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癌细胞中的 T 型通道:逆行驱动。

T-type channels in cancer cells: Driving in reverse.

机构信息

Universitat de Lleida (Dpt. Medicina Experimental), IRBLleida, Rovira Roure 80, Lleida 25198, Spain.

Universitat de Lleida (Dpt. Ciències Mèdiques Bàsiques), IRBLleida.

出版信息

Cell Calcium. 2022 Jul;105:102610. doi: 10.1016/j.ceca.2022.102610. Epub 2022 Jun 6.

Abstract

In the strongly polarized membranes of excitable cells, activation of T-type Ca channels (TTCCs) by weak depolarizing stimuli allows the influx of Ca which further amplifies membrane depolarization, thus "recruiting" higher threshold voltage-gated channels to promote action potential firing. Nonetheless, TTCCs perform other functions in the plasma membrane of both excitable and non-excitable cells, in which they regulate a number of biochemical pathways relevant for cell cycle and cell fate. Furthermore, data obtained in the last 20 years have shown the involvement of TTCCs in tumor biology, designating them as promising chemotherapeutic targets. However, their activity in the steadily-depolarized membranes of cancer cells, in which most voltage-gated channels are in the inactivated (nonconducting) state, is counter-intuitive. Here we discuss that in cancer cells weak hyperpolarizing stimuli increase the fraction of open TTCCs which, in association with Ca-dependent K channels, may critically boost membrane hyperpolarization and driving force for Ca entry through different voltage-independent Ca channels. Available evidence also shows that TTCCs participate in positive feedback circuits with signaling effectors, which may warrant a switch-like activation of pro-proliferative and pro-survival pathways in spite of their low availability. Unravelling TTCC modus operandi in the context of non-excitable membranes may facilitate the development of novel anticancer approaches.

摘要

在可兴奋细胞的强极化膜中,通过弱去极化刺激激活 T 型钙通道 (TTCC) 可允许 Ca 内流,这进一步放大了膜去极化,从而“招募”更高阈值的电压门控通道以促进动作电位的产生。尽管如此,TTCC 在可兴奋和非可兴奋细胞的质膜中还具有其他功能,在这些功能中,它们调节与细胞周期和细胞命运相关的许多生化途径。此外,过去 20 年的数据表明 TTCC 参与肿瘤生物学,将它们指定为有前途的化疗靶点。然而,它们在大多数电压门控通道处于失活(非传导)状态的稳定去极化的癌细胞膜中的活性是违反直觉的。在这里,我们讨论了在癌细胞中,弱超极化刺激会增加开放 TTCC 的比例,这与 Ca 依赖性 K 通道一起,可能会极大地增强膜超极化,并通过不同的电压非依赖性 Ca 通道为 Ca 内流提供驱动力。现有证据还表明,TTCC 与信号效应器参与正反馈回路,这可能保证促增殖和抗细胞凋亡途径的开关样激活,尽管它们的可用性较低。在非兴奋膜的背景下揭示 TTCC 的作用方式可能有助于开发新的抗癌方法。

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