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Updated: Aug 6, 2026

Analysis of T-cell Receptor-Induced Calcium Influx in Primary Murine T-cells by Full Spectrum Flow Cytometry
Published on: December 16, 2022
Campari2 genomic interrogation of homeostatic calcium activity identifies TIM1 as a negative regulator of T cell
Sana Kouba1, Xin Zhang1, Raphael Néré1
1University of Geneva, Department of Cell Physiology and Metabolism, Switzerland.
Abstract:
Calcium signals regulate crucial cellular functions yet many genes coding for Ca2+handling proteins remain unknown as their identification relies on low-throughput single-cell approaches. Here we describe a method to measure Ca2+ activity using CaMPARI2, flow cytometry and pooled genome interrogation. CAMPARI2 screen (CaMP-Screen) identified enhancers and inhibitors of homeostatic Ca2+ activity, highlighting a predominant role for store-operated Ca2+ entry (SOCE) and lipid signalling pathways. Genes reducing basal Ca2+ activity were linked to Prader Willy syndrome, T cell dysfunction, and deafness. Silencing of HAVCR1 gene, coding for T cell transmembrane immunoglobulin and mucin (TIM1), enhanced Ca2+ signals in T cells and promoted signaling under resting but not after TCR engagement. Our findings establish CaMP-Screen as an efficient detector of low-amplitude Ca2+ signals and identify new genes associated to pathologies that regulate Ca2+ homeostasis, reporting TIM1 as a negative regulator of Ca2+ signals driving T cell function.
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