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酶法化学合成免疫原性脑膜炎奈瑟菌 C 群多聚唾液酸-破伤风类毒素 Hc 片段糖缀合物。

Chemoenzymatic synthesis of immunogenic meningococcal group C polysialic acid-tetanus Hc fragment glycoconjugates.

机构信息

Laboratory of Bacterial Polysaccharides, CBER-FDA, 8800 Rockville Pike, Bethesda, MD, 20892, USA.

出版信息

Glycoconj J. 2013 Dec;30(9):857-70. doi: 10.1007/s10719-013-9490-x. Epub 2013 Aug 16.

Abstract

Vaccination with meningococcal glycoconjugate vaccines has decreased the incidence of invasive meningitis worldwide. These vaccines contain purified capsular polysaccharides attached to a carrier protein. Because of derivatization chemistries used in the process, conjugation of polysaccharide to protein often results in heterogeneous mixtures. Well-defined vaccines are needed to determine the relationship between vaccine structure and generated immune response. Here, we describe efforts to produce well-defined vaccine candidates by chemoenzymatic synthesis. Chemically synthesized lactosides were substrates for recombinant sialyltransferase enzymes from Camplyobacter jejuni and Neisseria meningitidis serogroup C. These resulting oligosialic acids have the same α(2-9) sialic acid repeat structure as Neisseria polysaccharide capsule with the addition of a conjugatable azide aglycon. The degree of polymerization (DP) of carbohydrate products was controlled by inclusion of the inhibitor CMP-9-deoxy-NeuNAc. Polymers with estimated DP < 47 (median DP 25) and DP < 100 (median DP 51) were produced. The receptor binding domain of the tetanus toxin protein (TetHc) was coupled as a carrier to the enzymatically synthesized oligosialic acids. Recombinant TetHc was derivatized with an alkyne squarate. Protein modification sites were determined by trypsin proteolysis followed by LC/MS-MS(E) analysis of peptides. Oligosialic acid azides were conjugated to modified TetHc via click chemistry. These chemoenzymatically prepared glycoconjugates were reactive in immunoassays with specific antibodies against either group C polysaccharide or TetHc. Sera of mice immunized with oligosialic acid-TetHc glycoconjugates contained much greater levels of polysaccharide-reactive IgG than the sera of control mice receiving unconjugated oligosialic acids. There was no apparent difference between glycoconjugates containing oligosaccharides of DP < 47 and DP < 100. These results suggest that chemoenzymatic synthesis may provide a viable method for making defined meningococcal vaccine candidates.

摘要

脑膜炎球菌糖缀合物疫苗的接种已降低了全球侵袭性脑膜炎的发病率。这些疫苗含有与载体蛋白结合的纯化荚膜多糖。由于在该过程中使用的衍生化学,多糖与蛋白质的缀合通常导致异质混合物。需要明确的疫苗来确定疫苗结构与产生的免疫反应之间的关系。在这里,我们描述了通过化学酶合成生产明确疫苗候选物的努力。化学合成的乳糖苷是来自空肠弯曲菌和脑膜炎奈瑟菌 C 群血清型的重组唾液酸转移酶的底物。这些得到的寡唾液酸具有与脑膜炎奈瑟菌多糖荚膜相同的α(2-9)唾液酸重复结构,并添加了可缀合的叠氮化物糖基。碳水化合物产物的聚合度(DP)通过包含抑制剂 CMP-9-脱氧-NeuNAc 来控制。产生了 DP<47(中值 DP25)和 DP<100(中值 DP51)的聚合物。破伤风毒素蛋白(TetHc)的受体结合结构域被偶联作为载体与酶合成的寡唾液酸。重组 TetHc 被炔基 squarate 衍生化。通过胰蛋白酶蛋白水解法和肽的 LC/MS-MS(E)分析确定蛋白质修饰位点。寡唾液酸叠氮化物通过点击化学连接到修饰的 TetHc。通过免疫测定,这些化学酶制备的糖缀合物与针对 C 群多糖或 TetHc 的特异性抗体反应。用寡唾液酸-TetHc 糖缀合物免疫的小鼠的血清中含有比接受未缀合的寡唾液酸的对照小鼠的血清中多得多的多糖反应性 IgG。DP<47 和 DP<100 的糖缀合物之间没有明显差异。这些结果表明,化学酶合成可能为制备明确的脑膜炎球菌疫苗候选物提供了一种可行的方法。

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