Structure and Mechanism of Human ABC Transporters.

IF 10.4 1区 生物学 Q1 BIOPHYSICS
Annual Review of Biophysics Pub Date : 2023-05-09 Epub Date: 2023-02-03 DOI:10.1146/annurev-biophys-111622-091232
Amer Alam, Kaspar P Locher
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引用次数: 12

Abstract

ABC transporters are essential for cellular physiology. Humans have 48 ABC genes organized into seven distinct families. Of these genes, 44 (in five distinct families) encode for membrane transporters, of which several are involved in drug resistance and disease pathways resulting from transporter dysfunction. Over the last decade, advances in structural biology have vastly expanded our mechanistic understanding of human ABC transporter function, revealing details of their molecular arrangement, regulation, and interactions, facilitated in large part by advances in cryo-EM that have rendered hitherto inaccessible targets amenable to high-resolution structural analysis. As a result, experimentally determined structures of multiple members of each of the five families of ABC transporters in humans are now available. Here we review this recent progress, highlighting the physiological relevance of human ABC transporters and mechanistic insights gleaned from their direct structure determination. We also discuss the impact and limitations of model systems and structure prediction methods in understanding human ABC transporters and discuss current challenges and future research directions.

人类ABC转运蛋白的结构和机制。
ABC转运蛋白对细胞生理至关重要。人类有48个ABC基因,分为7个不同的家族。在这些基因中,44个(在5个不同的家族中)编码膜转运蛋白,其中一些参与了由转运蛋白功能障碍引起的耐药性和疾病途径。在过去的十年中,结构生物学的进步极大地扩展了我们对人类ABC转运蛋白功能的机制理解,揭示了它们的分子排列、调控和相互作用的细节,这在很大程度上得益于冷冻电镜技术的进步,这使得迄今为止难以接近的目标可以进行高分辨率的结构分析。因此,现在可以通过实验确定人类ABC转运蛋白5个家族中每个家族的多个成员的结构。在这里,我们回顾了最近的进展,强调了人类ABC转运蛋白的生理相关性和从它们的直接结构确定中收集到的机制见解。我们还讨论了模型系统和结构预测方法对理解人类ABC转运蛋白的影响和局限性,并讨论了当前面临的挑战和未来的研究方向。
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来源期刊
Annual Review of Biophysics
Annual Review of Biophysics 生物-生物物理
CiteScore
21.00
自引率
0.00%
发文量
25
期刊介绍: The Annual Review of Biophysics, in publication since 1972, covers significant developments in the field of biophysics, including macromolecular structure, function and dynamics, theoretical and computational biophysics, molecular biophysics of the cell, physical systems biology, membrane biophysics, biotechnology, nanotechnology, and emerging techniques.
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