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Structural and Mechanistic Principles of ABC Transporters.
Annual Review of Biochemistry ( IF 12.1 ) Pub Date : 2020-06-22 , DOI: 10.1146/annurev-biochem-011520-105201
Christoph Thomas 1 , Robert Tampé 1
Affiliation  

ATP-binding cassette (ABC) transporters constitute one of the largest and most ancient protein superfamilies found in all living organisms. They function as molecular machines by coupling ATP binding, hydrolysis, and phosphate release to translocation of diverse substrates across membranes. The substrates range from vitamins, steroids, lipids, and ions to peptides, proteins, polysaccharides, and xenobiotics. ABC transporters undergo substantial conformational changes during substrate translocation. A comprehensive understanding of their inner workings thus requires linking these structural rearrangements to the different functional state transitions. Recent advances in single-particle cryogenic electron microscopy have not only delivered crucial information on the architecture of several medically relevant ABC transporters and their supramolecular assemblies, including the ATP-sensitive potassium channel and the peptide-loading complex, but also made it possible to explore the entire conformational space of these nanomachines under turnover conditions and thereby gain detailed mechanistic insights into their mode of action.

中文翻译:


ABC运输车的结构和机械原理。

ATP结合盒(ABC)转运蛋白是在所有活生物体中发现的最大,最古老的蛋白质超家族之一。它们通过耦合ATP结合,水解和磷酸盐释放与多种底物跨膜转运而充当分子机器。底物的范围从维生素,类固醇,脂质和离子到肽,蛋白质,多糖和异种生物。ABC转运蛋白在底物移位过程中发生构象变化。因此,要全面了解其内部工作原理,就需要将这些结构重排链接到不同的功能状态转换。

更新日期:2020-06-23
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