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电化学法实现肽和蛋白质的残留特异性修饰。

Electrochemistry-enabled residue-specific modification of peptides and proteins.

机构信息

Department of Chemistry, Chapra Government College, Nadia-741123, West Bengal, India.

Department of Physics, Dinabandhu Mahavidyalaya, 24 Parganas (N), 743235, West Bengal, India.

出版信息

Org Biomol Chem. 2024 Feb 7;22(6):1085-1101. doi: 10.1039/d3ob01857a.

Abstract

Selective chemical reactions at precise amino acid residues of peptides and proteins have become an exploding field of research in the last few decades. With the emerging utility of bioconjugated peptides and proteins as drug leads and therapeutic agents, the design of smart protocols to modulate and conjugate biomolecules has become necessary. During this modification, the most important concern of biochemists is to keep intact the structural integrity of the biomolecules. Hence, a soft and selective biocompatible reaction environment is necessary. Electrochemistry, a mild and elegant tunable reaction platform to synthesize complex molecules while avoiding harsh and toxic chemicals, can provide such a reaction condition. However, this strategy is yet to be fully exploited in the field of selective modification of polypeptides. With this possibility, the use of electrochemistry as a reaction toolbox in peptide and protein chemistry is flourishing day by day. Unfortunately, there is no suitable review article summarizing the residue-specific modification of biomolecules. The present review provides a comprehensive summary of the latest manifested electrochemical approaches for the modulation of five redox-active amino acid residues, namely cysteine, tyrosine, tryptophan, histidine and methionine, found in peptides and proteins. The article also highlights the incredible potential of electrochemistry for the regio- as well as chemoselective bioconjugation strategy of biomolecules.

摘要

在过去的几十年中,选择性地在肽和蛋白质的精确氨基酸残基上进行化学反应已成为研究的热点领域。随着生物缀合肽和蛋白质作为药物先导物和治疗剂的应用不断涌现,设计智能的调节和缀合生物分子的方案变得非常必要。在进行修饰时,生物化学家最关心的是保持生物分子的结构完整性。因此,需要一个温和且选择性的生物相容的反应环境。电化学是一种温和且优雅的可调反应平台,可用于合成复杂分子,同时避免使用苛刻和有毒的化学物质,能够提供这样的反应条件。然而,这种策略在多肽的选择性修饰领域尚未得到充分利用。由于这种可能性的存在,电化学作为一种反应工具箱在肽和蛋白质化学中的应用正日益普及。不幸的是,目前还没有合适的综述文章对生物分子的残基特异性修饰进行总结。本文全面总结了最近报道的电化学方法在调节肽和蛋白质中五种氧化还原活性氨基酸残基(半胱氨酸、酪氨酸、色氨酸、组氨酸和蛋氨酸)方面的应用。文章还强调了电化学在区域和化学选择性生物分子缀合策略方面的巨大潜力。

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