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Drosophila melanogaster Muscle LIM Protein and α-actinin function together to stabilize muscle cytoarchitecture: a potential role for Mlp84B in actin-crosslinking

机译:果蝇黑腹肌LIM蛋白和α-肌动蛋白一起发挥功能以稳定肌肉细胞结构:Mlp84B在肌动蛋白交联中的潜在作用

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摘要

Stabilization of tissue architecture during development and growth is essential to maintain structural integrity. Because of its contractile nature, muscle is especially susceptible to physiological stresses, and has multiple mechanisms to maintain structural integrity. The Drosophila melanogaster Muscle LIM Protein, Mlp84B, participates in muscle maintenance, yet its precise mechanism of action is still controversial. Through a candidate approach, we identified α-actinin as a protein that functions with Mlp84B to ensure muscle integrity. α-actinin RNAi animals die primarily as pupae, and Mlp84B RNAi animals are adult viable. RNAi knockdown of Mlp84B and α-actinin together produces synergistic early larval lethality and destabilization of Z-line structures. We recapitulated these phenotypes using combinations of traditional loss-of-function alleles and single gene RNAi. We observe that Mlp84B induces the formation of actin-loops in muscle cell nuclei in the absence of nuclear α-actinin, suggesting Mlp84B has intrinsic actin crosslinking activity, which may complement α-actinin crosslinking activity at sites of actin filament anchorage. These results reveal a molecular mechanism for MLP stabilization of muscle, and implicate reduced actin crosslinking as the primary destabilizing defect in MLP associated cardiomyopathies. Our data support a model in which α-actinin and Mlp84B have important and overlapping functions at sites of actin filament anchorage, to preserve muscle structure and function.
机译:在发育和生长过程中稳定组织结构对于维持结构完整性至关重要。由于其收缩性质,肌肉特别容易受到生理压力,并具有多种机制来维持结构完整性。果蝇黑腹肌LIM蛋白Mlp84B参与肌肉维持,但其确切的作用机理仍存在争议。通过一种候选方法,我们确定了α-肌动蛋白是一种与Mlp84B一起起作用以确保肌肉完整性的蛋白质。 α-肌动蛋白RNAi动物主要死于p,而Mlp84B RNAi动物成年。 Mlp84B和α-actinin的RNAi组合在一起产生协同的早期幼虫杀伤力和Z线结构的不稳定。我们使用传统的功能丧失等位基因和单基因RNAi的组合概括了这些表型。我们观察到Mlp84B在不存在核α-actinin的情况下诱导肌细胞核中肌动蛋白环的形成,这表明Mlp84B具有固有的肌动蛋白交联活性,这可以补充肌动蛋白丝锚定部位的α-actinin交联活性。这些结果揭示了肌肉MLP稳定化的分子机制,并暗示肌动蛋白交联减少是MLP相关心肌病的主要不稳定因素。我们的数据支持一种模型,其中α-肌动蛋白和Mlp84B在肌动蛋白丝锚定位点具有重要且重叠的功能,以保留肌肉结构和功能。

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