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用 N-酰基-N-烷基亚磺酰胺试剂对 His 标签融合蛋白进行位点特异性共价标记。

Site-specific covalent labeling of His-tag fused proteins with N-acyl-N-alkyl sulfonamide reagent.

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.

ERATO (Exploratory Research for Advanced Technology, JST), Sanbancho, Chiyodaku, Tokyo, 102-0075, Japan.

出版信息

Bioorg Med Chem. 2021 Jan 15;30:115947. doi: 10.1016/j.bmc.2020.115947. Epub 2020 Dec 16.

Abstract

The ability to incorporate a desired functionality into proteins of interest in a site-specific manner can provide powerful tools for investigating biological systems and creating therapeutic conjugates. However, there are not any universal methods that can be applied to all proteins, and it is thus important to explore the chemical strategy for protein modification. In this paper, we developed a new reactive peptide tag/probe pair system for site-specific covalent protein labeling. This method relies on the recognition-driven reaction of a peptide tag and a molecular probe, which comprises the lysine-containing short histidine tag (KH6 or H6K) and a binuclear nickel (II)- nitrilotriacetic acid (Ni-NTA) complex probe containing a lysine-reactive N-acyl-N-alkyl sulfonamide (NASA) group. The selective interaction of the His-tag and Ni-NTA propeles a rapid nucleophilic reaction between a lysine residue of the tag and the electrophilic NASA group of the probe by the proximity effect, resulting in the tag-site-specific functionalization of proteins. We characterized the reactive profile and site-specificity of this method using model peptides and proteins in vitro, and demonstrated the general utility for production of a nanobody-chemical probe conjugate without compromising its binding ability.

摘要

以特定方式将所需功能整合到感兴趣的蛋白质中可以为研究生物系统和创建治疗性缀合物提供强大的工具。然而,没有任何通用的方法可以应用于所有蛋白质,因此探索蛋白质修饰的化学策略很重要。在本文中,我们开发了一种新的用于定点共价蛋白质标记的反应性肽标签/探针对系统。这种方法依赖于肽标签和分子探针的识别驱动反应,其中包含含有赖氨酸反应性 N-酰基-N-烷基磺酰胺 (NASA) 基团的双镍 (II)- 氮三乙酸 (Ni-NTA) 络合探针和含有赖氨酸的短组氨酸标签 (KH6 或 H6K)。His 标签和 Ni-NTA 的选择性相互作用通过近邻效应推动标签上的赖氨酸残基与探针上的亲电 NASA 基团之间的快速亲核反应,导致标签位点特异性蛋白质功能化。我们使用体外模型肽和蛋白质对该方法的反应性和特异性进行了表征,并证明了在不影响其结合能力的情况下生产纳米抗体-化学探针缀合物的通用适用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/748e/7610637/4e06735f9c54/EMS122073-f001.jpg

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