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A New Mouse Model for Marfan Syndrome Presents Phenotypic Variability Associated with the Genetic Background and Overall Levels of Fbn1 Expression

机译:马凡氏综合征的新的小鼠模型呈现与遗传背景和Fbn1表达的总体水平相关的表型变异性。

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摘要

Marfan syndrome is an autosomal dominant disease of connective tissue caused by mutations in the fibrillin-1 encoding gene FBN1. Patients present cardiovascular, ocular and skeletal manifestations, and although being fully penetrant, MFS is characterized by a wide clinical variability both within and between families. Here we describe a new mouse model of MFS that recapitulates the clinical heterogeneity of the syndrome in humans. Heterozygotes for the mutant Fbn1 allele mgΔloxPneo, carrying the same internal deletion of exons 19–24 as the mgΔ mouse model, present defective microfibrillar deposition, emphysema, deterioration of aortic wall and kyphosis. However, the onset of a clinical phenotypes is earlier in the 129/Sv than in C57BL/6 background, indicating the existence of genetic modifiers of MFS between these two mouse strains. In addition, we characterized a wide clinical variability within the 129/Sv congenic heterozygotes, suggesting involvement of epigenetic factors in disease severity. Finally, we show a strong negative correlation between overall levels of Fbn1 expression and the severity of the phenotypes, corroborating the suggested protective role of normal fibrillin-1 in MFS pathogenesis, and supporting the development of therapies based on increasing Fbn1 expression.
机译:马凡氏综合症是由原纤维蛋白1编码基因FBN1突变引起的结缔组织常染色体显性遗传疾病。患者表现出心血管,眼部和骨骼的表现,尽管完全渗透,但MFS的特点是家庭内部和家庭之间的临床差异很大。在这里,我们描述了一个新的MFS小鼠模型,该模型概括了人类综合征的临床异质性。突变的Fbn1等位基因mgΔ loxPneo 的杂合子具有与mgΔ小鼠模型相同的第19-24外显子内部缺失,表现出微纤维沉积缺陷,肺气肿,主动脉壁变质和后凸畸形。但是,在129 / Sv中,临床表型的发作要早于C57BL / 6背景,这表明这两种小鼠品系之间存在MFS遗传修饰物。此外,我们表征了129 / Sv同基因杂合子内的广泛临床变异性,表明表观遗传因素参与了疾病的严重程度。最后,我们显示Fbn1表达的总体水平与表型的严重程度之间存在强烈的负相关性,证实了正常原纤维蛋白1在MFS发病机制中的保护作用,并支持基于Fbn1表达增加的疗法的发展。

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