Suppr超能文献

LMNA 基因突变 G232E 和 R482L 导致骨骼肌分化、生物能量和代谢基因表达谱的失调。

LMNA Mutations G232E and R482L Cause Dysregulation of Skeletal Muscle Differentiation, Bioenergetics, and Metabolic Gene Expression Profile.

机构信息

National Almazov Medical Research Centre, Institute of Molecular Biology and Genetics, 197341 Saint-Petersburg, Russia.

ITMO University, Information Technologies and Programming Faculty, International Laboratory of Bioinformatics and Genomics, 197101 St. Petersburg, Russia.

出版信息

Genes (Basel). 2020 Sep 7;11(9):1057. doi: 10.3390/genes11091057.

Abstract

Laminopathies are a family of monogenic multi-system diseases resulting from mutations in the gene which include a wide range of neuromuscular disorders. Although lamins are expressed in most types of differentiated cells, LMNA mutations selectively affect only specific tissues by mechanisms that remain largely unknown. We have employed the combination of functional in vitro experiments and transcriptome analysis in order to determine how two LMNA mutations associated with different phenotypes affect skeletal muscle development and metabolism. We used a muscle differentiation model based on C2C12 mouse myoblasts genetically modified with lentivirus constructs bearing wild-type human LMNA (WT-LMNA) or R482L-LMNA/G232E-LMNA mutations, linked to familial partial lipodystrophy of the Dunnigan type and muscular dystrophy phenotype accordingly. We have shown that both G232E/R482L-LMNA mutations cause dysregulation in coordination of pathways that control cell cycle dynamics and muscle differentiation. We have also found that R482/G232E-LMNA mutations induce mitochondrial uncoupling and a decrease in glycolytic activity in differentiated myotubes. Both types of alterations may contribute to mutation-induced muscle tissue pathology.

摘要

层粘连蛋白病是一组单基因多系统疾病,由基因中的突变引起,包括广泛的神经肌肉疾病。尽管层粘连蛋白在大多数类型的分化细胞中表达,但 LMNA 突变仅通过机制选择性地影响特定组织,这些机制在很大程度上尚不清楚。我们采用了功能体外实验和转录组分析的组合,以确定与不同表型相关的两种 LMNA 突变如何影响骨骼肌的发育和代谢。我们使用了一种基于 C2C12 小鼠成肌细胞的肌肉分化模型,该模型通过携带野生型人 LMNA(WT-LMNA)或 R482L-LMNA/G232E-LMNA 突变的慢病毒构建体进行基因修饰,这些突变与家族性部分脂肪营养不良的 Dunnigan 型和肌肉营养不良表型相关。我们已经表明,G232E/R482L-LMNA 突变会导致控制细胞周期动态和肌肉分化的途径失调。我们还发现,R482/G232E-LMNA 突变会诱导分化肌管中的线粒体解偶联和糖酵解活性降低。这两种类型的改变都可能导致突变诱导的肌肉组织病理学。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验