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The Evolution of Multimeric Protein Assemblages

机译:多聚体蛋白质组装的演变

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摘要

Although the mechanisms by which complex cellular features evolve constitute one of the great unsolved problems of evolutionary biology, it is clear that the emergence of new protein–protein interactions, often accompanied by the diversification of duplicate genes, is involved. Using information on the levels of protein multimerization in major phylogenetic groups as a guide to the patterns that must be explained and relying on results from population-genetic theory to define the relative plausibility of alternative evolutionary pathways, a framework for understanding the evolution of dimers is developed. The resultant theory demonstrates that the likelihoods of alternative pathways for the emergence of protein complexes depend strongly on the effective population size. Nonetheless, it is equally clear that further advancements in this area will require comparative studies on the fitness consequences of alternative monomeric and dimeric proteins.
机译:尽管复杂细胞特征进化的机制构成了进化生物学尚未解决的重大问题之一,但很明显,涉及到新的蛋白质-蛋白质相互作用的出现,通常伴随着重复基因的多样化。利用有关主要系统发生学组中蛋白质多聚化水平的信息作为必须解释的模式的指南,并依靠种群遗传学理论的结果来定义替代进化途径的相对合理性,一个理解二聚体进化的框架是发达。所得理论表明,蛋白质复合物出现的替代途径的可能性在很大程度上取决于有效的种群规模。然而,同样清楚的是,在这一领域的进一步发展将需要对替代性单体和二聚体蛋白质的适应性后果进行比较研究。

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