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The Evolution of Organellar Coat Complexes and Organization of the Eukaryotic Cell
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-061516-044643
Michael P Rout 1 , Mark C Field 2
Affiliation  

Eukaryotic cells possess a remarkably diverse range of organelles that provide compartmentalization for distinct cellular functions and are likely responsible for the remarkable success of these organisms. The origins and subsequent elaboration of these compartments represent a key aspect in the transition between prokaryotic and eukaryotic cellular forms. The protein machinery required to build, maintain, and define many membrane-bound compartments is encoded by several paralog families, including small GTPases, coiled-bundle proteins, and proteins with β-propeller and α-solenoid secondary structures. Together these proteins provide the membrane coats and control systems to structure and coordinate the endomembrane system. Mechanistically and evolutionarily, they unite not only secretory and endocytic organelles but also the flagellum and nucleus. The ancient origins for these families have been revealed by recent findings, providing new perspectives on the deep evolutionary processes and relationships that underlie eukaryotic cell structure.

中文翻译:


细胞器外壳复合物的进化和真核细胞的组织

真核细胞拥有非常多样化的细胞器,这些细胞器为不同的细胞功能提供了区室化功能,并且可能是这些生物体取得显著成功的原因。这些隔间的起源和随后的详细说明代表了原核和真核细胞形式之间转变的一个关键方面。构建、维护和定义许多膜结合区室所需的蛋白质机器由几个旁系同源家族编码,包括小 GTPase、卷曲束蛋白和具有 β-螺旋桨和 α-螺线管二级结构的蛋白质。这些蛋白质一起提供了膜涂层和控制系统,以构建和协调内膜系统。在机械和进化上,它们不仅结合了分泌和内吞细胞器,还结合了鞭毛和细胞核。

更新日期:2017-06-27
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