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首页> 外文期刊>Journal of Cell Science >The recruitment of acetylated and unacetylated tropomyosin to distinct actin polymers permits the discrete regulation of specific myosins in fission yeast.
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The recruitment of acetylated and unacetylated tropomyosin to distinct actin polymers permits the discrete regulation of specific myosins in fission yeast.

机译:将乙酰化和未乙酰化的原肌球蛋白募集到不同的肌动蛋白聚合物中,可以在裂变酵母中离散调节特定的肌球蛋白。

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摘要

Tropomyosin (Tm) is a conserved dimeric coiled-coil protein, which forms polymers that curl around actin filaments in order to regulate actomyosin function. Acetylation of the Tm N-terminal methionine strengthens end-to-end bonds, which enhances actin binding as well as the ability of Tm to regulate myosin motor activity in both muscle and non-muscle cells. In this study we explore the function of each Tm form within fission yeast cells. Electron microscopy and live cell imaging revealed that acetylated and unacetylated Tm associate with distinct actin structures within the cell, and that each form has a profound effect upon the shape and integrity of the polymeric actin filament. We show that, whereas Tm acetylation is required to regulate the in vivo motility of class II myosins, acetylated Tm had no effect on the motility of class I and V myosins. These findings illustrate a novel Tm-acetylation-state-dependent mechanism for regulating specific actomyosin cytoskeletal interactions.
机译:Tropomyosin(Tm)是一种保守的二聚螺旋卷曲蛋白,可形成在肌动蛋白丝周围卷曲的聚合物,以调节肌动蛋白的功能。 Tm N末端甲硫氨酸的乙酰化增强了端对端键,从而增强了肌动蛋白的结合以及Tm调节肌肉和非肌肉细胞中肌球蛋白运动活性的能力。在这项研究中,我们探索裂变酵母细胞内每种Tm形式的功能。电子显微镜和活细胞成像显示,乙酰化和未乙酰化的Tm与细胞内不同的肌动蛋白结构相关,并且每种形式均对聚合肌动蛋白丝的形状和完整性产生深远影响。我们表明,虽然需要Tm乙酰化来调节II类肌球蛋白的体内运动,但乙酰化Tm对I和V类肌球蛋白的运动没有影响。这些发现说明了一种新型的Tm-乙酰化状态依赖性机制,用于调节特定的肌动球蛋白细胞骨架相互作用。

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