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双氢链霉素直接结合、调节并穿过MscL通道孔。

Dihydrostreptomycin Directly Binds to, Modulates, and Passes through the MscL Channel Pore.

作者信息

Wray Robin, Iscla Irene, Gao Ya, Li Hua, Wang Junmei, Blount Paul

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas, United States of America.

School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.

出版信息

PLoS Biol. 2016 Jun 9;14(6):e1002473. doi: 10.1371/journal.pbio.1002473. eCollection 2016 Jun.

Abstract

The primary mechanism of action of the antibiotic dihydrostreptomycin is binding to and modifying the function of the bacterial ribosome, thus leading to decreased and aberrant translation of proteins; however, the routes by which it enters the bacterial cell are largely unknown. The mechanosensitive channel of large conductance, MscL, is found in the vast majority of bacterial species, where it serves as an emergency release valve rescuing the cell from sudden decreases in external osmolarity. While it is known that MscL expression increases the potency of dihydrostreptomycin, it has remained unclear if this effect is due to a direct interaction. Here, we use a combination of genetic screening, MD simulations, and biochemical and mutational approaches to determine if dihydrostreptomycin directly interacts with MscL. Our data strongly suggest that dihydrostreptomycin binds to a specific site on MscL and modifies its conformation, thus allowing the passage of K+ and glutamate out of, and dihydrostreptomycin into, the cell.

摘要

抗生素双氢链霉素的主要作用机制是与细菌核糖体结合并改变其功能,从而导致蛋白质翻译减少和异常;然而,它进入细菌细胞的途径在很大程度上尚不清楚。大电导机械敏感通道(MscL)存在于绝大多数细菌物种中,在那里它作为一个应急释放阀,将细胞从外部渗透压的突然降低中拯救出来。虽然已知MscL的表达会增加双氢链霉素的效力,但这种效应是否由于直接相互作用仍不清楚。在这里,我们结合遗传筛选、分子动力学模拟以及生化和突变方法来确定双氢链霉素是否直接与MscL相互作用。我们的数据强烈表明,双氢链霉素与MscL上的一个特定位点结合并改变其构象,从而使钾离子和谷氨酸从细胞中流出,双氢链霉素进入细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3907/4900634/572da4e82fa9/pbio.1002473.g001.jpg

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