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characterization of three novel mechanosensitive channel activities in escherichia coli

Characterization of three novel mechanosensitive channel activities in Escherichia coli.

机构信息

School of Medical Sciences, Institute of Medical Sciences, University of Aberdeen, Aberdeen, Scotland, UK.

出版信息

Channels (Austin). 2012 Jul-Aug;6(4):272-81. doi: 10.4161/chan.20998. Epub 2012 Jul 1.

Abstract

Mechanosensitive channels sense elevated membrane tension that arises from rapid water influx occurring when cells move from high to low osmolarity environments (hypoosmotic shock). These non-specific channels in the cytoplasmic membrane release osmotically-active solutes and ions. The two major mechanosensitive channels in Escherichia coli are MscL and MscS. Deletion of both proteins severely compromises survival of hypoosmotic shock. However, like many bacteria, E. coli cells possess other MscS-type genes (kefA, ybdG, ybiO, yjeP and ynaI). Two homologs, MscK (kefA) and YbdG, have been characterized as mechanosensitive channels that play minor roles in maintaining cell integrity. Additional channel openings are occasionally observed in patches derived from mutants lacking MscS, MscK and MscL. Due to their rare occurrence, little is known about these extra pressure-induced currents or their genetic origins. Here we complete the identification of the remaining E. coli mechanosensitive channels YnaI, YbiO and YjeP. The latter is the major component of the previously described MscM activity (300 pS), while YnaI (100 pS) and YbiO (~1000 pS) were previously unknown. Expression of native YbiO is NaCl-specific and RpoS-dependent. A Δ7 strain was created with all seven E. coli mechanosensitive channel genes deleted. High level expression of YnaI, YbiO or YjeP proteins from a multicopy plasmid in the Δ7 strain (MJFGH) leads to substantial protection against hypoosmotic shock. Purified homologs exhibit high molecular masses that are consistent with heptameric assemblies. This work reveals novel mechanosensitive channels and discusses the regulation of their expression in the context of possible additional functions.

摘要

机械敏感通道感知快速水流入引起的膜张力升高,这种情况发生在细胞从高渗透压环境转移到低渗透压环境(低渗冲击)时。细胞质膜中的这些非特异性通道释放具有渗透压活性的溶质和离子。大肠杆菌中的两种主要机械敏感通道是 MscL 和 MscS。两种蛋白的缺失严重影响低渗冲击下的存活。然而,与许多细菌一样,大肠杆菌细胞还拥有其他 MscS 型基因(kefA、ybdG、ybiO、yjeP 和 ynaI)。两种同源物,MscK(kefA)和 YbdG,已被鉴定为机械敏感通道,它们在维持细胞完整性方面发挥次要作用。在缺乏 MscS、MscK 和 MscL 的突变体衍生的斑块中偶尔会观察到额外的通道开放。由于它们的罕见发生,人们对这些额外的压力诱导电流或其遗传起源知之甚少。在这里,我们完成了对大肠杆菌剩余机械敏感通道 YnaI、YbiO 和 YjeP 的鉴定。后者是先前描述的 MscM 活性的主要成分(约 300 pS),而 YnaI(100 pS)和 YbiO(1000 pS)则是先前未知的。YbiO 的天然表达是特异性依赖于 NaCl 和 RpoS 的。创建了一个缺失所有七种大肠杆菌机械敏感通道基因的Δ7 株。在Δ7 株(MJFGH)中,通过多拷贝质粒高水平表达 YnaI、YbiO 或 YjeP 蛋白,可显著提高对低渗冲击的抗性。纯化的同源物表现出与七聚体组装一致的高分子质量。这项工作揭示了新的机械敏感通道,并讨论了它们在可能的额外功能背景下的表达调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b6/3508906/021c334e1ee7/chan-6-272-g1.jpg

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