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MscCG(一种类似于 MscS 的机械敏感通道)在谷氨酸棒杆菌氨基酸转运中的进化特化作用。

Evolutionary specialization of MscCG, an MscS-like mechanosensitive channel, in amino acid transport in Corynebacterium glutamicum.

机构信息

Molecular Cardiology and Biophysics Division, Victor Chang Cardiac Research Institute, Darlinghurst, NSW, 2010, Australia.

Department of Green and Sustainable Chemistry, Tokyo Denki University, 5 Asahi-cho, Senju, Adachi-ku, Tokyo, 120-8551, Japan.

出版信息

Sci Rep. 2018 Aug 27;8(1):12893. doi: 10.1038/s41598-018-31219-6.

Abstract

MscCG, a mechanosensitive channel of Corynebacterium glutamicum provides a major export mechanism for glutamate in this Gram-positive bacterium, which has for many years been used for industrial production of glutamate and other amino acids. The functional characterization of MscCG is therefore, of great significance to understand its conductive properties for different amino acids. Here we report the first successful giant spheroplast preparation of C. glutamicum amenable to the patch clamp technique, which enabled us to investigate mechanosensitive channel activities of MscCG in the native membrane of this bacterium. Single channel recordings from these spheroplasts revealed the presence of three types of mechanosensitive channels, MscCG, MscCG2, and CgMscL, which differ largely from each other in their conductance and mechanosensitivity. MscCG has a relatively small conductance of ~340 pS followed by an intermediate MscCG2 conductance of ~1.0 nS and comparably very large conductance of 3.7 nS exhibited by CgMscL. By applying Laplace's law, we determined that very moderate membrane tension of ~5.5 mN/m was required for half activation of MscCG compared to ~12 mN/m required for half activation of both MscCG2 and CgMscL. Furthermore, by combining the micropipette aspiration technique with molecular dynamics simulations we measured mechanical properties of the C. glutamicum membrane, whose area elasticity module of K ≈ 15 mN/m is characteristic of a very soft membrane compared to the three times larger area expansion modulus of K ≈ 44 mN/m of the more elastic E. coli membrane. Moreover, we demonstrate that the "soft" properties of the C. glutamicum membrane have a significant impact on the MscCG gating characterized by a strong voltage-dependent hysteresis in the membrane of C. glutamicum compared to a complete absence of the hysteresis in the E. coli cell membrane. We thus propose that MscCG has evolved and adapted as an MscS-like channel to the mechanical properties of the C. glutamicum membrane enabling the channel to specialize in transport of amino acids such as glutamate, which are major osmolytes helping the bacterial cells survive extreme osmotic stress.

摘要

MscCG 是谷氨酸棒杆菌的一种机械敏感通道,为该革兰氏阳性菌中的谷氨酸提供了主要的外排机制。多年来,谷氨酸棒杆菌一直被用于工业生产谷氨酸和其他氨基酸。因此,MscCG 的功能特征对于了解其对不同氨基酸的导电特性具有重要意义。在这里,我们报告了首次成功制备谷氨酸棒杆菌的巨球形体,使其适用于膜片钳技术,从而使我们能够在该细菌的天然膜上研究 MscCG 的机械敏感通道活性。来自这些巨球形体的单通道记录显示存在三种类型的机械敏感通道,即 MscCG、MscCG2 和 CgMscL,它们在电导和机械敏感性方面差异很大。MscCG 的电导相对较小,约为 340 pS,其次是中等大小的 MscCG2 电导,约为 1.0 nS,而 CgMscL 的电导则非常大,约为 3.7 nS。通过应用拉普拉斯定律,我们确定 MscCG 的半激活需要约 5.5 mN/m 的适度膜张力,而 MscCG2 和 CgMscL 的半激活则需要约 12 mN/m 的膜张力。此外,通过将微量移液器抽吸技术与分子动力学模拟相结合,我们测量了谷氨酸棒杆菌膜的力学性质,其面积弹性模量 K≈15 mN/m 与更具弹性的大肠杆菌膜的 K≈44 mN/m 的面积扩张模量相比,具有非常柔软的膜的特征。此外,我们证明了谷氨酸棒杆菌膜的“柔软”特性对 MscCG 门控有重大影响,与大肠杆菌细胞膜中完全不存在滞后相比,谷氨酸棒杆菌细胞膜中的滞后非常明显。因此,我们提出 MscCG 已经进化并适应了谷氨酸棒杆菌膜的力学特性,使通道能够专门运输谷氨酸等氨基酸,这些氨基酸是帮助细菌细胞在极端渗透压胁迫下存活的主要渗透物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa1b/6110860/22b645baa43d/41598_2018_31219_Fig1_HTML.jpg

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