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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Comparison of mechanistic transport cycle models of ABC exporters
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Comparison of mechanistic transport cycle models of ABC exporters

机译:ABC出口商机械运输周期模型的比较

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摘要

ABC (ATP binding cassette) transporters, ubiquitous in all kingdoms of life, carry out essential substrate transport reactions across cell membranes. Their transmembrane domains bind and translocate substrates and are connected to a pair of nucleotide binding domains, which bind and hydrolyze ATP to energize import or export of substrates. Over four decades of investigations into ABC transporters have revealed numerous details from atomic-level structural insights to their functional and physiological roles. Despite all these advances, a comprehensive understanding of the mechanistic principles of ABC transporter function remains elusive. The human multidrug resistance transporter ABCB1, also referred to as P-glycoprotein (P-gp), is one of the most intensively studied ABC exporters. Using ABCB1 as the reference point, we aim to compare the dominating mechanistic models of substrate transport and ATP hydrolysis for ABC exporters and to highlight the experimental and computational evidence in their support. In particular, we point outin silicostudies that enhance and complement available biochemical data. “This article is part of a Special Issue entitled: Beyond the Structure-Function Horizon of Membrane Proteins edited by Ute Hellmich, Rupak Doshi and Benjamin McIlwain.”.
机译:ABC(ATP绑定盒)运输司,普遍存在的所有王国,贯穿细胞膜的必需基质传输反应。它们的跨膜结构域结合和翻译基质,并连接到一对核苷酸结合结构域,其结合和水解ATP以激励基材的进出口或出口。超过四十年的ABC运输车调查揭示了从原子水平结构见解对其功能和生理作用的众多细节。尽管所有这些进步,但全面了解ABC运输函数功能的机械原则仍然难以捉摸。人类多药耐药性转运蛋白ABCB1也称为P-糖蛋白(P-GP),是最集中研究的ABC出口商之一。使用ABCB1作为参考点,我们的目标是比较ABC出口商的基板输送和ATP水解的主导机制模型,并突出了他们支持的实验和计算证据。特别是,我们指出了增强和补充可用生化数据的硅化剂。 “本文是题为特别问题的一部分:超出由Ute Hellmich,Rupak Doshi和Benjamin McIlwain编辑的膜蛋白的结构功能。”。

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