Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390-9148, USA.
Int J Biochem Cell Biol. 2010 Jul;42(7):1084-93. doi: 10.1016/j.biocel.2010.03.009. Epub 2010 Mar 15.
Evolution of elastic fibers is associated with establishment of the closed circulation system. Primary roles of elastic fibers are to provide elasticity and recoiling to tissues and organs and to maintain the structural integrity against mechanical strain over a lifetime. Elastic fibers are comprised of an insoluble elastin core and surrounding mantle of microfibrils. Elastic fibers are formed in a regulated, stepwise manner, which includes the formation of a microfibrillar scaffold, deposition and integration of tropoelastin monomers into the scaffold, and cross-linking of the monomers to form an insoluble, functional polymer. In recent years, an increasing number of glycoproteins have been identified and shown to be located on or surrounding elastic fibers. Among them, the short fibulins-3, -4 and -5 particularly drew attention because of their potent elastogenic activity. Fibulins-3, -4 and -5 are characterized by tandem repeats of calcium binding EGF-like motifs and a C-terminal fibulin module, which is conserved throughout fibulin family members. Initial biochemical characterization and gene expression studies predicted that fibulins might be involved in structural support and/or matrix-cell interactions. Recent analyses of short fibulin knockout mice have revealed their critical roles in elastic fiber development in vivo. We review recent findings on the elastogenic functions of short fibulins and discuss the molecular mechanism underlying their activity in vitro and in vivo.
弹性纤维的进化与封闭循环系统的建立有关。弹性纤维的主要作用是为组织和器官提供弹性和回弹力,并在整个生命周期内保持结构完整性以抵抗机械应变。弹性纤维由不溶性弹性蛋白核心和周围的微纤维层组成。弹性纤维以一种受调控的分步方式形成,包括微纤维支架的形成、原弹性蛋白单体沉积和整合到支架中,以及单体交联形成不溶性功能聚合物。近年来,越来越多的糖蛋白被鉴定出来,并被证明位于弹性纤维上或周围。其中,短纤维蛋白-3、-4 和-5 由于其强大的弹性蛋白生成活性而特别受到关注。纤维蛋白-3、-4 和-5 的特征是钙结合 EGF 样基序的串联重复和 C 末端纤维蛋白模块,该模块在整个纤维蛋白家族成员中保守。最初的生化特征分析和基因表达研究预测,纤维蛋白可能参与结构支撑和/或基质细胞相互作用。最近对短纤维蛋白敲除小鼠的分析揭示了它们在体内弹性纤维发育中的关键作用。我们综述了短纤维蛋白的弹性蛋白生成功能的最新发现,并讨论了它们在体外和体内活性的分子机制。