Department of Bioengineering, Nagaoka University of Technology, 1603-1 Kamitomioka, Nagaoka, Niigata 940-2188, Japan.
Biochem Biophys Res Commun. 2013 Jun 7;435(3):483-7. doi: 10.1016/j.bbrc.2013.05.016. Epub 2013 May 13.
The Enigma homolog (ENH) gene generates several splicing variants. The initially identified ENH1 possesses one PDZ and three LIM domains, whereas ENH2~4 lack the latter domains. The splicing switch from ENH1 to LIM-less ENHs occurs during development/maturation of skeletal and heart muscles. We examined for the roles of ENH splicing variants in muscle differentiation using C2C12 cells. Cells stably expressing ENH1 exhibited significantly higher MyoD and myogenin mRNA levels before differentiation and after 5 days in low serum-differentiating medium than mock-transfected cells. ENH1-stable transformants also retained the ability to exhibit elongated morphology with well-extended actin fibers following differentiation. In contrast, cells stably expressing ENH3 or ENH4 did not show myotube-like morphology or reorganization of actin fibers following culture in the differentiating medium. Transient overexpression of ENH1 using adenovirus supported the increased expression of muscle marker mRNAs and the formation of well-organized stress fibers, whereas ENH4 overexpression prevented these morphological changes. Furthermore, specific suppression of ENH1 expression by RNAi caused a significant reduction in MyoD mRNA level and blocked the morphological changes. These results suggest that ENH1 with multiple protein-protein interaction modules is essential for differentiation of striated muscles, whereas ectopic expression of LIM-less ENH disrupts normal muscle differentiation.
Enigma 同源物 (ENH) 基因产生几种剪接变体。最初鉴定的 ENH1 具有一个 PDZ 和三个 LIM 结构域,而 ENH2~4 缺乏后两个结构域。在骨骼和心肌的发育/成熟过程中,从 ENH1 到无 LIM 的 ENHs 的剪接转换发生。我们使用 C2C12 细胞检查了 ENH 剪接变体在肌肉分化中的作用。与 mock 转染细胞相比,稳定表达 ENH1 的细胞在分化前和在低血清分化培养基中分化 5 天后,MyoD 和 myogenin mRNA 水平显著升高。ENH1 稳定转化体在分化后也保持表现出伸长形态和延伸良好的肌动蛋白纤维的能力。相比之下,稳定表达 ENH3 或 ENH4 的细胞在分化培养基中培养后不会表现出肌管样形态或肌动蛋白纤维的重排。使用腺病毒瞬时过表达 ENH1 支持肌肉标记物 mRNAs 的表达增加和排列良好的应激纤维的形成,而 ENH4 过表达阻止了这些形态变化。此外,RNAi 特异性抑制 ENH1 表达导致 MyoD mRNA 水平显著降低并阻断形态变化。这些结果表明,具有多个蛋白-蛋白相互作用模块的 ENH1 对于横纹肌的分化是必不可少的,而 LIM 缺失的 ENH 的异位表达会破坏正常的肌肉分化。