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Selective inhibition of neuronal Ca v 3.3 T-type calcium channels by TAT-based channel peptide

机译:通过基于TAT的通道肽选择性抑制神经元CaV 3.3 T型钙通道

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Low-voltage-activated Cav3 calcium channels (T-type) play an essential role in the functioning of the nervous system where they support oscillatory activities that relie on several channel molecular determinants that shape their unique gating properties. In a previous study, we documented the important role of the carboxy proximal region in the functioning of Cav3.3 channels. Here, we explore the ability of a TAT-based cell penetrating peptide containing this carboxy proximal region (TAT-C3P) to modulate the activity of Cav3 channels. We show that chronic application of TAT-C3P on tsA-201 cells expressing Cav3 channels selectively inhibits Cav3.3 channels without affecting Cav3.1 and Cav3.2 channels. Therefore, the TAT-C3P peptide described in this study represents a new tool to address the specific physiological role of Cav3.3 channels, and to potentially enhance our understanding of Cav3.3 in disease.
机译:低压活化的CAV3钙通道(T型)在神经系统的功能中起重要作用,其中支持振荡活动,该活动依赖于塑造其独特的门控性能的几种通道分子决定簇。在以前的研究中,我们记录了羧基近端区域在Cav3.3通道的运行中的重要作用。这里,我们探讨了含有该羧基近端区域(TAT-C3P)的基于TAT的细胞穿透肽来调节CAV3通道的活性。我们表明,TAT-C3P对表达CAV3通道的TSA-201细胞的慢性施用选择性地抑制CAV3.3通道,而不会影响CAV3.1和CAV3.2通道。因此,本研究中描述的TAT-C3P肽代表了一种解决CAV3.3频道的特定生理作用的新工具,并潜在地提高了我们对疾病中的CAV3.3的理解。

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