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Coevolution of Eukaryote-like Vps4 and ESCRT-III Subunits in the Asgard Archaea

机译:亚古德古代亚古氏亚科亚的真核生物样VPS4和ESCRT-III亚基的共同作用

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摘要

The emergence of the endomembrane system is a key step in the evolution of cellular complexity during eukaryogenesis. The endosomal sorting complex required for transport (ESCRT) machinery is essential and required for the endomembrane system functions in eukaryotic cells. Recently, genes encoding eukaryote-like ESCRT protein components have been identified in the genomes of Asgard archaea, a newly proposed archaeal superphylum that is thought to include the closest extant prokaryotic relatives of eukaryotes. However, structural and functional features of Asgard ESCRT remain uncharacterized. Here, we show that Vps4, Vps2/24/46, and Vps20/32/60, the core functional components of the Asgard ESCRT, coevolved eukaryote-like structural and functional features. Phylogenetic analysis shows that Asgard Vps4, Vps2/24/46, and Vps20/32/60 are closely related to their eukaryotic counterparts. Molecular dynamics simulation and biochemical assays indicate that Asgard Vps4 contains a eukaryote-like microtubule-interacting and transport (MIT) domain that binds the distinct type 1 MIT-interacting motif and type 2 MIT-interacting motif in Vps2/24/46 and Vps20/32/60, respectively. The Asgard Vps4 partly, but much more efficiently than homologs from other archaea, complements the vps4 null mutant of Saccharomyces cerevisiae , further supporting the functional similarity between the membrane remodeling machineries of Asgard archaea and eukaryotes. Thus, this work provides evidence that the ESCRT complexes from Asgard archaea and eukaryotes are evolutionarily related and functionally similar. Thus, despite the apparent absence of endomembranes in Asgard archaea, the eukaryotic ESCRT seems to have been directly inherited from an Asgard ancestor, to become a key component of the emerging endomembrane system.
机译:Endomembrane系统的出现是真核生过程中细胞复杂性演变的关键步骤。运输(ESCRT)机械所需的内体分选复合物是必不可少的,在真核细胞中的子宫内膜系统功能是必不可少的。最近,已经在Asgard Archaea的基因组中鉴定了编码真核生物样ESCRT蛋白组分的基因,这是一种新提出的古代古代超星性,被认为包括最接近的真核生物的最接近的原核亲亲。然而,ASGard Escrt的结构和功能特征保持不表达。在这里,我们显示VPS4,VPS2 / 24/46和VPS20 / 32/60,ASGard ESCRT的核心功能组件,共带的真核生物状结构和功能特征。系统发育分析表明,ASGARD VPS4,VPS2 / 24/46和VPS20 / 32/60与其真核生物对应物密切相关。分子动力学模拟和生物化学测定表明ASGARD VPS4含有真核状的微管相互作用和传输(MIT)结构域,其结合在VPS2 / 24/46和VPS20中的不同类型1 MIT相互作用的基序和型MIT相互作用基序/ 32/60分别。 ASGARD VPS4部分,但比来自其他古代的同源物更有效,补充了酿酒酵母的VPS4缺虫突变体,进一步支持ASGARD Archaea和真核生物的膜改造机器之间的功能相似性。因此,这项工作提供了证据表明Asgard archaea和真核生物的Escrt复合物进化地相关和功能相似。因此,尽管在Asgard archaea中显而易患了端瘤,但真核Escrt似乎已直接从Asgard祖先遗传,成为新兴的EndoMembrane系统的关键组成部分。

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