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首页> 外文期刊>Neuromuscular disorders: NMD >Dexamethasone induces dysferlin in myoblasts and enhances their myogenic differentiation.
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Dexamethasone induces dysferlin in myoblasts and enhances their myogenic differentiation.

机译:地塞米松在成肌细胞中诱导dysferlin并增强其成肌分化。

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摘要

Glucocorticoids are beneficial in many muscular dystrophies but they are ineffective in treating dysferlinopathy, a rare muscular dystrophy caused by loss of dysferlin. We sought to understand the molecular basis for this disparity by studying the effects of a glucocorticoid on differentiation of the myoblast cell line, C2C12, and dysferlin-deficient C2C12s. We found that pharmacologic doses of dexamethasone enhanced the myogenic fusion efficiency of C2C12s and increased the induction of dysferlin, along with specific myogenic transcription factors, sarcolemmal and structural proteins. In contrast, the dysferlin-deficient C2C12 cell line demonstrated a reduction in long myotubes and early induction of particular muscle differentiation proteins, most notably, myosin heavy chain. Dexamethasone partially reversed the defect in myogenic fusion in the dysferlin-deficient C2C12 cells. We hypothesize that a key therapeutic benefit of glucocorticoids may be the up-regulation of dysferlin as an important component of glucocorticoid-enhanced myogenic differentiation.
机译:糖皮质激素在许多肌肉营养不良症中是有益的,但它们在治疗铁蛋白障碍症方面是无效的,这种疾病是由铁蛋白缺失引起的罕见的肌营养不良症。我们试图通过研究糖皮质激素对成肌细胞系,C2C12和dysferlin缺陷型C2C12s分化的影响来了解这种差异的分子基础。我们发现地塞米松的药理剂量提高了C2C12s的肌原性融合效率,并增加了dysferlin以及特定的肌原性转录因子,肌膜和结构蛋白的诱导。相比之下,dysferlin缺陷型C2C12细胞系显示出长肌管减少和特定肌肉分化蛋白(最明显的是肌球蛋白重链)的早期诱导。地塞米松可部分逆转dysferlin缺陷型C2C12细胞中肌融合的缺陷。我们假设糖皮质激素的关键治疗益处可能是dysferlin的上调,后者是糖皮质激素增强的成肌分化的重要组成部分。

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