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在大肠杆菌细胞渗透压下降期间,通过机械敏感通道MscL释放硫氧还蛋白。

Release of thioredoxin via the mechanosensitive channel MscL during osmotic downshock of Escherichia coli cells.

作者信息

Ajouz B, Berrier C, Garrigues A, Besnard M, Ghazi A

机构信息

Laboratoire des Biomembranes, ERS CNRS 571, Bât. 430, Université Paris-Sud 91405 Orsay Cedex, France.

出版信息

J Biol Chem. 1998 Oct 9;273(41):26670-4. doi: 10.1074/jbc.273.41.26670.

Abstract

Escherichia coli cells possess several mechanosensitive ion channels but only MscL, the channel with the highest conductance, which is activated at the highest membrane tension, has been cloned. We investigated the putative involvement of MscL in the effluxes caused by osmotic downshock. Osmotic shock caused the release of potassium glutamate, trehalose, and glycine betaine from wild type cells and cells lacking MscL. There was no difference between the two strains, but the extreme rapidity of the efflux process, as shown herein for glycine betaine, suggests that it is channel-mediated. Osmotic downshock also induces the release of some cytosolic proteins from EDTA-treated cells. We investigated the release of thioredoxin. This protein was totally released from wild type cells but was retained by MscL- cells. Release was restored by expression of the gene coding for MscL. Thus MscL is not necessary for the excretion of osmoprotectants, but it does open in vivo during shock and catalyzes the efflux of thioredoxin and possibly other small cytosolic proteins. It follows that the other mechanosensitive channels, which are known to be activated at lower tension, must also open during osmotic shock. Their opening and that of MscL could account for the rapid release of osmolytes.

摘要

大肠杆菌细胞拥有多种机械敏感离子通道,但只有传导率最高、在最高膜张力下被激活的MscL通道被克隆出来。我们研究了MscL在渗透休克引起的外流中的可能作用。渗透休克导致野生型细胞和缺乏MscL的细胞释放谷氨酸钾、海藻糖和甘氨酸甜菜碱。这两种菌株之间没有差异,但外流过程的极快速性,如本文所示的甘氨酸甜菜碱的情况,表明它是由通道介导的。渗透休克还会诱导经乙二胺四乙酸(EDTA)处理的细胞释放一些胞质蛋白。我们研究了硫氧还蛋白的释放情况。这种蛋白从野生型细胞中完全释放出来,但在缺乏MscL的细胞中被保留。通过表达编码MscL的基因可恢复释放。因此,MscL对于渗透保护剂的排泄不是必需的,但它在休克期间确实会在体内打开,并催化硫氧还蛋白以及可能其他小的胞质蛋白的外流。由此可见,已知在较低张力下被激活的其他机械敏感通道在渗透休克期间也必定会打开。它们与MscL的打开可能解释了渗透溶质的快速释放。

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