Department of Cellular and Molecular Pharmacology, University of California, San Francisco, 600 16th Street, San Francisco, CA 94158, USA.
Science. 2010 Apr 16;328(5976):368-72. doi: 10.1126/science.1182376.
Cell signaling proteins are often modular, containing distinct catalytic and regulatory domains. Recombination of such biological modules has been proposed to be a major source of evolutionary innovation. We systematically analyzed the phenotypic diversity of a signaling response that results from domain recombination by using 11 proteins in the yeast mating pathway to construct a library of 66 chimeric domain recombinants. Domain recombination resulted in greater diversity in pathway response dynamics than did duplication of genes, of single domains, or of two unlinked domains. Domain recombination also led to changes in mating phenotype, including recombinants with increased mating efficiency over the wild type. Thus, novel linkages between preexisting domains may have a major role in the evolution of protein networks and novel phenotypic behaviors.
细胞信号蛋白通常具有模块性,包含独特的催化和调节结构域。这种生物模块的重组被认为是进化创新的主要来源。我们使用酵母交配途径中的 11 种蛋白质系统地分析了由结构域重组产生的信号响应的表型多样性,构建了一个包含 66 种嵌合结构域重组体的文库。与基因、单个结构域或两个不相关结构域的复制相比,结构域重组导致途径响应动力学的多样性更大。结构域重组还导致交配表型的变化,包括比野生型具有更高交配效率的重组体。因此,预先存在的结构域之间的新连接可能在蛋白质网络和新表型行为的进化中发挥主要作用。