Biosurfaces Unit, CIC biomaGUNE, Paseo Miramon 182, 20009 Donostia-San Sebastian, Spain.
J Biol Chem. 2011 Jul 22;286(29):25675-86. doi: 10.1074/jbc.M111.247395. Epub 2011 May 19.
Tumor necrosis factor-stimulated gene-6 (TSG-6) is a hyaluronan (HA)-binding protein that plays important roles in inflammation and ovulation. TSG-6-mediated cross-linking of HA has been proposed as a functional mechanism (e.g. for regulating leukocyte adhesion), but direct evidence for cross-linking is lacking, and we know very little about its impact on HA ultrastructure. Here we used films of polymeric and oligomeric HA chains, end-grafted to a solid support, and a combination of surface-sensitive biophysical techniques to quantify the binding of TSG-6 into HA films and to correlate binding to morphological changes. We find that full-length TSG-6 binds with pronounced positive cooperativity and demonstrate that it can cross-link HA at physiologically relevant concentrations. Our data indicate that cooperative binding of full-length TSG-6 arises from HA-induced protein oligomerization and that the TSG-6 oligomers act as cross-linkers. In contrast, the HA-binding domain of TSG-6 (the Link module) alone binds without positive cooperativity and weaker than the full-length protein. Both the Link module and full-length TSG-6 condensed and rigidified HA films, and the degree of condensation scaled with the affinity between the TSG-6 constructs and HA. We propose that condensation is the result of protein-mediated HA cross-linking. Our findings firmly establish that TSG-6 is a potent HA cross-linking agent and might hence have important implications for the mechanistic understanding of the biological function of TSG-6 (e.g. in inflammation).
肿瘤坏死因子刺激基因 6(TSG-6)是一种透明质酸(HA)结合蛋白,在炎症和排卵中发挥重要作用。TSG-6 介导的 HA 交联被认为是一种功能机制(例如,调节白细胞黏附),但缺乏交联的直接证据,并且我们对其对 HA 超微结构的影响知之甚少。在这里,我们使用聚合和低聚 HA 链的薄膜,末端接枝到固体支撑物上,并结合使用表面敏感的生物物理技术来量化 TSG-6 进入 HA 薄膜的结合,并将结合与形态变化相关联。我们发现全长 TSG-6 具有明显的正协同结合,并证明它可以在生理相关浓度下交联 HA。我们的数据表明,全长 TSG-6 的协同结合源于 HA 诱导的蛋白质寡聚化,并且 TSG-6 寡聚体充当交联剂。相比之下,TSG-6 的 HA 结合结构域(Link 模块)单独结合时没有正协同性,并且结合力弱于全长蛋白。Link 模块和全长 TSG-6 均使 HA 薄膜凝聚和刚性化,并且凝聚程度与 TSG-6 构建体与 HA 之间的亲和力成正比。我们提出凝聚是蛋白质介导的 HA 交联的结果。我们的发现确凿地确立了 TSG-6 是一种有效的 HA 交联剂,因此可能对理解 TSG-6 的生物学功能(例如在炎症中)的机制具有重要意义。