Strehler E E
Laboratory for Biochemistry, Swiss Federal Institute of Technology, Zurich.
Semin Cell Biol. 1990 Aug;1(4):283-95.
Membrane-intrinsic transport systems play an essential role in intracellular Ca2+ homeostasis. ATP-driven Ca2+ pumps and carrier-mediated Na+/Ca2+ exchangers are the two specific Ca2+ transporting systems mainly responsible for Ca2+ extrusion across the plasma membrane. Ca2+ pumps operate in all eukaryotic cell types and are characterized by their high Ca2+ affinity and their specific regulation by direct interaction with Ca2+/calmodulin. Na+/Ca2+ exchangers are particularly abundant in excitable tissues and are responsible for the bulk Ca2+ efflux in these tissues. Recent success in the molecular characterization of the pumps has led to the determination of complete amino acid sequences for several isoforms and has allowed the identification and topological assignment of important functional and regulatory domains. Genetic evidence indicates that mammalian Ca2+ pump diversity is generated from a multigene family and via alternative RNA splicing. Different isoforms may vary in their regulatory properties, presumably reflecting different physiological requirements of the tissues of their expression. Although the molecular characterization of Na+/Ca2+ exchangers is not as far advanced as that of the pumps, recent studies have established detailed kinetic, stoichiometric and regulatory properties of these systems. Together with advances in expression cloning methods these studies promise to result in a rapid improvement of our knowledge of the functional properties of these ion transporters on a molecular level.
膜内在运输系统在细胞内钙离子稳态中起着至关重要的作用。ATP驱动的钙离子泵和载体介导的钠钙交换体是两个主要负责钙离子跨质膜排出的特定钙离子运输系统。钙离子泵存在于所有真核细胞类型中,其特点是对钙离子具有高亲和力,并通过与钙调蛋白直接相互作用进行特异性调节。钠钙交换体在可兴奋组织中尤为丰富,负责这些组织中大量的钙离子外流。最近在这些泵的分子特征鉴定方面取得的成功,已确定了几种异构体的完整氨基酸序列,并使得能够识别重要的功能和调节结构域并确定其拓扑结构。遗传学证据表明,哺乳动物钙离子泵的多样性源于一个多基因家族,并通过可变RNA剪接产生。不同的异构体在调节特性上可能有所不同,大概反映了其表达组织的不同生理需求。尽管钠钙交换体的分子特征鉴定不如泵那样先进,但最近的研究已经确定了这些系统详细的动力学、化学计量和调节特性。这些研究与表达克隆方法的进展一起,有望迅速提升我们在分子水平上对这些离子转运体功能特性的认识。