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首页> 外文期刊>Bioconjugate Chemistry >Attachment of Peptide Building Blocks to Proteins Through Tyrosine Bioconjugation
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Attachment of Peptide Building Blocks to Proteins Through Tyrosine Bioconjugation

机译:通过酪氨酸生物缀合将肽构建基附着于蛋白质

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摘要

Recent efforts have yielded a number of short peptide sequences with useful binding, sensing, and cellular uptake properties. In order to attach these sequences to tyrosine residues on intact proteins, a three-component Mannich-type strategy is reported. Two solid phase synthetic routes were developed to access peptides up to 20 residues in length with anilines at either the N- or C-termini. In the presence of 20 mM formaldehyde, these functional groups were coupled to tyrosine residues on proteins under mild reaction conditions. The identities of the resulting bioconjugates were confirmed using mass spectrometry and immunoblot analysis. Screening experiments have demonstrated that the method is compatible with substrates containing all of the amino acids, including lysine and cysteine residues. Importantly, tyrosine residues on proteins exhibit much faster reaction rates, allowing short peptides containing this residue to be coupled without cross reactions.
机译:最近的努力已经产生了许多具有有用的结合,传感和细胞摄取特性的短肽序列。为了将这些序列连接至完整蛋白上的酪氨酸残基,报道了三组分曼尼希型策略。开发了两种固相合成路线,以在N端或C端与苯胺接触长达20个残基的肽。在20 mM甲醛存在下,这些官能团在温和的反应条件下与蛋白质上的酪氨酸残基偶联。使用质谱和免疫印迹分析确认了所得生物缀合物的身份。筛选实验表明,该方法与包含所有氨基酸的底物兼容,包括赖氨酸和半胱氨酸残基。重要的是,蛋白质上的酪氨酸残基表现出更快的反应速率,使包含该残基的短肽能够偶联而不会发生交叉反应。

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