Department of Cancer Biology, Instituto de Investigaciones Biomédicas, Consejo Superior de Investigaciones Científicas and Universidad Autónoma de Madrid, Arturo Duperier 4, 28029, Madrid, Spain.
Instituto de Investigaciones Sanitarias, Hospital Universitario La Paz, Edificio IdiPAZ, Paseo de la Castellana 261, 28046, Madrid, Spain.
Cell Mol Life Sci. 2019 Jun;76(12):2299-2328. doi: 10.1007/s00018-019-03062-z. Epub 2019 Mar 15.
The appearance of modular proteins is a widespread phenomenon during the evolution of proteins. The combinatorial arrangement of different functional and/or structural domains within a single polypeptide chain yields a wide variety of activities and regulatory properties to the modular proteins. In this review, we will discuss proteins, that in addition to their catalytic, transport, structure, localization or adaptor functions, also have segments resembling the helix-loop-helix EF-hand motifs found in Ca-binding proteins, such as calmodulin (CaM). These segments are denoted CaM-like domains (CaM-LDs) and play a regulatory role, making these CaM-like proteins sensitive to Ca transients within the cell, and hence are able to transduce the Ca signal leading to specific cellular responses. Importantly, this arrangement allows to this group of proteins direct regulation independent of other Ca-sensitive sensor/transducer proteins, such as CaM. In addition, this review also covers CaM-binding proteins, in which their CaM-binding site (CBS), in the absence of CaM, is proposed to interact with other segments of the same protein denoted CaM-like binding site (CLBS). CLBS are important regulatory motifs, acting either by keeping these CaM-binding proteins inactive in the absence of CaM, enhancing the stability of protein complexes and/or facilitating their dimerization via CBS/CLBS interaction. The existence of proteins containing CaM-LDs or CLBSs substantially adds to the enormous versatility and complexity of Ca/CaM signaling.
模块化蛋白质的出现是蛋白质进化过程中的一种普遍现象。在单个多肽链内组合不同功能和/或结构域,赋予模块化蛋白质广泛的活性和调节特性。在这篇综述中,我们将讨论除了具有催化、运输、结构、定位或衔接功能外,还具有类似于钙结合蛋白(如钙调蛋白 (CaM) 中发现的螺旋-环-螺旋 EF 手模体的片段的蛋白质。这些片段被称为钙调蛋白样结构域 (CaM-LD),并发挥调节作用,使这些钙调蛋白样蛋白对细胞内的 Ca 瞬变敏感,从而能够转导 Ca 信号,导致特定的细胞反应。重要的是,这种排列允许这组蛋白质独立于其他 Ca 敏感传感器/转导蛋白(如 CaM)进行直接调节。此外,本综述还涵盖了与 CaM 结合的蛋白质,其中在没有 CaM 的情况下,其 CaM 结合位点 (CBS) 被提议与同一蛋白质的其他片段相互作用,这些片段被称为钙调蛋白样结合位点 (CLBS)。CLBS 是重要的调节模体,通过在没有 CaM 的情况下使这些与 CaM 结合的蛋白质保持无活性、增强蛋白质复合物的稳定性和/或通过 CBS/CLBS 相互作用促进其二聚化来发挥作用。含有 CaM-LD 或 CLBS 的蛋白质的存在极大地增加了 Ca/CaM 信号的巨大多功能性和复杂性。