首页> 外文期刊>Chembiochem: A European journal of chemical biology >Multifunctional Folded Polypeptides from Peptide Synthesis and Site-Selective Self-Functionalization-Practical Scaffolds in Aqueous Solution
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Multifunctional Folded Polypeptides from Peptide Synthesis and Site-Selective Self-Functionalization-Practical Scaffolds in Aqueous Solution

机译:多肽合成和水溶液中位点选择性自官能化实用支架的多功能折叠多肽

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摘要

The site selectivity of His-mediated lysine and ornithine side-chain acylation in a designed four-helix bundle protein scaffold was mapped by reaction of several polypeptides with one equivalent of mono-p-nitrophenyl fumarate in aqueous solution at pH 5.9 and room temperature followed by an analysis of the degrees and sites of acylation. Integration of the HPLC chromatograms of the acylated polypeptides and trypsin cleavage followed by mass spectrometry analysis of the tryptic fragments provided the experimental evidence. Based on these and previously published results a strategy was developed for the site-selective and stepwise incorporation of three residues into a folded polypeptide in aqueous solution at room temperature. The first substituent was incorporated by reaction of a 1.7-fold excess of the corresponding active ester with the polypeptide at pH 5.9, the second substituent was introduced in a 3-fold excess after the pH value was raised to 8, and the third substituent was incorporated by reaction of a 10-fold excess with the polypeptide at pH 5.9. No intermediate steps of purification were taken and the overall yield was 30% or more. Examples of the substituents included are carbohydrates, an enzyme inhibitor, a fumarate, and an acetate group. The introduction of different substituents into three individually addressable positions in a stepwise, efficient, and controllable reaction demonstrates that designed folded polypeptides are practically useful scaffolds that can be functionalized by using very simple chemistry in aqueous solution. Predicted applications include designed receptors, biosensors, and molecular devices.
机译:在pH 5.9的水溶液中,几种多肽与一当量的富马酸单对硝基苯酯反应,然后在室温下,室温下,设计的His介导的赖氨酸和鸟氨酸侧链酰化在设计的四螺旋束蛋白支架中的位点选择性通过分析酰化的程度和部位。酰化多肽和胰蛋白酶裂解的HPLC色谱图的整合,然后对胰蛋白酶片段的质谱分析提供了实验证据。基于这些和先前公开的结果,开发了一种策略,用于在室温下将三个残基位点选择性地逐步引入水溶液中的折叠多肽中。通过将1.7倍过量的相应活性酯与多肽在pH 5.9下反应并入第一个取代基,将第二个取代基在pH值升至8后以3倍过量引入。通过在pH 5.9下使10倍过量的多肽与多肽反应而掺入。没有采取中间纯化步骤,总产率为30%或更高。所包括的取代基的实例是碳水化合物,酶抑制剂,富马酸酯和乙酸酯基。在逐步,有效和可控制的反应中将不同的取代基引入三个可单独寻址的位置表明,设计的折叠多肽是实际上有用的支架,可以通过在水溶液中使用非常简单的化学方法对其进行功能化。预计的应用包括设计的受体,生物传感器和分子装置。

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