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细丝蛋白C(FLNc)的缺失会导致肌生成和肌管结构出现严重缺陷。

Loss of FilaminC (FLNc) results in severe defects in myogenesis and myotube structure.

作者信息

Dalkilic I, Schienda J, Thompson T G, Kunkel L M

机构信息

Howard Hughes Medical Institute and Program in Genomics, Children's Hospital, Boston, Massachusetts 02115, USA.

出版信息

Mol Cell Biol. 2006 Sep;26(17):6522-34. doi: 10.1128/MCB.00243-06.

Abstract

FilaminC (FLNc) is the muscle-specific member of a family of actin binding proteins. Although it interacts with many proteins involved in muscular dystrophies, its unique role in muscle is poorly understood. To address this, two models were developed. First, FLNc expression was stably reduced in C2C12 myoblasts by RNA interference. While these cells start differentiation normally, they display defects in differentiation and fusion ability and ultimately form multinucleated "myoballs" rather than maintain elongated morphology. Second, a mouse model carrying a deletion of last 8 exons of Flnc was developed. FLNc-deficient mice die shortly after birth, due to respiratory failure, and have severely reduced birth weights, with fewer muscle fibers and primary myotubes, indicating defects in primary myogenesis. They exhibit variation in fiber size, fibers with centrally located nuclei, and some rounded fibers resembling the in vitro phenotype. The similarity of the phenotype of FLNc-deficient mice to the filamin-interacting TRIO null mice was further confirmed by comparing FLNc-deficient C2C12 cells to TRIO-deficient cells. These data provide the first evidence that FLNc has a crucial role in muscle development and maintenance of muscle structural integrity and suggest the presence of a TRIO-FLNc-dependent pathway in maintaining proper myotube structure.

摘要

细丝蛋白C(FLNc)是肌动蛋白结合蛋白家族中肌肉特异性成员。尽管它与许多参与肌营养不良症的蛋白质相互作用,但其在肌肉中的独特作用仍知之甚少。为了解决这个问题,构建了两种模型。首先,通过RNA干扰使C2C12成肌细胞中FLNc的表达稳定降低。虽然这些细胞正常开始分化,但它们在分化和融合能力方面表现出缺陷,最终形成多核的“肌球”,而不是保持伸长的形态。其次,构建了一种携带Flnc最后8个外显子缺失的小鼠模型。FLNc缺陷小鼠出生后不久因呼吸衰竭死亡,出生体重严重降低,肌纤维和初级肌管数量减少,表明初级肌发生存在缺陷。它们表现出纤维大小的差异、核位于中央的纤维以及一些类似于体外表型的圆形纤维。通过将FLNc缺陷的C2C12细胞与TRIO缺陷细胞进行比较,进一步证实了FLNc缺陷小鼠的表型与细丝蛋白相互作用的TRIO缺失小鼠的表型相似性。这些数据首次证明FLNc在肌肉发育和维持肌肉结构完整性方面具有关键作用,并表明在维持适当的肌管结构中存在一条TRIO-FLNc依赖性途径。

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