Yamaguchi Satoko, Nishida Yoshihiro, Sasaki Kenji, Kambara Mikie, Kim Chan-Lan, Ishiguro Naotaka, Nagatsuka Takehiro, Uzawa Hirotaka, Horiuchi Motohiro
Department of Veterinary Public Health, Obihiro University of Agriculture and Veterinary Medicine, Inada-cho, Obihiro 080-8555, Japan.
Biochem Biophys Res Commun. 2006 Oct 20;349(2):485-91. doi: 10.1016/j.bbrc.2006.08.072. Epub 2006 Aug 22.
Sulfated glycosaminoglycans (GAGs) and sulfated glycans inhibit formation of the abnormal isoform of prion protein (PrPSc) in prion-infected cells and prolong the incubation time of scrapie-infected animals. Sulfation of GAGs is not tightly regulated and possible sites of sulfation are randomly modified, which complicates elucidation of the fundamental structures of GAGs that mediate the inhibition of PrPSc formation. To address the structure-activity relationship of GAGs in the inhibition of PrPSc formation, we screened the ability of various regioselectively O-sulfated glycopyranosides to inhibit PrPSc formation in prion-infected cells. Among the glycopyranosides and their polymers examined, monomeric 4-sulfo-N-acetyl-glucosamine (4SGN), and two glycopolymers, poly-4SGN and poly-6-sulfo-N-acetyl-glucosamine (poly-6SGN), inhibited PrPSc formation with 50% effective doses below 20 microg/ml, and their inhibitory effect became more evident with consecutive treatments. Structural comparisons suggested that a combination of an N-acetyl group at C-2 and an O-sulfate group at either O-4 or O-6 on glucopyranoside might be involved in the inhibition of PrPSc formation. Furthermore, polymeric but not monomeric 6SGN inhibited PrPSc formation, suggesting the importance of a polyvalent configuration in its effect. These results indicate that the synthetic sulfated glycosides are useful not only for the analysis of structure-activity relationship of GAGs but also for the development of therapeutics for prion diseases.
硫酸化糖胺聚糖(GAGs)和硫酸化聚糖可抑制朊病毒感染细胞中朊病毒蛋白异常异构体(PrPSc)的形成,并延长瘙痒病感染动物的潜伏期。GAGs的硫酸化调控不严格,可能的硫酸化位点随机修饰,这使得阐明介导PrPSc形成抑制作用的GAGs基本结构变得复杂。为了研究GAGs在抑制PrPSc形成中的构效关系,我们筛选了各种区域选择性O - 硫酸化吡喃糖苷在朊病毒感染细胞中抑制PrPSc形成的能力。在所检测的吡喃糖苷及其聚合物中,单体4 - 磺基 - N - 乙酰葡糖胺(4SGN)以及两种糖聚合物聚4SGN和聚6 - 磺基 - N - 乙酰葡糖胺(聚6SGN)在有效剂量50%低于20μg/ml时抑制PrPSc形成,且连续处理时其抑制作用更明显。结构比较表明,吡喃葡萄糖苷C - 2位的N - 乙酰基与O - 4或O - 6位的O - 硫酸酯基组合可能参与PrPSc形成的抑制。此外,聚合的但非单体的6SGN抑制PrPSc形成,表明多价构型在其作用中的重要性。这些结果表明,合成硫酸化糖苷不仅对分析GAGs的构效关系有用,而且对朊病毒疾病治疗药物的开发也有用。