Xue Jing, Zeng Weizhong, John Scott, Attiq Nicole, Ottolia Michela, Jiang Youxing
Department of Physiology, The University of Texas Southwestern Medical Center, Dallas, United States.
Department of Biophysics, The University of Texas Southwestern Medical Center, Dallas, United States.
Elife. 2025 May 28;14:RP105396. doi: 10.7554/eLife.105396.
Na/Ca exchangers (NCXs) transport Ca across the plasma membrane in exchange for Na and play a vital role in maintaining cellular Ca homeostasis. Our previous structural study of human cardiac NCX1 (HsNCX1) reveals the overall architecture of the eukaryotic exchanger and the formation of the inactivation assembly by the intracellular regulatory domain that underlies the cytosolic Na-dependent inactivation and Ca activation of NCX1. Here, we present the cryo-EM structures of HsNCX1 in complex with a physiological activator phosphatidylinositol 4,5-bisphosphate (PIP), or pharmacological inhibitor SEA0400, that enhances the inactivation of the exchanger. We demonstrate that PIP binding stimulates NCX1 activity by inducing a conformational change at the interface between the transmembrane (TM) and cytosolic domains that destabilizes the inactivation assembly. In contrast, SEA0400 binding in the TM domain of NCX1 stabilizes the exchanger in an inward-facing conformation that facilitates the formation of the inactivation assembly, thereby promoting the Na-dependent inactivation of NCX1. Thus, this study reveals the structural basis of PIP activation and SEA0400 inhibition of NCX1 and provides some mechanistic understandings of cellular regulation and pharmacology of NCX family proteins.
钠钙交换体(NCXs)通过与钠进行交换来跨质膜转运钙,在维持细胞钙稳态中发挥着至关重要的作用。我们之前对人类心脏NCX1(HsNCX1)的结构研究揭示了真核生物交换体的整体结构以及由细胞内调节结构域形成的失活组件,该组件是NCX1胞质钠依赖性失活和钙激活的基础。在此,我们展示了与生理激活剂磷脂酰肌醇4,5-二磷酸(PIP)或增强交换体失活的药理抑制剂SEA0400结合的HsNCX1的冷冻电镜结构。我们证明,PIP结合通过在跨膜(TM)结构域和胞质结构域之间的界面处诱导构象变化来刺激NCX1活性,这种变化会破坏失活组件的稳定性。相比之下,SEA0400在NCX1的TM结构域中的结合使交换体稳定在向内的构象中,这有利于失活组件的形成,从而促进NCX1的钠依赖性失活。因此,这项研究揭示了PIP激活和SEA0400抑制NCX1的结构基础,并提供了对NCX家族蛋白的细胞调节和药理学的一些机制性理解。