Cavβ1 regulates T cell expansion and apoptosis independently of voltage-gated Ca<sup>2+</sup> channel function.

Erdogmus, Serap; Concepcion, Axel R; Yamashita, Megumi; Sidhu, Ikjot; Tao, Anthony Y; Li, Wenyi; Rocha, Pedro P; Huang, Bonnie et al. · Nat Commun · 2022

basic_science · Level V

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Abstract

TCR stimulation triggers Ca<sup>2+</sup> signals that are critical for T cell function and immunity. Several pore-forming α and auxiliary β subunits of voltage-gated Ca<sup>2+</sup> channels (VGCC) were reported in T cells, but their mechanism of activation remains elusive and their contribution to Ca<sup>2+</sup> signaling in T cells is controversial. We here identify Ca<sub>V</sub>β1, encoded by Cacnb1, as a regulator of T cell function. Cacnb1 deletion enhances apoptosis and impairs the clonal expansion of T cells after lymphocytic choriomeningitis virus (LCMV) infection. By contrast, Cacnb1 is dispensable for T cell proliferation, cytokine production and Ca<sup>2+</sup> signaling. Using patch clamp electrophysiology and Ca<sup>2+</sup> recordings, we are unable to detect voltage-gated Ca<sup>2+</sup> currents or Ca<sup>2+</sup> influx in human and mouse T cells upon depolarization with or without prior TCR stimulation. mRNAs of several VGCC α1 subunits are detectable in human (Ca<sub>V</sub>3.3, Ca<sub>V</sub>3.2) and mouse (Ca<sub>V</sub>2.1) T cells, but they lack transcription of many 5' exons, likely resulting in N-terminally truncated and non-functional proteins. Our findings demonstrate that although Ca<sub>V</sub>β1 regulates T cell function, these effects are independent of VGCC channel activity.

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