Department of Biomedical Sciences and Public Health, School of Medicine, University "Politecnica delle Marche", Via Tronto 10/A, 60126, Ancona, Italy.
Department of Biomedical Sciences and Public Health, School of Medicine, University "Politecnica delle Marche", Via Tronto 10/A, 60126, Ancona, Italy.
Cell Calcium. 2020 May;87:102169. doi: 10.1016/j.ceca.2020.102169. Epub 2020 Feb 8.
Cell membranes spatially define gradients that drive the complexity of biological signals. To guarantee movements and exchanges of solutes between compartments, membrane transporters negotiate the passages of ions and other important molecules through lipid bilayers. The Na/Ca exchangers (NCXs) in particular play central roles in balancing Na and Ca fluxes across diverse proteolipid borders in all eukaryotic cells, influencing cellular functions and fate by multiple means. To prevent progression from balance to disease, redundant regulatory mechanisms cooperate at multiple levels (transcriptional, translational, and post-translational) and guarantee that the activities of NCXs are finely-tuned to cell homeostatic requirements. When this regulatory network is disturbed by pathological forces, cells may approach the end of life. In this review, we will discuss the main findings, controversies and open questions about regulatory mechanisms that control NCX functions in health and disease.
细胞膜在空间上定义了梯度,从而驱动生物信号的复杂性。为了保证不同隔室之间溶质的移动和交换,膜转运蛋白通过脂质双层协商离子和其他重要分子的通道。特别是 Na/Ca 交换器 (NCXs) 在所有真核细胞中平衡 Na 和 Ca 跨多种蛋白脂质边界的流动方面发挥着核心作用,通过多种方式影响细胞功能和命运。为了防止从平衡到疾病的进展,冗余的调节机制在多个层次上(转录、翻译和翻译后)合作,并保证 NCX 的活性被精细地调整到细胞内稳态的需求。当这个调节网络被病理力量扰乱时,细胞可能会走向生命的尽头。在这篇综述中,我们将讨论关于调节机制的主要发现、争议和未解决的问题,这些机制控制着 NCX 在健康和疾病中的功能。