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能量传递:Pdr5中的结构域间串扰

Transmitting the energy: interdomain cross-talk in Pdr5.

作者信息

Wagner Manuel, Doehl Katja, Schmitt Lutz

出版信息

Biol Chem. 2017 Feb 1;398(2):145-154. doi: 10.1515/hsz-2016-0247.

Abstract

ABC (ATP-binding cassette) transporters are ubiquitous integral membrane proteins catalyzing the active export or import of structurally and functionally unrelated compounds. In humans, these proteins are clinically and economically important, as their dysfunction is responsible for a number of diseases. In the case of multidrug resistance (MDR) ABC exporters, they particularly confer resistance to a broad spectrum of toxic compounds, placing them in the focus of clinical research. However, ABC-mediated drug resistance is not only restricted to humans. In yeast for example, MDR is called pleiotropic drug resistance (PDR). Important and well-studied members of the PDR subfamily of ABC transporters are Pdr5 from Saccharomyces cerevisiae and its homolog Cdr1 from Candida albicans. Mutational studies of these two transporters provided many insights into the complexity and conceivable mechanism of the interdomain cross-talk that transmits the energy gained from ATP hydrolysis to the substrate translocation process across the membrane. In this review, we summarize and discuss our current knowledge of the interdomain cross-talk as well as new results obtained for asymmetric ABC transporters and derive possible structural and functional implications for Pdr5.

摘要

ABC(ATP结合盒)转运蛋白是普遍存在的整合膜蛋白,可催化结构和功能不相关化合物的主动输出或输入。在人类中,这些蛋白在临床和经济方面都很重要,因为它们的功能障碍会引发多种疾病。就多药耐药(MDR)ABC外排转运蛋白而言,它们尤其能赋予对多种有毒化合物的抗性,使其成为临床研究的焦点。然而,ABC介导的耐药性不仅限于人类。例如在酵母中,MDR被称为多效耐药(PDR)。ABC转运蛋白PDR亚家族中重要且研究充分的成员包括酿酒酵母的Pdr5及其白色念珠菌的同源物Cdr1。对这两种转运蛋白的突变研究为结构域间相互作用的复杂性和可能机制提供了许多见解,这种相互作用将ATP水解获得的能量传递到跨膜底物转运过程中。在本综述中,我们总结并讨论了目前关于结构域间相互作用的知识以及不对称ABC转运蛋白的新结果,并推导了对Pdr5可能的结构和功能影响。

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