DeAngelis Paul L, Oatman Leonard C, Gay Daniel F
Department of Biochemistry and Molecular Biology, Oklahoma Center for Medical Glycobiology, University of Oklahoma Health Sciences Center, Oklahoma City, Oklahoma 73104, USA.
J Biol Chem. 2003 Sep 12;278(37):35199-203. doi: 10.1074/jbc.M306431200. Epub 2003 Jul 2.
We describe the chemoenzymatic synthesis of a variety of monodisperse hyaluronan (beta 4-glucuronic acid-beta 3-N-acetylglucosamine (HA)) oligosaccharides. Potential medical applications for HA oligosaccharides (approximately 10-20 sugars in length) include killing cancerous tumors and enhancing wound vascularization. Previously, the lack of defined oligosaccharides has limited the exploration of these sugars as components of new therapeutics. The Pasteurella multocida HA synthase, pmHAS, a polymerizing enzyme that normally elongates HA chains rapidly (approximately 1-100 sugars/s), was converted by mutagenesis into two single-action glycosyltransferases (glucuronic acid transferase and N-acetylglucosamine transferase). The two resulting enzymes were purified and immobilized individually onto solid supports. The two types of enzyme reactors were used in an alternating fashion to produce extremely pure sugar polymers of a single length (up to HA20) in a controlled, stepwise fashion without purification of the intermediates. These molecules are the longest, non-block, monodisperse synthetic oligosaccharides hitherto reported. This technology platform is also amenable to the synthesis of medicant-tagged or radioactive oligosaccharides for biomedical testing. Furthermore, these experiments with immobilized mutant enzymes prove both that pmHAS-catalyzed polymerization is non-processive and that a monomer of enzyme is the functional catalytic unit.
我们描述了多种单分散透明质酸(β4 - 葡萄糖醛酸 - β3 - N - 乙酰葡糖胺(HA))寡糖的化学酶法合成。HA寡糖(长度约为10 - 20个糖)的潜在医学应用包括杀死癌性肿瘤和促进伤口血管形成。此前,缺乏明确的寡糖限制了对这些糖类作为新型治疗药物成分的探索。多杀巴斯德氏菌HA合酶pmHAS是一种通常能快速延长HA链(约1 - 100个糖/秒)的聚合酶,通过诱变将其转化为两种单功能糖基转移酶(葡萄糖醛酸转移酶和N - 乙酰葡糖胺转移酶)。将这两种产生的酶分别纯化并固定在固体支持物上。两种类型的酶反应器交替使用,以可控的、逐步的方式生产出单一长度(最长可达HA20)的极其纯净的糖聚合物,无需对中间体进行纯化。这些分子是迄今为止报道的最长的、无阻断的、单分散的合成寡糖。该技术平台也适用于合成用于生物医学测试的药物标记或放射性寡糖。此外,这些使用固定化突变酶的实验证明,pmHAS催化的聚合反应是非连续的,并且酶的一个单体是功能催化单元。