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去脂化调控机械敏感通道门控。

Mechanosensitive channel gating by delipidation.

机构信息

Biocenter and Rudolf-Virchow-Zentrum, Universität Würzburg, 97080 Würzburg, Germany.

Lehrstuhl für Botanik I, Julius-Maximilians-Universität Würzburg, 97082 Würzburg, Germany.

出版信息

Proc Natl Acad Sci U S A. 2021 Aug 17;118(33). doi: 10.1073/pnas.2107095118.

Abstract

The mechanosensitive channel of small conductance (MscS) protects bacteria against hypoosmotic shock. It can sense the tension in the surrounding membrane and releases solutes if the pressure in the cell is getting too high. The membrane contacts MscS at sensor paddles, but lipids also leave the membrane and move along grooves between the paddles to reside as far as 15 Å away from the membrane in hydrophobic pockets. One sensing model suggests that a higher tension pulls lipids from the grooves back to the membrane, which triggers gating. However, it is still unclear to what degree this model accounts for sensing and what contribution the direct interaction of the membrane with the channel has. Here, we show that MscS opens when it is sufficiently delipidated by incubation with the detergent dodecyl-β-maltoside or the branched detergent lauryl maltose neopentyl glycol. After addition of detergent-solubilized lipids, it closes again. These results support the model that lipid extrusion causes gating: Lipids are slowly removed from the grooves and pockets by the incubation with detergent, which triggers opening. Addition of lipids in micelles allows lipids to migrate back into the pockets, which closes the channel even in the absence of a membrane. Based on the distribution of the aliphatic chains in the open and closed conformation, we propose that during gating, lipids leave the complex on the cytosolic leaflet at the height of highest lateral tension, while on the periplasmic side, lipids flow into gaps, which open between transmembrane helices.

摘要

小电导机械敏感通道(MscS)可保护细菌免受低渗冲击。它可以感知周围膜的张力,如果细胞内的压力过高,就会释放溶质。膜在传感器桨叶处与 MscS 接触,但脂质也会离开膜,并沿桨叶之间的凹槽移动,在疏水区的口袋中最远可移动到距离膜 15Å 的位置。一种感应模型表明,较高的张力会将脂质从凹槽中拉回膜,从而触发门控。然而,目前仍不清楚该模型在多大程度上解释了感应,以及膜与通道的直接相互作用有何贡献。在这里,我们表明 MscS 在与去污剂十二烷基-β-麦芽糖或支链去污剂月桂基麦芽糖新戊二醇孵育时,由于去脂而充分打开。加入去污剂溶解的脂质后,它再次关闭。这些结果支持了脂质挤出引发门控的模型:通过与去污剂孵育,脂质会从凹槽和口袋中缓慢去除,从而触发打开。在胶束中添加脂质可以使脂质重新迁移到口袋中,即使没有膜,也能关闭通道。基于开放和关闭构象中脂链的分布,我们提出在门控过程中,脂质从最高侧向张力处的细胞质小叶上的复合物中离开,而在周质侧,脂质流入跨膜螺旋之间的间隙中。

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