Maria Sklodowska-Curie Memorial Cancer Center and Institute of Oncology, Roentgena 5, 02-781 Warsaw, Poland.
Biomolecules. 2018 Jun 19;8(2):42. doi: 10.3390/biom8020042.
Calcium is one of the most important second messengers and its intracellular signaling regulates many aspects of cell physiology. Calcium ions, like phosphate ions, are highly charged and thus are able to alter protein conformation upon binding; thereby they constitute key factors in signal transduction. One of the most common calcium-binding structural motifs is the EF-hand, a well-defined helix-loop-helix structural domain, present in many calcium-binding proteins (CBPs). Nonetheless, some CBPs contain non-canonical, disordered motifs, which usually bind calcium with high capacity and low affinity, and which represent a subset of proteins with specific functions, but these functions rarely involve signaling. When compared with phosphorylation-mediated signal transduction, the role of intrinsic disorder in calcium signaling is significantly less prominent and not direct. The list of known examples of intrinsically disordered CBPs is relatively short and the disorder in these examples seems to be linked to secretion and storage. Calcium-sensitive phosphatase calcineurin is an exception, but it represents an example of transient disorder, which is, nevertheless, vital to the functioning of this protein. The underlying reason for the different role of disordered proteins in the two main cellular signaling systems appears to be linked to the gradient of calcium concentration, present in all living cells.
钙是最重要的第二信使之一,其细胞内信号转导调节细胞生理的许多方面。钙离子,像磷酸根离子一样,带高度电荷,因此在结合时能够改变蛋白质构象;从而它们成为信号转导的关键因素。最常见的钙结合结构基序之一是 EF 手,这是一个定义明确的螺旋-环-螺旋结构域,存在于许多钙结合蛋白(CBPs)中。尽管如此,一些 CBPs 包含非典型的、无规则的基序,这些基序通常以高容量和低亲和力结合钙,并且代表具有特定功能的蛋白质子集,但这些功能很少涉及信号转导。与磷酸化介导的信号转导相比,内在无序在钙信号中的作用不那么突出,也不是直接的。已知的内在无序 CBPs 的例子相对较少,这些例子中的无序似乎与分泌和储存有关。钙敏磷酸酶钙调神经磷酸酶是一个例外,但它代表了一个瞬态无序的例子,然而,这对这种蛋白质的功能至关重要。无序蛋白在这两个主要细胞信号系统中扮演不同角色的根本原因似乎与所有活细胞中存在的钙浓度梯度有关。