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Spacer Matters: All-Peptide-Based Ligand for Promoting Interfacial Proteolysis and Plasmonic Coupling

机译:Spacer Matters:用于促进界面蛋白水解和等离子体偶联的全肽配体

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摘要

Plasmonic coupling via nanoparticle assembly is a popular signal-generation method in bioanalytical sensors. Here, we customized an all-peptide-based ligand that carries an anchoring group, polyproline spacer, biomolecular recognition, and zwitterionic domains for functionalizing gold nanoparticles (AuNPs) as a colorimetric enzyme sensor. Our results underscore the importance of the polyproline module, which enables the SARS-CoV-2 main protease (M-pro) to recognize the peptidic ligand on nanosurfaces for subsequent plasmonic coupling via Coulombic interactions. AuNP aggregation is favored by the lowered surface potential due to enzymatic unveiling of the zwitterionic module. Therefore, this system provides a naked-eye measure for M-pro. No proteolysis occurs on AuNPs modified with a control ligand lacking a spacer domain. Overall, this all-peptide-based ligand does not require complex molecular conjugations and hence offers a simple and promising route for plasmonic sensing other proteases.
机译:通过纳米颗粒组装进行等离子体耦合是生物分析传感器中一种常用的信号生成方法。在这里,我们定制了一种基于全肽的配体,该配体携带锚定基团、聚脯氨酸间隔区、生物分子识别和两性离子结构域,用于功能化金纳米颗粒 (AuNPs) 作为比色酶传感器。我们的研究结果强调了聚脯氨酸模块的重要性,它使 SARS-CoV-2 主蛋白酶 (M-pro) 能够识别纳米表面上的肽配体,以便通过库仑相互作用进行随后的等离子体偶联。由于两性离子模块的酶揭开面纱,表面电位降低,有利于AuNP聚集。因此,该系统为M-pro提供了裸眼测量。在用缺乏间隔结构域的对照配体修饰的 AuNP 上不发生蛋白水解。总体而言,这种基于全肽的配体不需要复杂的分子偶联,因此为等离子体感应其他蛋白酶提供了一种简单而有前途的途径。

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