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Critical role for the β regulatory subunits of Cav channels in T lymphocyte function

机译:Cav通道的β调节亚基在T淋巴细胞功能中的关键作用

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摘要

Calcium ion is a universal signaling intermediate, which is known to control various biological processes. In excitable cells, voltage-gated calcium channels (Cav) are the major route of calcium entry and regulate multiple functions such as contraction, neurotrans-mitter release, and gene transcription. Here we show that T lymphocytes, which are nonexcitable cells, express both regulatory β and pore-forming Cav1 α1 subunits of Cav channels, and we provide genetic evidence for a critical role of the Cav β3 and Cav β4 regulatory subunits in T lymphocyte function. Cav β-deficient T lymphocytes fail to acquire normal functions, and they display impairment in the T cell receptor-mediated calcium response, nuclear factor of activated T cells activation, and cytokine production. In addition, unlike in excitable cells, our data suggest a minimal physiological role for depolarization in Cav channel opening in T cells. T cell receptor stimulation induces only a small depolarization of T cells, and artificial depolarization of T cells using KCl does not lead to calcium entry. These observations suggest that the Cav channels expressed by T cells have adopted novel regulation/gating mechanisms.
机译:钙离子是一种通用的信号传递中间体,已知可以控制各种生物过程。在可兴奋细胞中,电压门控钙通道(Cav)是钙进入的主要途径,并调节多种功能,例如收缩,神经递质释放和基因转录。在这里,我们显示T淋巴细胞是不可激发的细胞,表达Cav通道的调节性β和成孔的Cav1α1亚基,并且为Cavβ3和Cavβ4调节性亚基在T淋巴细胞功能中的关键作用提供了遗传学证据。缺乏Cavβ的T淋巴细胞无法获得正常功能,并且在T细胞受体介导的钙反应,激活的T细胞活化的核因子和细胞因子产生方面表现出损伤。此外,与可激发细胞不同,我们的数据表明,T细胞中Cav通道开放中去极化的生理作用最小。 T细胞受体刺激仅引起T细胞的少量去极化,并且使用KCl进行的T细胞人工去极化不会导致钙进入。这些观察结果表明由T细胞表达的Cav通道已经采用了新颖的调节/门控机制。

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