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首页> 外文期刊>The journal of peptide research: official journal of the American Peptide Society >Synthesis and characterization of Respiratory Syncytial Virus protein G related peptides containing two disulfide bridges.
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Synthesis and characterization of Respiratory Syncytial Virus protein G related peptides containing two disulfide bridges.

机译:包含两个二硫键的呼吸道合胞病毒G蛋白相关肽的合成和表征。

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Respiratory Syncytial Virus (RSV) is the most important cause of bronchiolitis and viral pneumonia in infants and young children. Approximately 100000 children are hospitalized in the USA each year as a result of RSV infections. During the research and development of subunit human Respiratory Syncytial Virus vaccines (hRSV), we have produced numerous synthetic peptides and recombinant proteins containing the four cysteines of the highly conserved central region of the G attachment protein. For several of these disulfide-containing peptides, all possible oxidized isomers were synthesized using various oxidation conditions and resulting in different ratios of isomers. Each isolated isomer was fully characterized by RP-HPLC, FZCE and ES-MS after purification by preparative RP-HPLC. The different cysteine pairings were unambiguously established after enzymatic digestion, LC-MS analysis and peptide microsequencing. These synthesis and analytical methods were developed for the characterization on one hand, of recombinant fusion protein BBG2Na which is currently being investigated in advanced clinical phases as a very promising vaccine candidate, and on the other hand, for peptides which were synthesized to be evaluated as conjugate vaccines or as immunochemical tools, after covalent coupling to carrier proteins. Furthermore, these studies allowed us to determine which of the different possible isomers was the most stable and probably the preferred form in native conditions. Finally, the different oxidation and analysis conditions, should be useful for disulfide pairing studies of other peptides and proteins having the same 'xCxxCxxxxxCxxxCx' framework, such as G proteins of non-human RSV strains, developed by other groups as veterinary vaccine candidates for example.
机译:呼吸道合胞病毒(RSV)是婴幼儿毛细支气管炎和病毒性肺炎的最重要原因。由于RSV感染,每年在美国约有100000名儿童住院。在亚单位人类呼吸道合胞病毒疫苗(hRSV)的研究和开发过程中,我们生产了许多合成肽和重组蛋白,其中包含G附着蛋白高度保守的中央区域的四个半胱氨酸。对于这些含二硫键的肽中的几种,使用各种氧化条件合成了所有可能的氧化异构体,并导致了不同比例的异构体。通过制备型RP-HPLC纯化后,每种分离的异构体均通过RP-HPLC,FZCE和ES-MS进行充分表征。在酶消化,LC-MS分析和肽微测序后,明确确定了不同的半胱氨酸配对。这些合成和分析方法一方面用于表征重组融合蛋白BBG2Na(目前正作为非常有前途的候选疫苗在临床上进行研究),另一方面针对合成后被评估为共价偶联至载体蛋白后,结合疫苗或作为免疫化学工具。此外,这些研究使我们能够确定在自然条件下,哪种可能的异构体最稳定,也可能是首选形式。最后,不同的氧化和分析条件对于其他具有相同“ xCxxCxxxxxCxxxCx”构架的肽和蛋白质(例如非人类RSV毒株的G蛋白)的二硫键配对研究应该是有用的,这些蛋白质是由其他团体开发的,例如作为兽医疫苗候选物。

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