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哺乳动物呼吸复合物 I 被药物双胍类抑制的结构基础。

Structural basis of mammalian respiratory complex I inhibition by medicinal biguanides.

机构信息

MRC Mitochondrial Biology Unit, University of Cambridge, The Keith Peters Building, Cambridge Biomedical Campus, Cambridge CB2 0XY, UK.

Structural Biology Laboratory and York Biomedical Research Institute, Department of Chemistry, The University of York, York YO10 5DD, UK.

出版信息

Science. 2023 Jan 27;379(6630):351-357. doi: 10.1126/science.ade3332. Epub 2023 Jan 26.

Abstract

The molecular mode of action of biguanides, including the drug metformin, which is widely used in the treatment of diabetes, is incompletely characterized. Here, we define the inhibitory drug-target interaction(s) of a model biguanide with mammalian respiratory complex I by combining cryo-electron microscopy and enzyme kinetics. We interpret these data to explain the selectivity of biguanide binding to different enzyme states. The primary inhibitory site is in an amphipathic region of the quinone-binding channel, and an additional binding site is in a pocket on the intermembrane-space side of the enzyme. An independent local chaotropic interaction, not previously described for any drug, displaces a portion of a key helix in the membrane domain. Our data provide a structural basis for biguanide action and enable the rational design of medicinal biguanides.

摘要

双胍类药物(包括广泛用于治疗糖尿病的药物二甲双胍)的分子作用模式尚未完全确定。在这里,我们通过结合冷冻电子显微镜和酶动力学,定义了模型双胍类药物与哺乳动物呼吸复合物 I 的抑制性药物靶标相互作用。我们解释这些数据以解释双胍类药物与不同酶状态结合的选择性。主要的抑制部位位于醌结合通道的一个两亲性区域,另外一个结合部位位于酶的膜间隙侧的一个口袋中。一个以前没有描述过的独立的局部变构相互作用,取代了膜结构域中关键螺旋的一部分。我们的数据为双胍类药物的作用提供了结构基础,并能够对药用双胍类药物进行合理设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9898/7614227/25f2590c652b/EMS163679-f001.jpg

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