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首页> 外文期刊>Molecular and Cellular Biology >New Role for Serum Response Factor in Postnatal Skeletal Muscle Growth and Regeneration via the Interleukin 4 and Insulin-Like Growth Factor 1 Pathways
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New Role for Serum Response Factor in Postnatal Skeletal Muscle Growth and Regeneration via the Interleukin 4 and Insulin-Like Growth Factor 1 Pathways

机译:血清反应因子通过白介素4和胰岛素样生长因子1途径在产后骨骼肌生长和再生中的新作用

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Serum response factor (SRF) is a crucial transcriptional factor for muscle-specific gene expression. We investigated SRF function in adult skeletal muscles, using mice with a postmitotic myofiber-targeted disruption of the SRF gene. Mutant mice displayed severe skeletal muscle mass reductions due to a postnatal muscle growth defect resulting in highly hypotrophic adult myofibers. SRF-depleted myofibers also failed to regenerate following injury. Muscles lacking SRF had very low levels of muscle creatine kinase and skeletal alpha-actin (SKA) transcripts and displayed other alterations to the gene expression program, indicating an overall immaturity of mutant muscles. This loss of SKA expression, together with a decrease in beta-tropomyosin expression, contributed to myofiber growth defects, as suggested by the extensive sarcomere disorganization found in mutant muscles. However, we observed a downregulation of interleukin 4 (IL-4) and insulin-like growth factor 1 (IGF-1) expression in mutant myofibers which could also account for their defective growth and regeneration. Indeed, our demonstration of SRF binding to interleukin 4 and IGF-1 promoters in vivo suggests a new crucial role for SRF in pathways involved in muscle growth and regeneration.
机译:血清反应因子(SRF)是肌肉特异性基因表达的关键转录因子。我们使用有丝分裂后肌纤维靶向的 SRF 基因破坏的小鼠研究了成年骨骼肌中的SRF功能。突变小鼠由于产后肌肉生长缺陷而导致严重的骨骼肌质量下降,导致高度营养不足的成年肌纤维。耗尽SRF的肌纤维在受伤后也无法再生。缺乏SRF的肌肉的肌酸激酶骨骼肌α-肌动蛋白 SKA )转录水平非常低,并且对基因表达程序有其他改变,表示突变肌肉的整体不成熟状态。 SKA 表达的这种丧失,以及β-tropomyosin表达的降低,导致了肌纤维的生长缺陷,这在突变肌肉中发现了广泛的肌节紊乱。但是,我们观察到白介素4 IL-4 )和胰岛素样生长因子1 IGF-1 < / em>)在突变型肌纤维中的表达,这也可以解释其缺陷的生长和再生。确实,我们在体内对SRF与白介素4和IGF-1启动子结合的证明表明SRF在涉及肌肉生长和再生的途径中具有新的关键作用。

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