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分子印迹纳米粒子的位点选择性功能化以识别富含赖氨酸的肽。

Site-Selective Functionalization of Molecularly Imprinted Nanoparticles to Recognize Lysine-Rich Peptides.

机构信息

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

出版信息

Biomacromolecules. 2024 Sep 9;25(9):6188-6194. doi: 10.1021/acs.biomac.4c00905. Epub 2024 Aug 2.

Abstract

Sequence-selective binding of peptides has been a long-standing goal of chemists. As one of the most abundant amino acids in proteins, lysine plays an important role in protein functions as well as in antimicrobial and cell-penetrating peptides. Herein, we report molecularly imprinted nanoparticles (NPs) with high sequence selectivity for lysine-rich peptides. The NPs are prepared from molecular imprinting of cross-linkable surfactant micelles and postmodification of the imprinted pockets by photoaffinity labeling. The method allows carboxylic acids to be installed precisely near the lysine amino side chains, greatly enhancing the binding strengths of lysine-rich peptides. Small variations in the peptide sequence can be distinguished, and the binding affinity correlates positively with the number of lysine groups in model tripeptides. The method applies to complex lysine-rich biological peptides, achieving hundreds of nanomolar binding affinities and excellent binding specificities.

摘要

化学家一直致力于实现对多肽的序列选择性结合。赖氨酸是蛋白质中最丰富的氨基酸之一,它在蛋白质功能以及抗菌肽和细胞穿透肽中起着重要作用。本文报道了具有高序列选择性的富含赖氨酸的肽的分子印迹纳米颗粒(NPs)。这些 NPs 是通过交联表面活性剂胶束的分子印迹和光亲和标记对印迹口袋的后修饰制备的。该方法可以精确地将羧酸基团安装在赖氨酸氨基侧链附近,极大地增强了富含赖氨酸的肽的结合强度。可以区分多肽序列的微小变化,并且结合亲和力与模型三肽中的赖氨酸基团数量呈正相关。该方法适用于复杂的富含赖氨酸的生物肽,实现了数百纳摩尔的结合亲和力和优异的结合特异性。

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