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Universal Sharing Patterns in Proteomes and Evolution of Protein Fold Architecture and Life

机译:蛋白质组中的通用共享模式以及蛋白质折叠结构和生命的进化

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摘要

Protein evolution is imprinted in both the sequence and the structure of evolutionary building blocks known as protein domains. These domains share a common ancestry and can be unified into a comparatively small set of folding architectures, the protein folds. We have traced the distribution of protein folds between and within proteomes belonging to Eukarya, Archaea, and Bacteria along the branches of a universal phylogeny of protein architecture. This tree was reconstructed from global fold-usage statistics derived from a structural census of proteomes. We found that folds shared by the three organismal domains were placed almost exclusively at the base of the rooted tree and that there were marked heterogeneities in fold distribution and clear evolutionary patterns related to protein architecture and organismal diversification. These include a relative timing for the emergence of prokaryotes, congruent episodes of architectural loss and diversification in Archaea and Bacteria, and a late and quite massive rise of architectural novelties in Eukarya perhaps linked to multicellularity.
机译:蛋白质进化被印在被称为蛋白质结构域的进化构件的序列和结构中。这些结构域具有共同的血统,可以统一为相对较小的折叠结构集,即蛋白质折叠。我们追踪到属于普遍结构的系统发育分支的属于Eukarya,古细菌和细菌的蛋白质组之间和之内的蛋白质折叠分布。这棵树是根据蛋白质组结构普查得出的全球折叠使用统计数据重建的。我们发现三个有机域共享的折叠几乎完全放在根树的底部,并且折叠分布中存在明显的异质性,并且与蛋白质结构和生物多样性相关的进化方式清晰。这些包括原核生物出现的相对时机,古细菌和细菌在建筑上的丧失和多样化的一致发作,以及在Eukarya上建筑新颖性的晚期和大量兴起,可能与多细胞性有关。

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