Zuela Noam, Dorfman Jehudith, Gruenbaum Yosef
a Department of Genetics, Institute of Life Sciences, Hebrew University of Jerusalem , Jerusalem , Israel.
Nucleus. 2017 Jan 2;8(1):60-69. doi: 10.1080/19491034.2016.1238999. Epub 2016 Sep 27.
There are numerous heritable diseases associated with mutations in the LMNA gene. Most of these laminopathic diseases, including several muscular dystrophies, are autosomal dominant and have tissue-specific phenotypes. Our previous studies have shown that the globally expressed Emery-Dreifuss muscular dystrophy (EDMD)-linked lamin mutation, L535P, disrupts nuclear mechanical response specifically in muscle nuclei of C. elegans leading to atrophy of the body muscle cells and to reduced motility. Here we used RNA sequencing to analyze the global changes in gene expression caused by the L535P EDMD lamin mutation in order to gain better understanding of disease mechanisms and the correlation between transcription and phenotype. Our results show changes in key genes and biological pathways that can help explain the muscle specific phenotypes. In addition, the differential gene expression between wild-type and L535P mutant animals suggests that the pharynx function in the L535P mutant animals is affected by this lamin mutation. Moreover, these transcriptional changes were then correlated with reduced pharynx activity and abnormal pharynx muscle structure. Understanding disease mechanisms will potentially lead to new therapeutic approaches toward curing EDMD.
有许多与LMNA基因突变相关的遗传性疾病。这些层粘连蛋白病中的大多数,包括几种肌肉萎缩症,都是常染色体显性遗传的,并且具有组织特异性表型。我们之前的研究表明,全球表达的与埃默里-德赖富斯肌营养不良症(EDMD)相关的层粘连蛋白突变L535P,会特异性破坏秀丽隐杆线虫肌肉细胞核中的核机械反应,导致身体肌肉细胞萎缩并降低运动能力。在这里,我们使用RNA测序来分析由L535P EDMD层粘连蛋白突变引起的基因表达的整体变化,以便更好地理解疾病机制以及转录与表型之间的相关性。我们的结果显示了关键基因和生物途径的变化,这有助于解释肌肉特异性表型。此外,野生型和L535P突变动物之间的差异基因表达表明,L535P突变动物的咽部功能受这种层粘连蛋白突变的影响。而且,这些转录变化随后与咽部活动减少和咽部肌肉结构异常相关。了解疾病机制可能会带来治疗EDMD的新方法。