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Synthesis and construction of a novel multiple peptide conjugate system: strategy for a subunit vaccine design.

机译:新型多肽偶联物系统的合成和构建:亚单位疫苗设计策略。

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We describe the design and synthesis of a novel well characterized multi-peptide conjugate (MPC) system containing antigens from human malaria parasite and the Tat protein of HIV type-1 (HIV-1-Tat). Construction of the MPC utilizes Fmoc solid-phase peptide synthesis coupled with solution chemistry. In the first phase, a core template that serves as primary anchor for the synthesis and attachment of multiple antigens is synthesized. Serine(trityl) and multiple lysine branches with epsilon groups blocked during chain assembly are incorporated forming a tetrameric core. Cysteine whose side chain thiol serves to couple haloacetyl or S-protected haloacetyl peptides is added to complete assembly of the core template. Modification to the coupling solvent, addition of key amino acid derivatives (N-[1-hydroxy-4-methoxybenzyl]) in the peptide sequence allows the synthesis of base peptides on the core template with molecular mass greater than 7500 kDa. Base peptides are then reacted with high performance liquid chromatography purified haloacetyl peptides to generate multiple peptide conjugates with molecular masses of 10 to 13 kDa. MPC constructs thus formed are further characterized by matrix assisted laser desorption-time of flight mass spectroscopy (MALDI-MS), amino acid analysis, size exclusion chromatography, and SDS-polyacrylamide gel electrophoresis (PAGE). To our knowledge, this is the first report describing a chemically well defined multiple conjugate system with potential for development of synthetic subunit vaccines.
机译:我们描述了一种新型的表征良好的多肽偶联物(MPC)系统的设计和合成,该系统包含来自人类疟疾寄生虫的抗原和HIV 1型(HIV-1-Tat)Tat蛋白。 MPC的构建利用Fmoc固相肽合成以及溶液化学。在第一阶段,合成了核心模板,该模板用作合成和附着多种抗原的主要锚。结合丝氨酸(三苯甲基)和多个赖氨酸分支,其中ε基团在链组装过程中被封闭,形成四聚核。加入半胱氨酸,其侧链硫醇用于偶联卤代乙酰基或S保护的卤代乙酰基肽,以完成核心模板的组装。修饰偶联溶剂后,在肽序列中添加关键氨基酸衍生物(N- [1-羟基-4-甲氧基苄基])可以在核心模板上合成分子量大于7500 kDa的基础肽。然后使基础肽与高效液相色谱纯化的卤代乙酰基肽反应,以生成分子量为10至13 kDa的多种肽结合物。由此形成的MPC构建体进一步通过基质辅助激光解吸-飞行时间质谱(MALDI-MS),氨基酸分析,尺寸排阻色谱法和SDS-聚丙烯酰胺凝胶电泳(PAGE)来表征。据我们所知,这是第一份报告,描述了化学上定义明确的多重缀合物系统,具有开发合成亚基疫苗的潜力。

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