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马凡综合征及马凡相关疾病遗传学的最新进展。

Recent progress in genetics of Marfan syndrome and Marfan-associated disorders.

作者信息

Mizuguchi Takeshi, Matsumoto Naomichi

机构信息

Department of Human Genetics, Yokohama City University Graduate School of Medicine, Fukuura 3-9, Kanazawa-ku, Yokohama, 236-0004, Japan.

Solution-Oriented Research for Science and Technology (SORST), JST, Kawaguchi, Japan.

出版信息

J Hum Genet. 2007;52(1):1-12. doi: 10.1007/s10038-006-0078-1. Epub 2006 Oct 24.

Abstract

Marfan syndrome (MFS, OMIM #154700) is a hereditary connective tissue disorder, clinically presenting with cardinal features of skeletal, ocular, and cardiovascular systems. In classical MFS, changes in connective tissue integrity can be explained by defects in fibrillin-1, a major component of extracellular microfibrils. However, some of the clinical manifestations of MFS cannot be explained by mechanical properties alone. Recent studies manipulating mouse Fbn1 have provided new insights into the molecular pathogenesis of MFS. Dysregulation of transforming growth factor beta (TGFbeta) signaling in lung, mitral valve and aortic tissues has been implicated in mouse models of MFS. TGFBR2 and TGFBR1 mutations were identified in a subset of patients with MFS (MFS2, OMIM #154705) and other MFS-related disorders, including Loeys-Dietz syndrome (LDS, #OMIM 609192) and familial thoracic aortic aneurysms and dissections (TAAD2, #OMIM 608987). These data indicate that genetic heterogeneity exists in MFS and its related conditions and that regulation of TGFbeta signaling plays a significant role in these disorders.

摘要

马凡综合征(MFS,OMIM #154700)是一种遗传性结缔组织疾病,临床上表现为骨骼、眼睛和心血管系统的主要特征。在典型的马凡综合征中,结缔组织完整性的改变可由细胞外微原纤维的主要成分原纤蛋白-1的缺陷来解释。然而,马凡综合征的一些临床表现不能仅用机械特性来解释。最近对小鼠Fbn1进行操控的研究为马凡综合征的分子发病机制提供了新的见解。在马凡综合征的小鼠模型中,肺、二尖瓣和主动脉组织中转化生长因子β(TGFβ)信号失调。在一部分马凡综合征患者(MFS2,OMIM #154705)以及其他与马凡综合征相关的疾病中,包括洛伊迪茨综合征(LDS,#OMIM 609192)和家族性胸主动脉瘤及夹层(TAAD2,#OMIM 608987),发现了TGFBR2和TGFBR1突变。这些数据表明,马凡综合征及其相关病症存在遗传异质性,并且TGFβ信号的调节在这些疾病中起着重要作用。

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