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利用粗粒度模型对蓝细菌紫膜配体门控离子通道麻醉调节的功能关键残基和变构途径进行研究。

Study, by use of coarse-grained models, of the functionally crucial residues and allosteric pathway of anesthetic regulation of the Gloeobacter violaceus ligand-gated ion channel.

作者信息

Li Xing Yuan, Xie Fang, Zhang Jing Chao, Su Ji Guo

机构信息

College of Science, Yanshan University, Qinhuangdao, 066004, China.

出版信息

Eur Biophys J. 2014 Dec;43(12):623-30. doi: 10.1007/s00249-014-0992-7. Epub 2014 Nov 4.

Abstract

Although pentameric ligand-gated ion channels (pLGICs) have been found to be the targets of general anesthetics, the mechanism of the effects of anesthetics on pLGICs remains elusive. pLGICs from Gloeobacter violaceus (GLIC) can be inhibited by the anesthetic ketamine. X-ray crystallography has shown that the ketamine binding site is distant from the channel gate of the GLIC. It is still not clear how ketamine controls the function of the GLIC by long-range allosteric regulation. In this work, the functionally crucial residues and allosteric pathway of anesthetic regulation of the GLIC were identified by use of a coarse-grained thermodynamic method developed by our group. In our method, the functionally crucial sites were identified as the residues thermodynamically coupled with binding of ketamine. The results from calculation were highly consistent with experimental data. Our study aids understanding of the mechanism of the anesthetic action of ketamine on the GLIC by long-range allosteric modulation.

摘要

尽管已发现五聚体配体门控离子通道(pLGICs)是全身麻醉药的作用靶点,但麻醉药对pLGICs产生作用的机制仍不清楚。来自紫球藻(GLIC)的pLGICs可被麻醉药氯胺酮抑制。X射线晶体学表明,氯胺酮结合位点距离GLIC的通道门较远。目前仍不清楚氯胺酮如何通过远程变构调节来控制GLIC的功能。在这项工作中,我们利用本团队开发的粗粒度热力学方法,确定了GLIC麻醉调节的功能关键残基和变构途径。在我们的方法中,功能关键位点被确定为与氯胺酮结合存在热力学耦合的残基。计算结果与实验数据高度一致。我们的研究有助于理解氯胺酮通过远程变构调节对GLIC产生麻醉作用的机制。

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