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Piezo1-ASIC1 嵌合体的异源表达诱导出与 Piezo1 不同特性的机械敏感电流。

Heterologous Expression of the Piezo1-ASIC1 Chimera Induces Mechanosensitive Currents with Properties Distinct from Piezo1.

机构信息

School of Pharmaceutical Sciences, Tsinghua-Peking Joint Center for Life Sciences, IDG/McGovern Institute for Brain Research, Tsinghua University, Beijing 100084, China.

School of Pharmaceutical Sciences, Tsinghua-Peking Joint Center for Life Sciences, IDG/McGovern Institute for Brain Research, Tsinghua University, Beijing 100084, China.

出版信息

Neuron. 2017 Apr 19;94(2):274-277. doi: 10.1016/j.neuron.2017.03.040.

Abstract

Piezo1 represents a prototype of the mammalian mechanosensitive cation channel, but its molecular mechanism remains elusive. In a recent study, we showed that C-terminal region, which contains the last two TMs, of 2189-2547 of Piezo1 forms the bona fide pore module, and systematically identified the pore-lining helix and key pore-property-determining residues (Zhao et al., 2016). Furthermore, we have engineered the Piezo1(1-2190)-ASIC1 chimera (fusing the N-terminal region of 1-2190 to the mechano-insensitive ASIC1) that mediated mechanical- and acid-evoked currents in HEK293T cells, indicating the sufficiency of the N-terminal region in mechanotransduction. Now in a Matters Arising, the authors specifically questioned the implication of the chimera data among the many findings shown in our paper. They replicated the chimera-mediated mechanosensitive currents in HEK293T cells that have nearly no detectable expression of endogenous Piezo1, but paradoxically found the chimera to be less effective in Piezo1 knockout HEK293T cells, indicating the involvement of endogenous Piezo1. In this Matters Arising Response, we discuss the chimera results and consider potential interpretations in light of the Matters Arising from Dubin et al. (2017), published concurrently in this issue of Neuron. Please see also the response from Hong et al. (2017), published in this issue.

摘要

Piezo1 代表了哺乳动物机械敏感阳离子通道的原型,但它的分子机制仍不清楚。在最近的一项研究中,我们表明 Piezo1 的 C 端区域(包含最后两个跨膜结构域)2189-2547 形成了真正的孔模块,并系统地鉴定了孔衬螺旋和关键孔特性决定残基(Zhao 等人,2016 年)。此外,我们构建了 Piezo1(1-2190)-ASIC1 嵌合体(将 1-2190 的 N 端区域融合到机械不敏感的 ASIC1 上),该嵌合体在 HEK293T 细胞中介导机械和酸诱发的电流,表明 N 端区域在机械转导中的充分性。现在在一个出现的问题中,作者特别质疑我们论文中显示的许多发现中嵌合体数据的含义。他们在几乎没有检测到内源性 Piezo1 表达的 HEK293T 细胞中复制了嵌合体介导的机械敏感电流,但矛盾的是,他们发现嵌合体在 Piezo1 敲除的 HEK293T 细胞中效果较差,表明内源性 Piezo1 的参与。在这个出现的问题的回应中,我们讨论了嵌合体的结果,并根据 Dubin 等人(2017 年)在本期《神经元》上发表的出现的问题,考虑了潜在的解释。请参阅 Hong 等人(2017 年)在本期《神经元》上发表的回应。

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