Late-Stage Minimal Labeling of Peptides and Proteins for Real-Time Imaging of Cellular Trafficking.

IF 10.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY ACS Central Science Pub Date : 2024-11-26 eCollection Date: 2025-01-22 DOI:10.1021/acscentsci.4c01249
Ferran Nadal-Bufi, Raj V Nithun, Fabio de Moliner, Xiaoxi Lin, Shaimaa Habiballah, Muhammad Jbara, Marc Vendrell
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Abstract

The cellular uptake routes of peptides and proteins are complex and diverse, often handicapping therapeutic success. Understanding their mechanisms of internalization requires chemical derivatization with approaches that are compatible with wash-free and real-time imaging. In this work, we developed a new late-stage labeling strategy for unprotected peptides and proteins, which retains their biological activity while enabling live-cell imaging of uptake and intracellular trafficking. Benzo-2,1,3-thiadiazoles were selectively incorporated into Cys residues of both linear and cyclic peptides via Pd-mediated arylation with good yields and high purities. The resulting labeled peptides are chemically stable under physiological conditions and display strong fluorogenic character for wash-free imaging studies. We utilized this approach to prepare native-like analogues of cell-penetrating peptides and performed time-course analysis of their internalization routes in live cells by fluorescence lifetime imaging. Furthermore, we applied our strategy to label the chemokine protein mCCL2 and monitor its internalization via receptor-mediated endocytosis in live macrophages. This study provides a straightforward strategy for late-stage fluorogenic labeling of intact peptides and small proteins and direct visualization of dynamic intracellular events.

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用于细胞运输实时成像的肽和蛋白质的后期最小标记。
多肽和蛋白质的细胞摄取途径是复杂和多样的,往往阻碍治疗的成功。了解它们的内化机制需要化学衍生与无水洗和实时成像相容的方法。在这项工作中,我们为未受保护的肽和蛋白质开发了一种新的后期标记策略,该策略保留了它们的生物活性,同时使活细胞成像能够摄取和细胞内运输。通过pd介导的芳基化,苯并-2,1,3-噻二唑选择性地掺入到线性肽和环肽的胱氨酸残基中,收率高,纯度高。所得到的标记肽在生理条件下具有化学稳定性,并且在无水洗成像研究中显示出很强的荧光特性。我们利用这种方法制备了细胞穿透肽的天然类似物,并通过荧光寿命成像对其在活细胞中的内化途径进行了时间过程分析。此外,我们应用我们的策略来标记趋化因子蛋白mCCL2,并通过受体介导的内吞作用在活的巨噬细胞中监测其内化。这项研究为完整肽和小蛋白的后期荧光标记和细胞内动态事件的直接可视化提供了一种直接的策略。
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来源期刊
ACS Central Science
ACS Central Science Chemical Engineering-General Chemical Engineering
CiteScore
25.50
自引率
0.50%
发文量
194
审稿时长
10 weeks
期刊介绍: ACS Central Science publishes significant primary reports on research in chemistry and allied fields where chemical approaches are pivotal. As the first fully open-access journal by the American Chemical Society, it covers compelling and important contributions to the broad chemistry and scientific community. "Central science," a term popularized nearly 40 years ago, emphasizes chemistry's central role in connecting physical and life sciences, and fundamental sciences with applied disciplines like medicine and engineering. The journal focuses on exceptional quality articles, addressing advances in fundamental chemistry and interdisciplinary research.
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