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首页> 外文期刊>Cell motility and the cytoskeleton >Dual roles of tropomyosin as an F-actin stabilizer and a regulator of muscle contraction in Caenorhabditis elegans body wall muscle.
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Dual roles of tropomyosin as an F-actin stabilizer and a regulator of muscle contraction in Caenorhabditis elegans body wall muscle.

机译:在秀丽隐杆线虫体壁肌肉中,原肌球蛋白作为F-肌动蛋白稳定剂和肌肉收缩调节剂的双重作用。

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Tropomyosin is a well-characterized regulator of muscle contraction. It also stabilizes actin filaments in a variety of muscle and non-muscle cells. Although these two functions of tropomyosin could have different impacts on actin cytoskeletal organization, their functional relationship has not been studied in the same experimental system. Here, we investigated how tropomyosin stabilizes actin filaments and how this function is influenced by muscle contraction in Caenorhabditis elegans body wall muscle. We confirmed the antagonistic role of tropomyosin against UNC-60B, a muscle-specific ADF/cofilin isoform, in actin filament organization using multiple UNC-60B mutant alleles. Tropomyosin was also antagonistic to UNC-78 (AIP1) in vivo and protected actin filaments from disassembly by UNC-60B and UNC-78 in vitro, suggesting that tropomyosin protects actin filaments from the ADF/cofilin-AIP1 actin disassembly system in muscle cells. A mutation in the myosin heavy chain caused greater reduction in contractility than tropomyosin depletion. However, the myosin mutation showed much weaker suppression of the phenotypes of ADF/cofilin or AIP1 mutants than tropomyosin depletion. These results suggest that muscle contraction has only minor influence on the tropomyosin's protective role against ADF/cofilin and AIP1, and that the two functions of tropomyosin in actin stability and muscle contraction are independent of each other.
机译:Tropomyosin是肌肉收缩的良好调节剂。它还可以稳定各种肌肉和非肌肉细胞中的肌动蛋白丝。尽管原肌球蛋白的这两种功能可能对肌动蛋白细胞骨架的组织产生不同的影响,但尚未在同一实验系统中研究它们的功能关系。在这里,我们研究了原肌球蛋白如何稳定肌动蛋白丝,以及该功能如何受到秀丽隐杆线虫体壁肌肉中肌肉收缩的影响。我们证实肌原蛋白对UNC-60B(一种肌肉特异性ADF / cofilin同工型)在肌动蛋白丝组织中使用多个UNC-60B突变等位基因的拮抗作用。 Tropomyosin还在体内对UNC-78(AIP1)产生拮抗作用,并保护肌动蛋白丝免受UNC-60B和UNC-78的体外分解作用,这表明原肌球蛋白可以保护肌动蛋白丝免受肌细胞中ADF / cofilin-AIP1肌动蛋白拆卸系统的破坏。肌球蛋白重链中的突变比原肌球蛋白耗竭引起更大的收缩力降低。但是,肌球蛋白突变显示对ADF / cofilin或AIP1突变体的表型抑制作用比原肌球蛋白耗尽弱得多。这些结果表明,肌肉收缩对原肌球蛋白对ADF / cofilin和AIP1的保护作用只有很小的影响,并且原肌球蛋白在肌动蛋白稳定性和肌肉收缩中的两种功能是相互独立的。

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