Department of Pharmaceutical Sciences, School of Pharmacy, University of Connecticut, Storrs, CT 06269, USA.
Department of Physiology and Pharmacology, Faculty of Medicine, Tel-Aviv University, Tel Aviv 69978, Israel.
Int J Mol Sci. 2024 Jun 24;25(13):6909. doi: 10.3390/ijms25136909.
Consecutive interactions of 3Na or 1Ca with the Na/Ca exchanger (NCX) result in an alternative exposure (access) of the cytosolic and extracellular vestibules to opposite sides of the membrane, where ion-induced transitions between the outward-facing (OF) and inward-facing (IF) conformational states drive a transport cycle. Here, we investigate sub-state populations of apo and ion-bound species in the OF and IF states by analyzing detergent-solubilized and nanodisc-reconstituted preparations of NCX_Mj with F-NMR. The F probe was covalently attached to the cysteine residues at entry locations of the cytosolic and extracellular vestibules. Multiple sub-states of apo and ion-bound species were observed in nanodisc-reconstituted (but not in detergent-solubilized) NCX_Mj, meaning that the lipid-membrane environment preconditions multiple sub-state populations toward the OF/IF swapping. Most importantly, ion-induced sub-state redistributions occur within each major (OF or IF) state, where sub-state interconversions may precondition the OF/IF swapping. In contrast with large changes in population redistributions, the sum of sub-state populations within each inherent state (OF or IF) remains nearly unchanged upon ion addition. The present findings allow the further elucidation of structure-dynamic modules underlying ion-induced conformational changes that determine a functional asymmetry of ion access/translocation at opposite sides of the membrane and ion transport rates concurring physiological demands.
连续的 3Na 或 1Ca 与钠钙交换器 (NCX) 的相互作用导致细胞溶质和细胞外前庭的交替暴露 (进入) 到膜的相对侧,其中离子诱导的外向 (OF) 和内向 (IF) 构象状态之间的转变驱动运输循环。在这里,我们通过分析用 F-NMR 分析去污剂溶解和纳米盘重建的 NCX_Mj 制剂,研究了无蛋白和离子结合物种在 OF 和 IF 状态下的亚状态群体。F 探针通过共价键连接到细胞溶质和细胞外前庭进入位置的半胱氨酸残基上。在纳米盘重建的 NCX_Mj 中观察到无蛋白和离子结合物种的多个亚状态(但在去污剂溶解的 NCX_Mj 中没有观察到),这意味着脂膜环境预先确定了 OF/IF 交换的多个亚状态群体。最重要的是,离子诱导的亚状态重新分布发生在每个主要(OF 或 IF)状态内,其中亚状态相互转化可能预先确定 OF/IF 交换。与群体重新分布的巨大变化相比,在离子加入时,每个固有状态(OF 或 IF)内的亚状态群体之和几乎保持不变。目前的发现允许进一步阐明离子诱导构象变化的结构动态模块,这些模块决定了膜相对侧离子进入/易位的功能不对称性和与生理需求一致的离子运输速率。