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酵母 V 复合物的冷冻电镜解析揭示了大环内酯类 V-ATP 酶抑制剂的独特结合位点。

Cryo-EM of the Yeast V Complex Reveals Distinct Binding Sites for Macrolide V-ATPase Inhibitors.

机构信息

Molecular Medicine Program, The Hospital for Sick Children, Toronto, Canada M5G0A4.

Department of Medical Biophysics, The University of Toronto, Toronto, Canada M5G1L7.

出版信息

ACS Chem Biol. 2022 Mar 18;17(3):619-628. doi: 10.1021/acschembio.1c00894. Epub 2022 Feb 11.

Abstract

Vacuolar-type adenosine triphosphatases (V-ATPases) are proton pumps found in almost all eukaryotic cells. These enzymes consist of a soluble catalytic V region that hydrolyzes ATP and a membrane-embedded V region responsible for proton translocation. V-ATPase activity leads to acidification of endosomes, phagosomes, lysosomes, secretory vesicles, and the trans-Golgi network, with extracellular acidification occurring in some specialized cells. Small-molecule inhibitors of V-ATPase have played a crucial role in elucidating numerous aspects of cell biology by blocking acidification of intracellular compartments, while therapeutic use of V-ATPase inhibitors has been proposed for the treatment of cancer, osteoporosis, and some infections. Here, we determine structures of the isolated V complex from bound to two well-known macrolide inhibitors: bafilomycin A1 and archazolid A. The structures reveal different binding sites for the inhibitors on the surface of the proton-carrying c ring, with only a small amount of overlap between the two sites. Binding of both inhibitors is mediated primarily through van der Waals interactions in shallow pockets and suggests that the inhibitors block rotation of the ring. Together, these structures indicate the existence of a large chemical space available for V-ATPase inhibitors that block acidification by binding the c ring.

摘要

液泡型三磷酸腺苷酶(V-ATPases)是几乎所有真核细胞中存在的质子泵。这些酶由可溶的催化 V 区组成,该区域可水解 ATP,还有一个膜结合的 V 区,负责质子转运。V-ATPase 的活性导致内体、吞噬体、溶酶体、分泌囊泡和反式高尔基体网络酸化,一些特化细胞发生细胞外酸化。V-ATPase 的小分子抑制剂通过阻断细胞内隔室酸化,在阐明细胞生物学的众多方面发挥了关键作用,而 V-ATPase 抑制剂的治疗用途已被提议用于治疗癌症、骨质疏松症和某些感染。在这里,我们确定了与两种知名大环内酯抑制剂结合的分离 V 复合物的结构:巴弗洛霉素 A1 和阿奇霉素 A。这些结构揭示了抑制剂在质子传递 c 环表面的不同结合位点,两个位点之间只有少量重叠。两种抑制剂的结合主要通过浅口袋中的范德华相互作用介导,并表明抑制剂阻止了环的旋转。这些结构共同表明,存在一个可用于 V-ATPase 抑制剂的大型化学空间,通过结合 c 环来阻断酸化。

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