Hulpiau Paco, van Roy Frans
Department for Molecular Biomedical Research, VIB, Ghent, Belgium.
Int J Biochem Cell Biol. 2009 Feb;41(2):349-69. doi: 10.1016/j.biocel.2008.09.027. Epub 2008 Oct 4.
This review deals with the large and pleiotropic superfamily of cadherins and its molecular evolution. We compiled literature data and an in-depth phylogenetic analysis of more than 350 members of this superfamily from about 30 species, covering several but not all representative branches within metazoan evolution. We analyzed the sequence homology between either ectodomains or cytoplasmic domains, and we reviewed protein structural data and genomic architecture. Cadherins and cadherin-related molecules are defined by having an ectodomain in which at least two consecutive calcium-binding cadherin repeats are present. There are usually 5 or 6 domains, but in some cases as many as 34. Additional protein modules in the ectodomains point at adaptive evolution. Despite the occurrence of several conserved motifs in subsets of cytoplasmic domains, these domains are even more diverse than ectodomains and most likely have evolved separately from the ectodomains. By fine tuning molecular classifications, we reduced the number of solitary superfamily members. We propose a cadherin major branch, subdivided in two families and 8 subfamilies, and a cadherin-related major branch, subdivided in four families and 11 subfamilies. Accordingly, we propose a more appropriate nomenclature. Although still fragmentary, our insight into the molecular evolution of these remarkable proteins is steadily growing. Consequently, we can start to propose testable hypotheses for structure-function relationships with impact on our models of molecular evolution. An emerging concept is that the ever evolving diversity of cadherin structures is serving dual and important functions: specific cell adhesion and intricate cell signaling.
本综述探讨了钙黏蛋白的庞大且具有多效性的超家族及其分子进化。我们汇编了文献数据,并对来自约30个物种的该超家族的350多个成员进行了深入的系统发育分析,涵盖了后生动物进化中的几个但并非所有代表性分支。我们分析了胞外域或胞质域之间的序列同源性,并回顾了蛋白质结构数据和基因组结构。钙黏蛋白和钙黏蛋白相关分子的定义是具有一个胞外域,其中至少存在两个连续的钙结合钙黏蛋白重复序列。通常有5或6个结构域,但在某些情况下多达34个。胞外域中的额外蛋白质模块表明了适应性进化。尽管在胞质域子集中出现了几个保守基序,但这些结构域比胞外域更加多样化,并且很可能与胞外域独立进化。通过微调分子分类,我们减少了孤立超家族成员的数量。我们提出了一个钙黏蛋白主要分支,细分为两个家族和8个亚家族,以及一个钙黏蛋白相关主要分支,细分为四个家族和11个亚家族。因此,我们提出了一个更合适的命名法。尽管仍然不完整,但我们对这些非凡蛋白质分子进化的认识正在稳步增长。因此,我们可以开始提出关于结构 - 功能关系的可测试假设,这对我们的分子进化模型有影响。一个新兴的概念是,钙黏蛋白结构不断演变的多样性发挥着双重且重要的功能:特异性细胞黏附和复杂的细胞信号传导。