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lamin A/C 相关肌营养不良症患者的 microRNA 表达谱分析。

MicroRNA expression profiling in patients with lamin A/C-associated muscular dystrophy.

机构信息

Department of Biochemistry, University of Leicester, Leicester, UK.

出版信息

FASEB J. 2011 Nov;25(11):3966-78. doi: 10.1096/fj.11-182915. Epub 2011 Aug 12.

Abstract

Mutations in the lamin A/C gene (LMNA) cause several disorders referred to as laminopathies, which include premature aging syndromes, lipodystrophy, and striated muscle disorders. There is evidence that lamin A/C plays a role in gene expression. MicroRNAs (miRNAs) are short noncoding RNAs regulating mRNAs involved in various biological processes, including the pathophysiology of striated muscles. Here, we profiled the expression of the miRNA transcriptome in skeletal muscle from patients with LMNA-related muscular dystrophy. Results show that control and patient groups can be distinguished based on their miRNA expression profile. Sixteen miRNAs are significantly dysregulated in patients compared with controls. Pathway enrichment analysis in the predicted targets of these miRNAs revealed pathways involved in muscle repair, such as MAPK, transforming growth factor-β, and Wnt signaling. Interestingly, 9 of these miRNAs (hsa-miR-100, -127-3p, -148a, -136*, -192, -335, -376c, -489, and -502-3p) are highly expressed in fetal muscle, suggesting that the fetal miRNA gene program mediates a regenerative process. Overexpression of these miRNAs in C2C12 mouse myoblasts revealed that 3 of them (miR-100, -192, and -335) participate in muscle proliferation and differentiation. We identified target genes that likely mediate this effect, which include the calcineurin gene PPP3CA. Our findings are the first to demonstrate that miRNA expression is affected in laminopathies.

摘要

核纤层蛋白 A/C 基因突变(LMNA)会导致几种被称为核纤层病的疾病,包括早衰综合征、脂肪营养不良和横纹肌疾病。有证据表明核纤层 A/C 在基因表达中起作用。微小 RNA(miRNA)是调节参与各种生物学过程(包括横纹肌病理生理学)的 mRNA 的短非编码 RNA。在这里,我们对来自与 LMNA 相关的肌肉营养不良患者的骨骼肌中的 miRNA 转录组表达进行了分析。结果表明,基于其 miRNA 表达谱可以区分对照组和患者组。与对照组相比,患者中有 16 个 miRNA 显著失调。这些 miRNA 的预测靶基因的通路富集分析显示,参与肌肉修复的通路,如 MAPK、转化生长因子-β和 Wnt 信号通路。有趣的是,这些 miRNA 中的 9 个(hsa-miR-100、-127-3p、-148a、-136*、-192、-335、-376c、-489 和 -502-3p)在胎儿肌肉中高度表达,这表明胎儿 miRNA 基因程序介导了再生过程。在 C2C12 小鼠成肌细胞中过表达这些 miRNA 表明其中 3 个(miR-100、-192 和 -335)参与肌肉增殖和分化。我们鉴定了可能介导这种效应的靶基因,包括钙调神经磷酸酶基因 PPP3CA。我们的发现首次表明 miRNA 表达在核纤层病中受到影响。

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