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The origin of novel proteins by gene duplication: Common aspects in the evolution of color-sensitive pigment proteins and translation termination factors

机译:通过基因复制产生新蛋白的起源:彩色敏感色素蛋白和翻译终止因子进化的共同方面

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摘要

The review discusses the role of gene duplications in evolution. Duplications enable block-modular gene reorganizations that combine fragments from different genes and give rise to proteins with differing functions. Such genetic events are exemplified, for instance, by consecutive duplications and subsequent divergence of the genes encoding color-sensitive pigment proteins, which made possible trichromatic vision in humans and Old World monkeys. On the other hand, many proteins involved in the regulation of protein synthesis have appeared as a result of a series of gene duplications that gave rise to modern translation elongation and termination factors. Supposedly, the proteins controlling the quality of newly synthesized mRNA also originated by duplication of the genes encoding ancient translation elongation factors. Their subsequent divergence gave rise to proteins with new properties, which were, however, no longer able to participate in the control of translation. [PUBLICATION ABSTRACT]
机译:该评论讨论了基因重复在进化中的作用。重复使块模块化基因重组,合并了来自不同基因的片段,并产生了具有不同功能的蛋白质。这样的遗传事件例如通过编码色彩敏感的色素蛋白的基因的连续重复和随后的发散来举例说明,这使得人和旧世界猴中的三色视觉成为可能。另一方面,由于一系列基因重复而出现了许多参与蛋白质合成调控的蛋白质,这些重复产生了现代翻译延伸和终止因子。据推测,控制新合成的mRNA的质量的蛋白质也源自重复编码古代翻译延伸因子的基因。他们随后的分歧产生了具有新特性的蛋白质,但是这些新特性不再能够参与翻译控制。 [出版物摘要]

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