work offers insight into the relationship between cellular force production and F-actin conformation in important primary immune cells.

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Publication Details

Journal
Communications Biology
Published
2026-09-25
DOI
https://doi.org/10.1038/s42003-026-11011-3
Primary Topic
Cellular Mechanics and Interactions
Type
article
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Actin conformation dynamics precede force generation in cytotoxic T lymphocytes

Kristian Franze, Gillian M. Griffiths, Adam M. Rochussen, Anna H. Lippert et al.
Communications Biology
Cellular Mechanics and Interactions
article

Actin conformation dynamics precede force generation in cytotoxic T lymphocytes

Kristian Franze, Gillian M. Griffiths, Adam M. Rochussen, Anna H. Lippert, Alexander K. Winkel, Daniel A. Fletcher, Aybaran Olca Kebabci
article en

Abstract

Abstract Cytotoxic T lymphocytes (CTLs) are cells of the adaptive immune system that are able to recognise and kill cancerous or virally infected target cells. The biochemical basis of CTL-mediated killing has been examined in great detail. Recent work has underscored the importance of physical forces in T cell function too, but how CTLs sense and exert force during migration and killing is not fully understood. Here, by expressing actin conformation probes based on the CH domain of utrophin, we directly visualize regions of altered F-actin conformation in primary CTLs during migration and killing. By combining these probes with traction force microscopy, we correlate external force with the internal cytoskeleton. We show that actin conformation is regulated upstream of force production, and that force exertion at the cytotoxic immune synapse temporally follows actin conformation dynamics. Our work offers insight into the relationship between cellular force production and F-actin conformation in important primary immune cells.

Communications BiologyVol. 9(1)
Friedrich-Alexander-Universität Erlangen-Nürnberg (DE), University of Cambridge (GB), University of Würzburg (DE), University of Regensburg (DE), University of California, Berkeley (US)
Openalex Percentile: Top 15%
Cellular Mechanics and Interactions
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Actin conformation dynamics precede force generation in cytotoxic T lymphocytes — Kristian Franze, Gillian M. Griffiths, et al. · Communications Biology (2026) | TGRS Research Map | TGRS