3-Acyl-4-Pyranone 作为赖氨酸残基选择性生物共轭试剂用于多肽和蛋白质修饰。

IF 3.9 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS
Keyi Nong, Yi-Lu Zhao, Shandong Yi, Xuchun Zhang, Siyuan Wei and Zhu-Jun Yao*, 
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引用次数: 0

摘要

化学选择性蛋白质修饰在各种生物、医学和制药研究中发挥着极其重要的作用。这项研究模仿了天然萘酮与伯胺的化学选择性反应机理,成功地将萘酮支架简化为更简单的 3-酰基-4-吡喃酮。研究证实,这些细小的模拟物完美地保持了与伯胺(包括肽和蛋白质中的赖氨酸残基)选择性共轭的独特反应活性。与原来的唑萘酮相比,新开发的吡喃酮工具显著提高了水溶性和兼容的二阶速率常数。此外,它还具有与铜催化的叠氮-炔烃 Click 反应易于双向组合使用的优点,可方便地同时为溶菌酶装饰中性、正电荷和负电荷官能团。用带正电荷的季铵对溶菌酶进行适度修饰可提高酶活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

3-Acyl-4-Pyranone as a Lysine Residue-Selective Bioconjugation Reagent for Peptide and Protein Modification

3-Acyl-4-Pyranone as a Lysine Residue-Selective Bioconjugation Reagent for Peptide and Protein Modification

3-Acyl-4-Pyranone as a Lysine Residue-Selective Bioconjugation Reagent for Peptide and Protein Modification

Chemoselective protein modification plays extremely important roles in various biological, medical, and pharmaceutical investigations. Mimicking the mechanism of the chemoselective reaction between natural azaphilones and primary amines, this work successfully simplified the azaphilone scaffold into much simpler 3-acyl-4-pyranones. Examinations confirmed that these slim-size mimics perfectly kept the unique reactivity for selective conjugation with the primary amines including lysine residues of peptides and proteins. The newly developed pyranone tool presents remarkably increased aqueous solubility and compatible second-order rate constant by comparison with the original azaphilone. Additional advantages also include the ease of biorthogonal combinative use with a copper-catalyzed azide–alkyne Click reaction, which was conveniently applied to decorate lysozyme with neutral-, positive- and negative-charged functionalities in parallel. Moderate-degree modification of lysozyme with positively charged quaternary ammoniums was revealed to increase the enzymatic activities.

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来源期刊
Bioconjugate Chemistry
Bioconjugate Chemistry 生物-化学综合
CiteScore
9.00
自引率
2.10%
发文量
236
审稿时长
1.4 months
期刊介绍: Bioconjugate Chemistry invites original contributions on all research at the interface between man-made and biological materials. The mission of the journal is to communicate to advances in fields including therapeutic delivery, imaging, bionanotechnology, and synthetic biology. Bioconjugate Chemistry is intended to provide a forum for presentation of research relevant to all aspects of bioconjugates, including the preparation, properties and applications of biomolecular conjugates.
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