Zako Masahiro, Dong Jianying, Goldberger Olga, Bernfield Merton, Gallagher John T, Deakin Jon A
Division of Newborn Medicine, Children's Hospital, Harvard Medical School, Boston, Massachusetts 02215, USA.
J Biol Chem. 2003 Apr 11;278(15):13561-9. doi: 10.1074/jbc.M209658200. Epub 2003 Feb 5.
Many of the biological functions attributed to cell surface heparan sulfate (HS) proteoglycans, including the Syndecan family, are elicited through the interaction of their HS chains with soluble extracellular molecules. Tightly controlled, cell-specific sulfation and epimerization of HS precursors endows these chains with highly sulfated, iduronate-rich regions, which are major determinants of cytokine and matrix-protein binding and which are interspersed by N-acetylated, poorly sulfated regions. Until this study, there have been no comprehensive structural comparisons made on HS chains decorating simultaneously expressed, but different, syndecan core proteins. In this paper we demonstrate that the HS chains on affinity-purified syndecan-1 and -4 from murine mammary gland cells are essentially identical by a number of parameters. Size determination, disaccharide analyses, enzymatic and chemical scission methods, and affinity co-electrophoresis all failed to reveal any significant differences in fine structure, domain organization, or ligand-binding properties of these HS species. These findings lead us to suggest that the imposition of the fine structure onto HS occurs independently of the core protein to which it is attached and that these core proteins, in addition to the HS chains, may play a pivotal role in the various biological functions ascribed to these macromolecules.
许多归因于细胞表面硫酸乙酰肝素(HS)蛋白聚糖(包括Syndecan家族)的生物学功能,是通过其HS链与可溶性细胞外分子的相互作用引发的。对HS前体进行严格控制的、细胞特异性的硫酸化和差向异构化,赋予这些链高度硫酸化、富含艾杜糖醛酸的区域,这些区域是细胞因子和基质蛋白结合的主要决定因素,并且被N-乙酰化、硫酸化程度低的区域穿插。在本研究之前,尚未对同时表达但不同的Syndecan核心蛋白上修饰的HS链进行全面的结构比较。在本文中,我们通过多个参数证明,从小鼠乳腺细胞中亲和纯化的Syndecan-1和-4上的HS链基本相同。大小测定、二糖分析、酶切和化学裂解方法以及亲和共电泳均未能揭示这些HS种类在精细结构、结构域组织或配体结合特性方面的任何显著差异。这些发现使我们认为,HS精细结构的形成独立于其连接的核心蛋白,并且这些核心蛋白除了HS链之外,可能在归因于这些大分子的各种生物学功能中起关键作用。