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C. elegans dysferlin homolog fer-1 is expressed in muscle and fer-1 mutations initiate altered gene expression of muscle enriched genes

机译:秀丽隐杆线虫dysferlin同系物fer-1在肌肉中表达而fer-1突变引发肌肉富集基因的基因表达改变

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摘要

Mutations in the human dysferlin gene cause Limb Girdle Muscular Dystrophy 2B (LGMD2B). The Caenorhabditis elegans dysferlin homolog, fer-1, affects sperms development but is not known to be expressed in or have a functional roles outside of the male germline. Using several approaches, we show that fer-1 mRNA is present in C. elegans muscle cells but is absent from neurons. In mammals, loss of muscle-expressed dysferlin causes transcriptional deregulation of muscle expressed genes. To determine if similar alterations in gene expression are initiated in C. elegans due to loss of muscle-expressed fer-1, we performed whole genome Affymetrix microarray analysis of two loss-of-function fer-1 mutants. Both mutants gave rise to highly similar changes in gene expression and altered the expression of 337 genes. Using multiple analysis methods, we show that this gene set is enriched for genes known to regulate the structure and function of muscle. However, these transcriptional changes do not appear to be in response to gross sarcomeric damage, since genetically sensitized fer-1 mutants exhibit normal thin filament organization. Our data suggest that processes other than sarcomere stability may be affected by loss of fer-1 in C. elegans muscle. Therefore, C. elegans may be an attractive model system in which to explore new muscle-specific functions of the dysferlin protein and gain insights into the molecular pathogenesis of LGMD2B.
机译:人的dysferlin基因突变会导致肢带型肌营养不良症2B(LGMD2B)。秀丽隐杆线虫dysferlin同系物fer-1影响精子发育,但在雄性种系中不表达或不具有功能。使用几种方法,我们表明fer-1 mRNA存在于秀丽隐杆线虫肌肉细胞中,但神经元中不存在。在哺乳动物中,肌肉表达的dysferlin的缺失会导致肌肉表达基因的转录失调。为了确定是否由于肌肉表达的fer-1的缺失而在秀丽隐杆线虫中引发了基因表达的类似变化,我们对两个功能缺失的fer-1突变体进行了全基因组Affymetrix微阵列分析。这两个突变体引起基因表达高度相似的变化,并改变了337个基因的表达。使用多种分析方法,我们显示该基因集富含已知调节肌肉结构和功能的基因。然而,这些转录变化似乎不是对总的肌节损伤的反应,因为遗传敏化的fer-1突变体表现出正常的细丝组织。我们的数据表明,除了线虫稳定性之外,其他过程也可能受到线虫肌肉中fer-1丢失的影响。因此,秀丽隐杆线虫可能是一个有吸引力的模型系统,在其中探索dysferlin蛋白的新的肌肉特异性功能并深入了解LGMD2B的分子发病机理。

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