Patel S, Joseph S K, Thomas A P
Department of Pharmacology and Physiology, University of Medicine and Dentistry of New Jersey, Newark 07103, USA.
Cell Calcium. 1999 Mar;25(3):247-64. doi: 10.1054/ceca.1999.0021.
The receptors for the second messenger inositol 1,4,5-trisphosphate (IP3) constitute a family of Ca2+ channels responsible for the mobilization of intracellular Ca2+ stores. Three different gene products (types I-III) have been isolated, encoding polypeptides which assemble as large tetrameric structures. Recent molecular studies have advanced our knowledge about the structure, regulation and function of IP3 receptors. For example, several Ca(2+)-binding sites and a Ca(2+)-calmodulin-binding domain have been mapped within the type I IP3 receptor, and studies on purified cerebellar IP3 receptors propose a second Ca(2+)-independent calmodulin-binding domain. In addition, minimal requirements for the binding of immunophilins and the formation of tetramers have been identified. Overexpression of IP3 receptors has provided further clues to the regulation of individual IP3 receptor isoforms present within cells, and the role that they play in the generation of IP3-dependent Ca2+ signals. Inhibition of IP3 receptor function and expression, and analysis of mutant IP3 receptors, suggests that IP3 receptors are involved in such diverse cellular processes as proliferation and apoptosis and are thus, necessary for normal development. Our understanding of the complex spatial and temporal nature of cytosolic Ca2+ increases and the role that these Ca2+ signals play in cell function depend upon our knowledge of the structure and the regulation of IP3 receptors. This review focuses on the molecular properties of these ubiquitous intracellular Ca2+ channels.
第二信使肌醇1,4,5-三磷酸(IP3)的受体构成了一个钙离子通道家族,负责动员细胞内的钙离子储备。现已分离出三种不同的基因产物(I - III型),它们编码的多肽组装成大型四聚体结构。最近的分子研究增进了我们对IP3受体的结构、调节和功能的了解。例如,在I型IP3受体中已定位了几个钙离子结合位点和一个钙调蛋白结合结构域,对纯化的小脑IP3受体的研究提出了第二个不依赖钙离子的钙调蛋白结合结构域。此外,还确定了免疫亲和素结合和四聚体形成的最低要求。IP3受体的过表达为细胞内存在的单个IP3受体亚型的调节及其在IP3依赖性钙离子信号产生中所起的作用提供了进一步的线索。对IP3受体功能和表达的抑制以及对突变IP3受体的分析表明,IP3受体参与了增殖和凋亡等多种细胞过程,因此对正常发育是必需的。我们对细胞质钙离子复杂的空间和时间特性的理解以及这些钙离子信号在细胞功能中所起的作用取决于我们对IP3受体结构和调节的了解。本综述重点关注这些普遍存在的细胞内钙离子通道的分子特性。