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多药耐药 ABC 转运蛋白 DrrAB 的构象变化:基于荧光的研究底物结合的方法。

Conformational changes in a multidrug resistance ABC transporter DrrAB: Fluorescence-based approaches to study substrate binding.

机构信息

Department of Biology, Georgia State University, Atlanta, GA, 30303, United States.

Department of Biology, Georgia State University, Atlanta, GA, 30303, United States.

出版信息

Arch Biochem Biophys. 2018 Nov 15;658:31-45. doi: 10.1016/j.abb.2018.09.017. Epub 2018 Sep 20.

Abstract

Bacterial multidrug transporter DrrAB exhibits overlapping substrate specificity with mammalian P-glycoprotein. DrrA hydrolyzes ATP, and the energy is transduced to carrier DrrB resulting in export of drugs. Previous studies suggested that DrrB contains a large and flexible drug-binding pocket made of aromatic residues contributed by several transmembrane helices with different drugs binding to both specific and shared residues in this pocket. However, direct binding of drugs to DrrAB or the mechanism of substrate-induced conformational changes between DrrA and DrrB has so far not been investigated. We used two fluorescence-based approaches to determine substrate binding to purified DrrAB. Our analysis shows that DrrB binds drugs with variable affinities and contains multiple drug binding sites. This work also provides evidence for two asymmetric nucleotide binding sites in DrrA with strikingly different binding affinities. Using targeted fluorescence labeling, we provide clear evidence of long-range conformational changes occurring between DrrA and DrrB. It is proposed that the transduction pathway from the nucleotide-binding DrrA subunit to the substrate binding DrrB subunit includes Q-loop and CREEM motifs in DrrA and EAA-like motif in DrrB. This study lays a solid groundwork for examining roles of various conserved regions of DrrA and DrrB in transduction of conformational changes.

摘要

细菌多药转运蛋白 DrrAB 与哺乳动物 P-糖蛋白具有重叠的底物特异性。DrrA 水解 ATP,能量被传递给载体 DrrB,导致药物的外排。先前的研究表明,DrrB 含有一个由几个跨膜螺旋贡献的大而灵活的药物结合口袋,这些螺旋的芳香残基与口袋中的特定和共享残基结合不同的药物。然而,迄今为止,尚未研究药物与 DrrAB 的直接结合或底物诱导的 DrrA 和 DrrB 之间构象变化的机制。我们使用两种基于荧光的方法来确定纯化的 DrrAB 对底物的结合。我们的分析表明,DrrB 以可变亲和力结合药物,并包含多个药物结合位点。这项工作还为 DrrA 中存在两个具有明显不同结合亲和力的不对称核苷酸结合位点提供了证据。通过靶向荧光标记,我们提供了 DrrA 和 DrrB 之间发生长程构象变化的明确证据。提出的从核苷酸结合的 DrrA 亚基到底物结合的 DrrB 亚基的转导途径包括 DrrA 中的 Q-环和 CREEM 基序以及 DrrB 中的 EAA 样基序。这项研究为研究 DrrA 和 DrrB 的各种保守区域在构象变化转导中的作用奠定了坚实的基础。

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