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Bacterial Mechanosensors
Annual Review of Physiology ( IF 15.7 ) Pub Date : 2018-02-12 00:00:00 , DOI: 10.1146/annurev-physiol-021317-121351
Charles D. Cox 1, 2 , Navid Bavi 1, 2 , Boris Martinac 1, 2
Affiliation  

Bacteria represent one of the most evolutionarily successful groups of organisms to inhabit Earth. Their world is awash with mechanical cues, probably the most ancient form of which are osmotic forces. As a result, they have developed highly robust mechanosensors in the form of bacterial mechanosensitive (MS) channels. These channels are essential in osmoregulation, and in this setting, provide one of the simplest paradigms for the study of mechanosensory transduction. We explore the past, present, and future of bacterial MS channels, including the alternate mechanosensory roles that they may play in complex microbial communities. Central to all of these functions is their ability to change conformation in response to mechanical stimuli. We discuss their gating according to the force-from-lipids principle and its applicability to eukaryotic MS channels. This includes the new paradigms emerging for bilayer-mediated channel mechanosensitivity and how this molecular detail may provide advances in both industry and medicine.

中文翻译:


细菌机械传感器

细菌代表了居住在地球上最进化成功的生物体之一。他们的世界充斥着机械线索,其中最古老的形式可能是渗透力。结果,他们开发了以细菌机械敏感(MS)通道形式的高度耐用的机械传感器。这些通道在渗透调节中是必不可少的,并且在这种情况下,为机械感测转导的研究提供了最简单的范例之一。我们探讨了细菌MS通道的过去,现在和未来,包括它们在复杂微生物群落中可能扮演的其他机械感官角色。所有这些功能的核心是它们响应机械刺激而改变构象的能力。我们讨论了从血脂的原理及其对真核MS通道的适用性的门控。这包括针对双层介导的通道机械敏感性出现的新范例,以及这种分子细节如何在工业和医学上提供进步。

更新日期:2018-02-12
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