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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Engineering neonatal Fc receptor-mediated recycling and transcytosis in recombinant proteins by short terminal peptide extensions
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Engineering neonatal Fc receptor-mediated recycling and transcytosis in recombinant proteins by short terminal peptide extensions

机译:通过短末端肽延伸工程改造重组蛋白中新生Fc受体介导的回收和转胞作用

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摘要

The importance of therapeutic recombinant proteins in medicine has led to a variety of tactics to increase their circulation time or to enable routes of administration other than injection. One clinically successful tactic to improve both protein circulation and delivery is to fuse the Fc domain of IgG to therapeutic proteins so that the resulting fusion proteins interact with the human neonatal Fc receptor (FcRn). As an alternative to grafting the high molecular weight Fc domain to therapeutic proteins, we have modified their N and/or C termini with a short peptide sequence that interacts with FcRn. Our strategy was motivated by results [Mezo AR, et al. (2008) Proc Natl Acad Sci USA 105:2337-2342] that identified peptides that compete with human IgG for FcRn. The small size and simple structure of the FcRn-binding peptide (FcBP) allows for expression of FcBP fusion proteins in Escherichia coli and results in their pH-dependent binding to FcRn with an affinity comparable to that of IgG. The FcBP fusion proteins are internalized, recycled, and transcytosed across cell monolayers that express FcRn. This strategy has the potential to improve protein transport across epithelial barriers, which could lead to noninvasive administration and also enable longer half-lives of therapeutic proteins.
机译:治疗性重组蛋白在医学中的重要性已导致多种策略来增加其循环时间或实现除注射外的给药途径。一种改善蛋白质循环和递送的临床上成功的策略是将IgG的Fc结构域融合到治疗性蛋白质上,从而使所得的融合蛋白与人新生儿Fc受体(FcRn)相互作用。作为将高分子量Fc结构域嫁接到治疗性蛋白的替代方法,我们用与FcRn相互作用的短肽序列修饰了它们的N和/或C末端。我们的策略是基于结果[Mezo AR等。 (2008)Proc Natl Acad Sci USA 105:2337-2342]鉴定了与人IgG竞争FcRn的肽。 FcRn结合肽(FcBP)的体积小且结构简单,可在大肠杆菌中表达FcBP融合蛋白,并导致其与FcRn的pH依赖性结合,其亲和力可与IgG媲美。 FcBP融合蛋白在表达FcRn的细胞单层中被内化,再循环和转胞吞。该策略具有改善跨上皮屏障的蛋白质运输的潜力,这可能导致非侵入性给药,并使治疗性蛋白质的半衰期更长。

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  • 作者单位

    Pharmaceutical Sciences and Pharmacogenomics Graduate Program, Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, CA 94143;

    Pharmaceutical Sciences and Pharmacogenomics Graduate Program, Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, CA 94143;

    Pharmaceutical Sciences and Pharmacogenomics Graduate Program, Department of Bioengineering and Therapeutic Sciences, University of California, San Francisco, CA 94143;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    protein engineering; drug delivery; nanoparticles;

    机译:蛋白质工程;药物输送;纳米粒子;

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