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结构和生化证据表明,在真核生物出现之前,就已经出现了受钙离子调控的肌动蛋白细胞骨架。

Structural and biochemical evidence for the emergence of a calcium-regulated actin cytoskeleton prior to eukaryogenesis.

机构信息

Institute of Molecular and Cell Biology, A*STAR (Agency for Science, Technology and Research), Biopolis, Singapore, 138673, Singapore.

Department of Pharmacology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore, 117597, Singapore.

出版信息

Commun Biol. 2022 Aug 31;5(1):890. doi: 10.1038/s42003-022-03783-1.

Abstract

Charting the emergence of eukaryotic traits is important for understanding the characteristics of organisms that contributed to eukaryogenesis. Asgard archaea and eukaryotes are the only organisms known to possess regulated actin cytoskeletons. Here, we determined that gelsolins (2DGels) from Lokiarchaeota (Loki) and Heimdallarchaeota (Heim) are capable of regulating eukaryotic actin dynamics in vitro and when expressed in eukaryotic cells. The actin filament severing and capping, and actin monomer sequestering, functionalities of 2DGels are strictly calcium controlled. We determined the X-ray structures of Heim and Loki 2DGels bound actin monomers. Each structure possesses common and distinct calcium-binding sites. Loki2DGel has an unusual WH2-like motif (LVDV) between its two gelsolin domains, in which the aspartic acid coordinates a calcium ion at the interface with actin. We conclude that the calcium-regulated actin cytoskeleton predates eukaryogenesis and emerged in the predecessors of the last common ancestor of Loki, Heim and Thorarchaeota.

摘要

绘制真核生物特征的出现对于理解促成真核生物起源的生物体的特征很重要。古菌 Asgard 和真核生物是仅有的已知拥有调控肌动蛋白细胞骨架的生物体。在这里,我们确定 Lokiarchaeota(Loki)和 Heimdallarchaeota(Heim)的凝胶蛋白(2DGels)能够在体外和在真核细胞中表达时调节真核生物肌动蛋白动力学。2DGels 的肌动蛋白丝切断和加帽以及肌动蛋白单体隔离功能严格受钙离子控制。我们确定了 Heim 和 Loki 2DGels 结合肌动蛋白单体的 X 射线结构。每个结构都具有常见和独特的钙结合位点。Loki2DGel 在其两个凝胶蛋白结构域之间具有不寻常的 WH2 样基序(LVDV),其中天冬氨酸在与肌动蛋白的界面处与钙离子配位。我们得出结论,钙调节的肌动蛋白细胞骨架早于真核生物起源,并出现在 Loki、Heim 和 Thorarchaeota 的最后共同祖先的前体中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2b45/9433394/c211102e4f3c/42003_2022_3783_Fig1_HTML.jpg

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