Izumikawa Tomomi, Uyama Toru, Okuura Yuka, Sugahara Kazuyuki, Kitagawa Hiroshi
Department of Biochemistry, Kobe Pharmaceutical University, Higashinada-ku, Kobe 658-8558, Japan.
Biochem J. 2007 May 1;403(3):545-52. doi: 10.1042/BJ20061876.
Previously, we have demonstrated that co-expression of ChSy-1 (chondroitin synthase-1), with ChPF (chondroitin-polymerizing factor) resulted in a marked augmentation of glycosyltransferase activities and the expression of the chondroitin polymerase activity of ChSy-1. These results prompted us to evaluate the effects of co-expression of the recently cloned CSS3 (chondroitin sulfate synthase-3) with ChPF, because ChSy-1 and CSS3 have similar properties, i.e. they possess GalNAcT-II (N-acetylgalactosaminyltransferase-II) and GlcAT-II (glucuronyltransferase-II) activities responsible for the elongation of CS (chondroitin sulfate) chains but cannot polymerize chondroitin chains by themselves. Co-expressed CSS3 and ChPF showed not only substantial GalNAcT-II and GlcAT-II activities but also chondroitin polymerase activity. Interestingly, co-expressed ChSy-1 and CSS3 also exhibited polymerase activity. The chain length of chondroitin formed by the co-expressed proteins in various combinations was different. In addition, interactions between any two of ChSy-1, CSS3 and ChPF were demonstrated by pull-down assays. Moreover, overexpression of CSS3 increased the amount of CS in HeLa cells, while the RNA interference of CSS3 resulted in a reduction in the amount of CS in the cells. Altogether these results suggest that chondroitin polymerization is achieved by multiple combinations of ChSy-1, CSS3 and ChPF. Based on these characteristics, we have renamed CSS3 ChSy-2 (chondroitin synthase-2).
此前,我们已经证明,ChSy-1(硫酸软骨素合酶-1)与ChPF(硫酸软骨素聚合因子)共表达可显著增强糖基转移酶活性以及ChSy-1的硫酸软骨素聚合酶活性。这些结果促使我们评估最近克隆的CSS3(硫酸软骨素合酶-3)与ChPF共表达的效果,因为ChSy-1和CSS3具有相似的特性,即它们都具有负责硫酸软骨素(CS)链延长的GalNAcT-II(N-乙酰半乳糖胺基转移酶-II)和GlcAT-II(葡萄糖醛酸基转移酶-II)活性,但自身无法聚合硫酸软骨素链。共表达的CSS3和ChPF不仅表现出大量的GalNAcT-II和GlcAT-II活性,还具有硫酸软骨素聚合酶活性。有趣的是,共表达的ChSy-1和CSS3也表现出聚合酶活性。由共表达的蛋白质以各种组合形成的硫酸软骨素的链长不同。此外,通过下拉实验证明了ChSy-1、CSS3和ChPF中任意两者之间的相互作用。此外,CSS3的过表达增加了HeLa细胞中CS的含量,而CSS3的RNA干扰导致细胞中CS含量减少。总之,这些结果表明硫酸软骨素聚合是通过ChSy-1、CSS3和ChPF的多种组合实现的。基于这些特性,我们将CSS3重新命名为ChSy-2(硫酸软骨素合酶-2)。