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Knockdown and overexpression of Unc-45b result in defective myofibril organization in skeletal muscles of zebrafish embryos

机译:敲低和过度表达Unc-45b导致斑马鱼胚胎骨骼肌中的肌原纤维组织缺陷

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Background Unc-45 is a myosin chaperone and a Hsp90 co-chaperone that plays a key role in muscle development. Genetic and biochemical studies in C. elegans have demonstrated that Unc-45 facilitates the process of myosin folding and assembly in body wall muscles. Loss or overexpression of Unc-45 in C. elegans results in defective myofibril organization. In the zebrafish Danio rerio, unc-45b, a homolog of C. elegans unc-45, is expressed in both skeletal and cardiac muscles. Earlier studies indicate that mutation or knockdown of unc-45b expression in zebrafish results in a phenotype characterized by a loss of both thick and thin filament organization in skeletal and cardiac muscle. The effects of unc-45b knockdown on other sarcomeric structures and the phenotype of Unc-45b overexpression, however, are poorly understood in vertebrates. Results Both knockdown and overexpression provide useful tools to study gene function during animal development. Using such methods, we characterized the role of Unc-45b in myofibril assembly of skeletal muscle in Danio rerio. We showed that, in addition to thick and thin filament defects, knockdown of unc-45b expression disrupted sarcomere organization in M-lines and Z-lines of skeletal muscles in zebrafish embryos. Western blotting analysis showed that myosin protein levels were significantly decreased in unc-45b knockdown embryos. Similarly, embryos overexpressing Unc-45b also exhibited severely disorganized myosin thick filaments. Disruption of thick filament organization by Unc-45b overexpression depends on the C-terminal UCS domain in Unc-45b required for interaction with myosin. Deletion of the C-terminal UCS domain abolished the disruptive activity of Unc-45b in myosin thick filament organization. In contrast, deletion of the N-terminal TPR domain required for binding with Hsp90α had no effect. Conclusion Collectively, these studies indicate that the expression levels of Unc-45b must be precisely regulated to ensure normal myofibril organization. Loss or overexpression of Unc-45b leads to defective myofibril organization.
机译:背景Unc-45是肌球蛋白伴侣和Hsp90伴侣伴侣,在肌肉发育中起关键作用。秀丽隐杆线虫的遗传和生化研究表明,Unc-45促进肌球蛋白在体壁肌肉中的折叠和组装过程。秀丽隐杆线虫中Unc-45的丢失或过表达导致肌原纤维组织的缺陷。在斑马鱼达尼奥里奥,unc-45b,秀丽隐杆线虫unc-45的同系物,在骨骼肌和心肌中都有表达。较早的研究表明,斑马鱼中unc-45b表达的突变或敲低会导致一种表型,其特征是骨骼肌和心肌中细丝和细丝组织的缺失。然而,unc-45b敲低对其他肌节结构和Unc-45b过表达表型的影响在​​脊椎动物中知之甚少。结果敲低和过度表达都为研究动物发育过程中的基因功能提供了有用的工具。使用这样的方法,我们表征了Unc-45b在Danio rerio骨骼肌肌原纤维组装中的作用。我们表明,除了粗细细丝缺陷外,unc-45b表达的敲低破坏了斑马鱼胚胎骨骼肌M线和Z线的肌节组织。 Western印迹分析表明,在unc-45b敲低胚胎中肌球蛋白蛋白水平显着降低。同样,过表达Unc-45b的胚胎也表现出严重紊乱的肌球蛋白粗丝。 Unc-45b过表达破坏粗细丝组织取决于与肌球蛋白相互作用所需的Unc-45b中的C端UCS域。 C末端UCS结构域的缺失消除了Unc-45b在肌球蛋白粗丝组织中的破坏活性。相反,与Hsp90α结合所需的N末端TPR结构域的删除没有作用。结论总的来说,这些研究表明必须精确调节Unc-45b的表达水平,以确保肌原纤维的正常组织。 Unc-45b的丢失或过表达会导致肌原纤维组织缺陷。

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