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原纤维蛋白:从微原纤维的生物合成到信号传导功能

Fibrillins: from biogenesis of microfibrils to signaling functions.

作者信息

Hubmacher Dirk, Tiedemann Kerstin, Reinhardt Dieter P

机构信息

Department of Anatomy and Cell Biology, Faculty of Medicine, McGill University Montreal, Quebec, H3A 2B2, Canada.

出版信息

Curr Top Dev Biol. 2006;75:93-123. doi: 10.1016/S0070-2153(06)75004-9.

Abstract

Fibrillins are large proteins that form extracellular microfibril suprastructures ubiquitously found in elastic and nonelastic tissues. Mutations in fibrillin-1 and -2 lead to a number of heritable connective tissue disorders generally termed fibrillinopathies. Clinical symptoms in fibrillinopathies manifest in the skeletal, ocular, and cardiovascular systems and highlight the importance of fibrillins in development and homeostasis of tissues and organs, including blood vessels, bone, and eye. Microfibrils appear to have dual roles in (1) conferring mechanical stability and limited elasticity to tissues, and (2) modulating the activity of growth factors of the transforming growth factor beta (TGF-beta) superfamily. This chapter's focus is on the biogenesis of microfibrils, developmental expression patterns of fibrillins, signaling functions of microfibrils, and mouse models deficient in fibrillins.

摘要

原纤蛋白是一种大型蛋白质,可形成细胞外微原纤维超结构,广泛存在于弹性和非弹性组织中。原纤蛋白-1和-2的突变会导致多种遗传性结缔组织疾病,通常称为原纤蛋白病。原纤蛋白病的临床症状表现在骨骼、眼部和心血管系统,突出了原纤蛋白在组织和器官(包括血管、骨骼和眼睛)发育和内环境稳定中的重要性。微原纤维似乎具有双重作用:(1)赋予组织机械稳定性和有限弹性;(2)调节转化生长因子β(TGF-β)超家族生长因子的活性。本章重点关注微原纤维的生物发生、原纤蛋白的发育表达模式、微原纤维的信号传导功能以及缺乏原纤蛋白的小鼠模型。

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