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富含半胱氨酸的酸性分泌蛋白(SPARC)的生物学特性,这是一种调节细胞与基质相互作用的蛋白质。

The biology of SPARC, a protein that modulates cell-matrix interactions.

作者信息

Lane T F, Sage E H

机构信息

Department of Genetics, Howard Hughes Medical Institute, Harvard University School of Medicine, Boston, Massachusetts 02115.

出版信息

FASEB J. 1994 Feb;8(2):163-73.

PMID:8119487
Abstract

An extracellular matrix-associated glycoprotein expressed in a variety of tissues during embryogenesis and repair, SPARC contains modular domains that can function independently to bind cells and matrix components. Because SPARC can selectively disrupt cellular contacts with matrix and thereby effect changes in cell shape, it has been referred to as an antiadhesin. Inhibition of the expression of SPARC altered axial development in frogs, and deregulated expression in nematode worms resulted in a derangement of muscle attachment and embryonic lethality. SPARC also inhibits cell cycle progression in vitro, in part through a cationic, disulfide-bonded region that is homologous to a repeated domain in the cytokine inhibitor, follistatin. Moreover, SPARC binds specifically to the B chain of platelet-derived growth factor and alters the response of cells to several cytokines. Although information concerning the expression, biochemical properties, and cellular activities of SPARC has increased significantly over the last decade, the precise function of the protein has not been resolved. Goals of future studies include characterization of cell-surface receptors for SPARC and the interactions with morphogens and growth factors that regulate specific activities during animal development.

摘要

SPARC是一种在胚胎发育和修复过程中于多种组织中表达的细胞外基质相关糖蛋白,它含有可独立发挥作用以结合细胞和基质成分的模块化结构域。由于SPARC可选择性地破坏细胞与基质的接触,从而影响细胞形状的变化,因此它被称为抗黏附素。抑制SPARC的表达会改变青蛙的轴向发育,而线虫中SPARC表达失调则导致肌肉附着紊乱和胚胎致死。SPARC在体外也会抑制细胞周期进程,部分是通过一个与细胞因子抑制剂卵泡抑素中的重复结构域同源的阳离子二硫键结合区域来实现的。此外,SPARC特异性结合血小板衍生生长因子的B链,并改变细胞对多种细胞因子的反应。尽管在过去十年中,关于SPARC的表达、生化特性和细胞活性的信息显著增加,但该蛋白的确切功能仍未明确。未来研究的目标包括鉴定SPARC的细胞表面受体,以及研究其与在动物发育过程中调节特定活性的形态发生素和生长因子的相互作用。

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