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真核生物动态肌动蛋白细胞骨架的古菌根源

The Archaeal Roots of the Eukaryotic Dynamic Actin Cytoskeleton.

作者信息

Stairs Courtney W, Ettema Thijs J G

机构信息

Department of Cell and Molecular Biology, Science for Life Laboratory, Uppsala University, SE-75123 Uppsala, Sweden.

Department of Cell and Molecular Biology, Science for Life Laboratory, Uppsala University, SE-75123 Uppsala, Sweden; Laboratory of Microbiology, Department of Agrotechnology and Food Sciences, Wageningen University, 6708 WE Wageningen, The Netherlands.

出版信息

Curr Biol. 2020 May 18;30(10):R521-R526. doi: 10.1016/j.cub.2020.02.074.

Abstract

It is generally well accepted that eukaryotes evolved from the symbiosis of an archaeal host cell and an alphaproteobacterium, a union that ultimately gave rise to the complex, eukaryotic cells we see today. However, the catalyst of this merger, the exact nature of the cellular biology of either partner, or how this event spawned the vast majority of complex life on Earth remains enigmatic. In recent years, the discovery of the Asgard archaea, the closest known prokaryotic relatives of eukaryotes, has been monumental for addressing these unanswered questions. These prokaryotes seem to encode an unprecedented number of genes related to features typically descriptive of eukaryotes, including intracellular trafficking, vesicular transport and a dynamic actin-based cytoskeleton. Collectively, these features imply that the Asgard archaea have the potential for cellular complexity previously thought to be unique to eukaryotes. Here, we review the most recent advances in our understanding of the archaeal cytoskeleton and its implications for determining the origin of eukaryotic cellular complexity.

摘要

人们普遍认为,真核生物是从古菌宿主细胞与α-变形菌的共生关系中演化而来的,这种结合最终产生了我们今天看到的复杂的真核细胞。然而,促成这种融合的催化剂、任何一方细胞生物学的确切性质,或者这一事件是如何催生地球上绝大多数复杂生命的,仍然是个谜。近年来,阿斯加德古菌的发现具有里程碑意义,它是目前已知的与真核生物亲缘关系最近的原核生物,有助于解答这些悬而未决的问题。这些原核生物似乎编码了数量空前的与通常描述真核生物特征相关的基因,包括细胞内运输、囊泡运输以及基于肌动蛋白的动态细胞骨架。总的来说,这些特征意味着阿斯加德古菌具有细胞复杂性的潜力,而这种复杂性以前被认为是真核生物独有的。在这里,我们回顾了我们对古菌细胞骨架的最新认识进展及其对确定真核细胞复杂性起源的意义。

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