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无配体钯介导的革兰氏阴性细菌病原体中特异性蛋白质标记

Ligand-free palladium-mediated site-specific protein labeling inside gram-negative bacterial pathogens.

机构信息

Synthetic and Functional Biomolecules Center, Beijing National Laboratory for Molecular Sciences, Department of Chemical Biology, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.

出版信息

J Am Chem Soc. 2013 May 15;135(19):7330-8. doi: 10.1021/ja402424j. Epub 2013 May 3.

Abstract

Palladium, a key transition metal in advancing modern organic synthesis, mediates diverse chemical conversions including many carbon-carbon bond formation reactions between organic compounds. However, expanding palladium chemistry for conjugation of biomolecules such as proteins, particularly within their native cellular context, is still in its infancy. Here we report the site-specific protein labeling inside pathogenic Gram-negative bacterial cells via a ligand-free palladium-mediated cross-coupling reaction. Two rationally designed pyrrolysine analogues bearing an aliphatic alkyne or an iodophenyl handle were first encoded in different enteric bacteria, which offered two facial handles for palladium-mediated Sonogashira coupling reaction on proteins within these pathogens. A GFP-based bioorthogonal reaction screening system was then developed, allowing evaluation of both the efficiency and the biocompatibilty of various palladium reagents in promoting protein-small molecule conjugation. The identified simple compound-Pd(NO3)2 exhibited high efficiency and biocompatibility for site-specific labeling of proteins in vitro and inside living E. coli cells. This Pd-mediated protein coupling method was further utilized to label and visualize a Type-III Secretion (T3S) toxin-OspF in Shigella cells. Our strategy may be generally applicable for imaging and tracking various virulence proteins within Gram-negative bacterial pathogens.

摘要

钯是推动现代有机合成的关键过渡金属,介导多种化学转化,包括许多有机化合物之间的碳-碳键形成反应。然而,将钯化学扩展到生物分子(如蛋白质)的缀合中,特别是在其天然细胞环境中,仍处于起步阶段。在这里,我们通过无配体钯介导的交叉偶联反应报告了在致病性革兰氏阴性细菌细胞内的定点蛋白质标记。两个经过合理设计的含有脂肪族炔烃或碘苯柄的吡咯赖氨酸类似物首先被编码在不同的肠细菌中,这为这些病原体中蛋白质的钯介导的 Sonogashira 偶联反应提供了两个面手性。然后开发了基于 GFP 的生物正交反应筛选系统,允许评估各种钯试剂在促进蛋白质-小分子缀合方面的效率和生物相容性。鉴定出的简单化合物-Pd(NO3)2在体外和活大肠杆菌细胞内的蛋白质定点标记中表现出高效率和生物相容性。这种 Pd 介导的蛋白质偶联方法进一步用于标记和可视化志贺氏菌细胞中的 III 型分泌(T3S)毒素-OspF。我们的策略可能普遍适用于革兰氏阴性细菌病原体中各种毒力蛋白的成像和跟踪。

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