Mechanically active integrins target lytic secretion at the immune synapse to facilitate cellular cytotoxicity

Author:

Wang Mitchell S.,Hu Yuesong,Sanchez Elisa E.,Xie XiheORCID,Roy Nathan H.,de Jesus MiguelORCID,Winer Benjamin Y.,Zale Elizabeth A.,Jin Weiyang,Sachar Chirag,Lee Joanne H.,Hong Yeonsun,Kim MinsooORCID,Kam Lance C.,Salaita KhalidORCID,Huse MorganORCID

Abstract

AbstractCytotoxic lymphocytes fight pathogens and cancer by forming immune synapses with infected or transformed target cells and then secreting cytotoxic perforin and granzyme into the synaptic space, with potent and specific killing achieved by this focused delivery. The mechanisms that establish the precise location of secretory events, however, remain poorly understood. Here we use single cell biophysical measurements, micropatterning, and functional assays to demonstrate that localized mechanotransduction helps define the position of secretory events within the synapse. Ligand-bound integrins, predominantly the αLβ2isoform LFA-1, function as spatial cues to attract lytic granules containing perforin and granzyme and induce their fusion with the plasma membrane for content release. LFA-1 is subjected to pulling forces within secretory domains, and disruption of these forces via depletion of the adaptor molecule talin abrogates cytotoxicity. We thus conclude that lymphocytes employ an integrin-dependent mechanical checkpoint to enhance their cytotoxic power and fidelity.

Funder

Ludwig Foundation for Cancer Immunotherapy

Schmidt Science Fellows Program Cancer Research Institute

U.S. Department of Health & Human Services | NIH | National Institute of Allergy and Infectious Diseases

U.S. Department of Health & Human Services | NIH | National Institute of General Medical Sciences

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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