Warner Lisa R, Brown Raquel J, Yingst Sorcha M C, Oxford Julia Thom
Department of Biology and Biomolecular Research Center, Boise State University, Boise, Idaho 83725, USA.
J Biol Chem. 2006 Dec 22;281(51):39507-16. doi: 10.1074/jbc.M608551200. Epub 2006 Oct 24.
Collagen type XI is a constituent of the pericellular matrix of chondrocytes and plays a role in the regulation of fibrillogenesis. The amino-terminal domain of collagen type XI alpha1 chain is a noncollagenous structure that has been identified on the surface of cartilage collagen fibrils. The biochemical composition of the amino-terminal domain varies due to alternative splicing of the primary transcript. Recombinantly expressed alpha1(XI) aminoterminal domain isoforms were used in this study to investigate potential interactions. Purified products were analyzed for heparan sulfate binding properties. The results demonstrated that two additional binding sites exist within the alpha1(XI) aminoterminal domain, one within the amino propeptide and one within the variable region of the amino-terminal domain. Analysis of relative affinities indicated that the site located within the amino propeptide (site 1) was of similar affinity to sites that exist within the major triple helix of collagen type XI. Substitution of amino acid residues 147 to 152 within the amino propeptide by site-directed mutagenesis resulted in altered affinity for heparan sulfate. The binding site located within the variable region (site 2) demonstrated significantly higher affinity than other sites within the molecule. Displacement of collagen type XI within the pericellular matrix was observed in cell culture in the presence of excess heparan sulfate and by treatment with heparinase. These studies suggest two additional binding sites located within the noncollagenous amino-terminal domain that may play a role in the function of collagen type XI. The localization of collagen type XI within the pericellular matrix may be dependent upon interactions with heparan sulfate proteoglycans, and these are likely to take place in an isoform-specific manner.
XI型胶原蛋白是软骨细胞周细胞基质的组成成分,在纤维形成的调节中发挥作用。XI型胶原蛋白α1链的氨基末端结构域是一种非胶原蛋白结构,已在软骨胶原纤维表面被鉴定出来。由于初级转录本的可变剪接,氨基末端结构域的生化组成有所不同。本研究使用重组表达的α1(XI)氨基末端结构域异构体来研究潜在的相互作用。对纯化产物进行硫酸乙酰肝素结合特性分析。结果表明,在α1(XI)氨基末端结构域内存在另外两个结合位点,一个在氨基前肽内,另一个在氨基末端结构域的可变区内。相对亲和力分析表明,位于氨基前肽内的位点(位点1)与XI型胶原蛋白主要三螺旋内存在的位点具有相似的亲和力。通过定点诱变将氨基前肽内的氨基酸残基147至152进行替换,导致对硫酸乙酰肝素的亲和力发生改变。位于可变区内的结合位点(位点2)显示出比分子内其他位点显著更高的亲和力。在细胞培养中,在存在过量硫酸乙酰肝素的情况下以及用肝素酶处理后,观察到周细胞基质内XI型胶原蛋白的位移。这些研究表明,在非胶原蛋白氨基末端结构域内存在另外两个结合位点,它们可能在XI型胶原蛋白的功能中发挥作用。XI型胶原蛋白在周细胞基质内的定位可能取决于与硫酸乙酰肝素蛋白聚糖的相互作用,并且这些相互作用可能以异构体特异性的方式发生。