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Nonpolar residues in the presumptive pore‐lining helix of mechanosensitive channel MSL10 influence channel behavior and establish a nonconducting function

机译:机械敏感性通道MSL10的推测孔衬螺旋中的非极性残基影响通道行为并建立非导电功能

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摘要

Mechanosensitive (MS) ion channels provide a universal mechanism for sensing and responding to increased membrane tension. MscS‐like (MSL) 10 is a relatively well‐studied MS ion channel from Arabidopsis thaliana that is implicated in cell death signaling. The relationship between the amino acid sequence of MSL10 and its conductance, gating tension, and opening and closing kinetics remains unstudied. Here, we identify several nonpolar residues in the presumptive pore‐lining transmembrane helix of MSL10 (TM6) that contribute to these basic channel properties. F553 and I554 are essential for wild type channel conductance and the stability of the open state. G556, a glycine residue located at a predicted kink in TM6, is essential for channel conductance. The increased tension sensitivity of MSL10 compared to close homolog MSL8 may be attributed to F563, but other channel characteristics appear to be dictated by more global differences in structure. Finally, MSL10 F553V and MSL10 G556V provided the necessary tools to establish that MSL10's ability to trigger cell death is independent of its ion channel function.
机译:机械敏感(MS)离子通道提供了一种通用的机制,可以感应和响应增加的膜张力。类MscS(MSL)10是来自拟南芥的相对研究透彻的MS离子通道,与细胞死亡信号传导有关。尚未研究MSL10氨基酸序列与其电导率,门控张力以及打开和关闭动力学之间的关系。在这里,我们确定了MSL10(TM6)的推测孔衬跨膜螺旋中的几个非极性残基,这些残基有助于这些基本通道特性。 F553和I554对于野生型通道电导和打开状态的稳定性至关重要。 G556是位于TM6中预测的纽结处的甘氨酸残基,对通道电导至关重要。与紧密同源的MSL8相比,MSL10的张力敏感性增强可能归因于F563,但其他通道特性似乎由结构上的整体差异决定。最后,MSL10 F553V和MSL10 G556V提供了必要的工具,以证明MSL10触发细胞死亡的能力与其离子通道功能无关。

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