Vionnet Justine, Vann Willie F
Laboratory of Bacterial Polysaccharides, Center for Biologics Evaluation and Research, FDA, Bethesda, MD 20892, USA.
Glycobiology. 2007 Jul;17(7):735-43. doi: 10.1093/glycob/cwm032. Epub 2007 Mar 23.
Escherichia coli K92 produces a capsular polysialic acid with alternating alpha2,8 alpha2,9 NeuNAc linkages. This polysaccharide is cross-reactive with the neuroinvasive pathogen Neisseria meningitidis Group C. The K92 polysialyltransferase (PST) catalyzes the synthesis of the polysialic acid with alternating linkages by the transfer of NeuNAc from CMP-NeuNAc to the nonreducing end of the growing polymer. We used a fluorescent-based high-performance liquid chromatography assay to characterize the process of chain extension. The PST elongates the acceptor GT3-FCHASE in a biphasic fashion. The initial phase polymers are characterized by accumulation of product containing 1-8 additional sialic acid residues. This phase is followed by a very rapid formation of high-molecular weight (MW) polymer as the accumulated oligosaccharides containing 8-10 sialic acids are consumed. The high-MW polymer contains 90-100 sialic acids and is sensitive to degradation by periodate and K1-5 endoneuraminidase, suggesting that the polymer contains the alternating structure. The polymerization reaction does not appear to be strictly processive, since oligosaccharides of each intermediate size were detected before accumulation of high-molecular weight polymer. Synthesis can be blocked by CMP-9-azido-NeuNAc. These results suggest that the K92 PST forms both alpha2,8 and alpha2,9 linkages in a successive and nonprocessive fashion.
大肠杆菌K92产生一种具有交替的α2,8和α2,9连接的NeuNAc的荚膜多唾液酸。这种多糖与神经侵袭性病原体脑膜炎奈瑟菌C群有交叉反应。K92多唾液酸转移酶(PST)通过将NeuNAc从CMP-NeuNAc转移到正在生长的聚合物的非还原末端,催化具有交替连接的多唾液酸的合成。我们使用基于荧光的高效液相色谱分析来表征链延伸过程。PST以双相方式延长受体GT3-FCHASE。初始阶段的聚合物的特征是含有1-8个额外唾液酸残基的产物的积累。此阶段之后是高分子量(MW)聚合物的非常快速的形成,因为含有8-10个唾液酸的积累的寡糖被消耗。高分子量聚合物含有90-100个唾液酸,并且对高碘酸盐和K1-5内切神经氨酸酶的降解敏感,这表明该聚合物含有交替结构。聚合反应似乎不是严格的连续反应,因为在高分子量聚合物积累之前检测到了每种中间大小的寡糖。合成可以被CMP-9-叠氮基-NeuNAc阻断。这些结果表明,K92 PST以连续且非连续的方式形成α2,8和α2,9连接。