首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >From the Cover: NAA80 is actin’s N-terminal acetyltransferase and regulates cytoskeleton assembly and cell motility
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From the Cover: NAA80 is actin’s N-terminal acetyltransferase and regulates cytoskeleton assembly and cell motility

机译:封面:NAA80是肌动蛋白的N末端乙酰基转移酶可调节细胞骨架装配和细胞运动

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摘要

Actin, one of the most abundant proteins in nature, participates in countless cellular functions ranging from organelle trafficking and pathogen motility to cell migration and regulation of gene transcription. Actin’s cellular activities depend on the dynamic transition between its monomeric and filamentous forms, a process exquisitely regulated in cells by a large number of actin-binding and signaling proteins. Additionally, several posttranslational modifications control the cellular functions of actin, including most notably N-terminal (Nt)-acetylation, a prevalent modification throughout the animal kingdom. However, the biological role and mechanism of actin Nt-acetylation are poorly understood, and the identity of actin’s N-terminal acetyltransferase (NAT) has remained a mystery. Here, we reveal that NAA80, a suggested NAT enzyme whose substrate specificity had not been characterized, is Nt-acetylating actin. We further show that actin Nt-acetylation plays crucial roles in cytoskeletal assembly in vitro and in cells. The absence of Nt-acetylation leads to significant differences in the rates of actin filament depolymerization and elongation, including elongation driven by formins, whereas filament nucleation by the Arp2/3 complex is mostly unaffected. NAA80-knockout cells display severely altered cytoskeletal organization, including an increase in the ratio of filamentous to globular actin, increased filopodia and lamellipodia formation, and accelerated cell motility. Together, the results demonstrate NAA80’s role as actin’s NAT and reveal a crucial role for actin Nt-acetylation in the control of cytoskeleton structure and dynamics.
机译:肌动蛋白是自然界中最丰富的蛋白质之一,它参与无数的细胞功能,从细胞器运输和病原体运动到细胞迁移和基因转录调控。肌动蛋白的细胞活性取决于其单体形式和丝状形式之间的动态过渡,这一过程在细胞中被大量的肌动蛋白结合和信号蛋白精确调节。另外,几种翻译后修饰控制肌动蛋白的细胞功能,包括最显着的N-末端(Nt)-乙酰化,这是整个动物界的普遍修饰。但是,人们对肌动蛋白Nt-乙酰化的生物学作用和机理了解甚少,肌动蛋白N端乙酰转移酶(NAT)的身份仍然是个谜。在这里,我们发现NAA80是一种建议的NAT酶,其底物特异性尚未被表征,是Nt-乙酰化肌动蛋白。我们进一步表明肌动蛋白Nt-乙酰化在体外和细胞中在细胞骨架装配中起关键作用。 Nt-乙酰化的缺乏会导致肌动蛋白丝解聚和延伸的速率(包括福尔马林驱动的伸长)发生显着差异,而Arp2 / 3复合物形成的丝核几乎不受影响。 NAA80敲除细胞显示出严重改变的细胞骨架组织,包括丝状与球状肌动蛋白的比例增加,丝状伪足和片状脂蛋白形成增加,并加速了细胞运动。这些结果共同证明了NAA80作为肌动蛋白NAT的作用,并揭示了肌动蛋白Nt-乙酰化在控制细胞骨架结构和动力学中的关键作用。

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