首页> 外文期刊>Molecular Microbiology >Functional and structural conservation in the mechanosensitive channel MscL implicates elements crucial for mechanosensation.
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Functional and structural conservation in the mechanosensitive channel MscL implicates elements crucial for mechanosensation.

机译:机械敏感通道MscL中的功能和结构保守性涉及对于机械传感至关重要的元素。

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摘要

mscL encodes a channel in Escherichia coli that is opened by membrane stretch force, probably serving as an osmotic gauge. Sequences more or less similar to mscL are found in other bacteria, but the degree of conserved function has been unclear. We subcloned and expressed these putative homologues in E. coli and examined their products under patch clamp. Here, we show that each indeed encodes a conserved mechanosensitive channel activity, consistent with the interpretation that this is an important and primary function of the protein in a wide range of bacteria. Although similar, channels of different bacteria differ in kinetics and their degree of mechanosensitivity. Comparison of the primary sequence of these proteins reveals two highly conserved regions, corresponding to domains previously shown to be important for the function of the wild-type E. coli channel, and a C-terminal region that is not conserved in all species. This structural conservation is providing insight into regions of this molecule that are vital to its role as a mechanosensitive channel and may have broader implications for the understanding of other mechanosensitive systems.
机译:mscL编码大肠杆菌中的一个通道,该通道通过膜拉伸力打开,可能用作渗透压测量仪。在其他细菌中发现了与mscL相似的序列,但保守功能的程度尚不清楚。我们在大肠杆菌中亚克隆并表达了这些推定的同源物,并在膜片钳下检查了它们的产物。在这里,我们表明每个确实编码了保守的机械敏感通道活性,这与以下解释一致:这是蛋白质在多种细菌中的重要且主要功能。虽然相似,但不同细菌的通道在动力学及其机械敏感性方面有所不同。这些蛋白质的一级序列的比较揭示了两个高度保守的区域,对应于先前显示对野生型大肠杆菌通道的功能很重要的域,以及一个并非在所有物种中都保守的C端区域。这种结构保守性提供了对该分子对其机械敏感通道的作用至关重要的区域的见识,并且可能对理解其他机械敏感系统具有更广泛的意义。

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