Kim Byung-Taek, Kitagawa Hiroshi, Tanaka Junko, Tamura Jun-ichi, Sugahara Kazuyuki
Department of Biochemistry, Kobe Pharmaceutical University, 4-19-1 Motoyasmakita-machi, Higashinada-ku, Kobe 658-8558, Japan.
J Biol Chem. 2003 Oct 24;278(43):41618-23. doi: 10.1074/jbc.M304831200. Epub 2003 Aug 7.
Heparan, the common unsulfated precursor of heparan sulfate (HS) and heparin, is synthesized on the glycosaminoglycan-protein linkage region tetrasaccharide GlcUA-Gal-Gal-Xyl attached to the respective core proteins presumably by HS co-polymerases encoded by EXT1 and EXT2, the genetic defects of which result in hereditary multiple exostoses in humans. Although both EXT1 and EXT2 exhibit GlcNAc transferase and GlcUA transferase activities required for the HS synthesis, no HS chain polymerization has been demonstrated in vitro using recombinant enzymes. Here we report in vitro HS polymerization. Recombinant soluble enzymes expressed by co-transfection of EXT1 and EXT2 synthesized heparan polymers with average molecular weights greater than 1.7 x 105 using UDP-[3H]GlcNAc and UDP-GlcUA as donors on the recombinant glypican-1 core protein and also on the synthetic linkage region analog GlcUA-Gal-O-C2H4NH-benzyloxycarbonyl. Moreover, in our in vitro polymerization system, a part time proteoglycan, alpha-thrombomodulin, that is normally modified with chondroitin sulfate served as a polymerization primer for heparan chain. In contrast, no polymerization was achieved with a mixture of individually expressed EXT1 and EXT2 or with acceptor substrates such as N-acetylheparosan oligosaccharides or the linkage region tetrasaccharide-Ser, which are devoid of a hydrophobic aglycon, suggesting the critical requirement of core protein moieties in addition to the interaction between EXT1 and EXT2 for HS polymerization.
乙酰肝素是硫酸乙酰肝素(HS)和肝素的常见非硫酸化前体,它在连接于各自核心蛋白的糖胺聚糖 - 蛋白质连接区域四糖GlcUA - Gal - Gal - Xyl上合成,推测是由EXT1和EXT2编码的HS共聚合酶催化,这两种基因的缺陷会导致人类遗传性多发性骨软骨瘤。尽管EXT1和EXT2都表现出HS合成所需的GlcNAc转移酶和GlcUA转移酶活性,但使用重组酶在体外尚未证明有HS链聚合反应。在此我们报道了体外HS聚合反应。通过共转染EXT1和EXT2表达的重组可溶性酶,以UDP - [3H]GlcNAc和UDP - GlcUA作为供体,在重组磷脂酰肌醇蛋白聚糖 - 1核心蛋白以及合成连接区域类似物GlcUA - Gal - O - C2H4NH - 苄氧羰基上合成了平均分子量大于1.7×105的乙酰肝素聚合物。此外,在我们的体外聚合系统中,通常用硫酸软骨素修饰的兼职蛋白聚糖α - 凝血酶调节蛋白作为乙酰肝素链的聚合引物。相反,单独表达的EXT1和EXT2的混合物或受体底物如N - 乙酰乙酰肝素寡糖或缺乏疏水苷元的连接区域四糖 - Ser均未实现聚合反应,这表明除了EXT1和EXT2之间的相互作用外,核心蛋白部分对HS聚合也至关重要。