te Velthuis Aartjan J W, Bagowski Christoph P
Department of Molecular and Cellular Biology, Institute of Biology, Leiden University, Leiden, The Netherlands.
ScientificWorldJournal. 2007 Sep 1;7:1470-92. doi: 10.1100/tsw.2007.232.
PDZ/LIM genes encode a group of proteins that play very important, but diverse, biological roles. They have been implicated in numerous vital processes, e.g., cytoskeleton organization, neuronal signaling, cell lineage specification, organ development, and oncogenesis. In mammals, there are ten genes that encode for both a PDZ domain, and one or several LIM domains: four genes of the ALP subfamily (ALP, Elfin, Mystique, and RIL), three of the Enigma subfamily (Enigma, Enigma Homolog, and ZASP), the two LIM kinases (LIMK1 and LIMK2), and the LIM only protein 7 (LMO7). Functionally, all PDZ and LIM domain proteins share an important trait, i.e., they can associate with and/or influence the actin cytoskeleton. We review here the PDZ and LIM domain-encoding genes and their different gene structures, their binding partners, and their role in development and disease. Emphasis is laid on the important questions: why the combination of a PDZ domain with one or more LIM domains is found in such a diverse group of proteins, and what role the PDZ/LIM module could have in signaling complex assembly and localization. Furthermore, the current knowledge on splice form specific expression and the function of these alternative transcripts during vertebrate development will be discussed, since another source of complexity for the PDZ and LIM domain-encoding proteins is introduced by alternative splicing, which often creates different domain combinations.
PDZ/LIM基因编码一组蛋白质,这些蛋白质发挥着非常重要但又各不相同的生物学作用。它们参与了众多重要过程,例如细胞骨架组织、神经元信号传导、细胞谱系特化、器官发育和肿瘤发生。在哺乳动物中,有十个基因既编码PDZ结构域,又编码一个或几个LIM结构域:ALP亚家族的四个基因(ALP、Elfin、Mystique和RIL)、Enigma亚家族的三个基因(Enigma、Enigma同源物和ZASP)、两个LIM激酶(LIMK1和LIMK2)以及仅含LIM结构域的蛋白7(LMO7)。在功能上,所有含PDZ和LIM结构域的蛋白质都有一个重要特征,即它们能够与肌动蛋白细胞骨架结合和/或影响肌动蛋白细胞骨架。我们在此综述编码PDZ和LIM结构域的基因及其不同的基因结构、它们的结合伴侣以及它们在发育和疾病中的作用。重点关注重要问题:为什么在如此多样化的蛋白质组中会发现PDZ结构域与一个或多个LIM结构域的组合,以及PDZ/LIM模块在信号复合物组装和定位中可能发挥什么作用。此外,还将讨论关于剪接形式特异性表达以及这些可变转录本在脊椎动物发育过程中的功能的现有知识,因为可变剪接引入了编码PDZ和LIM结构域蛋白质复杂性的另一个来源,可变剪接常常产生不同的结构域组合。