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Skeletal muscle features in myotonic dystrophy and sarcopenia: do similar nuclear mechanisms lead to skeletal muscle wasting?

机译:强直性肌营养不良和肌肉减少症的骨骼肌特征:类似的核机制是否会导致骨骼肌萎缩?

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摘要

In the cell nucleus, the gene primary transcripts undergo molecular processing to generate mature RNAs, which are finally exported to the cytoplasm. These mRNA maturation events are chronologically and spatially ordered, and mostly occur on distinct ribonucleoprotein (RNP)-containing structures. Defects in the mRNA maturation pathways have been demonstrated in myotonic dystrophy type 1 (DM1) and type 2 (DM2) whose characteristic multisystemic features are caused by the expansion of two distinct nucleotide sequences: (CTG)n in the DMPK gene on chromosome 19q13 in DM1, and (CCTG)n in the ZNF9 gene on chromosome 3q21 in DM2. By combining biomolecular and cytochemical techniques, it has been shown that the basic mechanisms of DMs reside in the accumulation of CUG- or CCUG-containing transcripts in intranuclear foci where several RNA-binding proteins necessary for the physiological processing of pre-mRNA are sequestered. Moreover, a nucleoplasmic accumulation of splicing and cleavage factors has been found in DMs. This suggests that the dystrophic phenotype could depend on a general alteration of the pre-mRNA post-transcriptional pathway. Interestingly, the accumulation of pre-mRNA processing factors in the myonuclei of DM1 and DM2 patients is reminiscent of the nuclear alterations typical of sarcopenia, i.e., the loss of muscle mass and function which physiologically occurs during ageing. Consistently, in an in vitro study, we observed that satellite-cell-derived DM2 myoblasts show cell senescence alterations and impairment of the pre-mRNA maturation pathways earlier than the myoblasts from healthy patient. These results suggest possible common cellular mechanisms responsible for skeletal muscle wasting in sarcopenia and in myotonic dystrophy.
机译:在细胞核中,基因初级转录本经过分子处理以生成成熟的RNA,最终将其输出到细胞质中。这些mRNA成熟事件是按时间和空间顺序排列的,并且大多发生在不同的含核糖核蛋白(RNP)的结构上。在1型强直性营养不良和2型强直性营养不良中已证明了mRNA成熟途径的缺陷,其特征是多系统性特征是由两个不同核苷酸序列的扩增引起的:(CTG)n位于19q13号染色体上DMPK基因中。 DM1,以及DM2染色体3q21上ZNF9基因中的(CCTG)n。通过结合生物分子技术和细胞化学技术,已证明DM的基本机制在于核内灶中含有CUG或CCUG的转录物的积累,其中螯合了pre-mRNA的生理加工所必需的几种RNA结合蛋白。此外,在DM中发现了剪接和切割因子的核质积累。这表明营养不良的表型可能取决于转录前mRNA转录途径的一般改变。有趣的是,DM1和DM2患者的肌核中前mRNA加工因子的积累使人联想到少肌症的典型核改变,即,在衰老过程中生理发生的肌肉质量和功能的丧失。一致地,在体外研究中,我们观察到卫星细胞衍生的DM2成肌细胞比健康患者的成肌细胞更早显示出细胞衰老改变和mRNA前成熟途径的损伤。这些结果表明可能的常见细胞机制负责骨骼肌减少和肌强直性营养不良。

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