高度分化的顶复合体细胞骨架为肌动蛋白生物学提供了额外的模型。

IF 4.2
Yukino Kobayashi, Ross G Douglas
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引用次数: 0

摘要

肌动蛋白是真核生物中最保守、最丰富、最核心的分子之一。肌动蛋白单体组装成细丝为多种细胞功能提供了分子基础,包括肌肉收缩、细胞内运输、细胞形状、分裂和运动,经典的真核模型系统为这些过程提供了关键的见解。顶复合体寄生虫是单细胞真核生物的一门,具有复杂的生命周期和高度分化的肌动蛋白细胞骨架。与经典系统相比,它们不同的序列和结构导致了重叠但不同的生化特性,为深入了解肌动蛋白的功能及其结合蛋白的调控提供了机会。这些不同的系统还允许有机会确定特定生化功能的关键序列决定因素。在这篇综述中,我们通过比较顶复合体与经典细胞系统,强调了肌动蛋白细胞骨架的显著差异,强调了通过研究这些系统获得的宝贵知识,以促进我们对真核生物肌动蛋白生物学的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Highly divergent apicomplexan cytoskeletons provide additional models for actin biology.

Actin is one of the most conserved, abundant and central molecules in eukaryotes. The assembly of monomeric actin into filaments provides the molecular basis for a variety of cellular functions, including muscle contraction, intracellular trafficking, cell shape, division and motility, with classical eukaryotic model systems providing critical insights into these processes. Apicomplexan parasites are a phylum of unicellular eukaryotes with complex life cycles and highly divergent actin cytoskeletons. Their divergent sequences and structures result in overlapping yet different biochemical properties compared to classical systems, providing the opportunity to gain insight into the breadth of actin function and regulation by its binding proteins. These divergent systems also allow the opportunity to identify key sequence determinants for specific biochemical functions. In this review, we highlight the remarkable divergence of the actin cytoskeleton by comparing apicomplexan to classical cell systems, emphasising the valuable knowledge gained by studying these systems to advance our understanding of actin biology across eukaryotes.

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