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纳米粒子可区分赖氨酸的化学和超分子环境,实现蛋白质的单一位点功能化。

Nanoparticles that Distinguish Chemical and Supramolecular Contexts of Lysine for Single-Site Functionalization of Protein.

机构信息

Department of Chemistry, Iowa State University, Ames, Iowa 50011-3111, United States.

出版信息

Nano Lett. 2024 Jul 17;24(28):8763-8769. doi: 10.1021/acs.nanolett.4c02412. Epub 2024 Jul 8.

Abstract

Lysine is one of the most abundant residues on the surface of proteins and its site-selective functionalization is extremely challenging. The existing methods of functionalization rely on differential reactivities of lysine on a protein, making it impossible to label less reactive lysines selectively. We here report polymeric nanoparticles that mimic enzymes involved in the posttranslational modifications of proteins that distinguish the chemical and supramolecular contexts of a lysine and deliver the labeling reagent precisely to its ε amino group. The nanoparticles are prepared through molecular imprinting of cross-linkable surfactant micelles, plus an in situ, on-micelle derivatization of the peptide template prior to the imprinting. The procedures encode the polymeric nanoparticles with all the supramolecular information needed for sequence identification and precise labeling, allowing single-site functionalization of a predetermined lysine on the target protein in a mixture.

摘要

赖氨酸是蛋白质表面最丰富的残基之一,其位点选择性功能化极具挑战性。现有的功能化方法依赖于赖氨酸在蛋白质上的差异反应性,因此无法选择性地标记反应性较低的赖氨酸。我们在这里报告了聚合物纳米粒子,这些纳米粒子模拟了参与蛋白质翻译后修饰的酶,它们区分了赖氨酸的化学和超分子环境,并将标记试剂精确地递送到其ε氨基基团。纳米粒子通过可交联表面活性剂胶束的分子印迹以及在印迹前对肽模板进行原位胶束衍生化来制备。这些步骤为聚合物纳米粒子编码了所有用于序列识别和精确标记所需的超分子信息,允许在混合物中对目标蛋白质上的预定赖氨酸进行单一位点功能化。

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