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Monolayer Sensitivity Enables a 2D IR Spectroscopic Immuno-biosensor for Studying Protein Structures: Application to Amyloid Polymorphs

机译:单层敏感性使二维红外光谱免疫生物传感器能够研究蛋白质结构:淀粉样蛋白多态性的应用

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摘要

Immunosensors use antibodies to detect and quantify biomarkers of disease, though the sensors often lack structural information. We create a surface-sensitive two-dimensional infrared (2D IR) spectroscopic immunosensor for studying protein structures. We tether antibodies to a plasmonic surface, flow over a solution of amyloid proteins, and measure the 2D IR spectra. The 2D IR spectra provide a global assessment of antigen structure, and isotopically labeled proteins give residue-specific structural information. We report the 2D IR spectra of fibrils and monomers using a polyclonal antibody that targets human islet amyloid polypeptide (hIAPP). We observe two fibrillar polymorphs differing in their structure at the G24 residue, which supports the hypothesis that hIAPP polymorphs form from a common oligomeric intermediate. This work provides insight into the structure of hIAPP, establishes a new method for studying protein structures using 2D IR spectroscopy, and creates a spectroscopic immunoassay applicable for studying a wide range of biomarkers.
机译:免疫传感器使用抗体来检测和量化疾病的生物标志物,尽管传感器通常缺乏结构信息。我们创建了一种表面敏感的二维红外(2D IR)光谱免疫传感器,用于研究蛋白质结构。我们将抗体束缚在等离子体表面,流过淀粉样蛋白溶液,并测量2D红外光谱。二维红外光谱可提供抗原结构的整体评估,同位素标记的蛋白质可提供残基特异性的结构信息。我们报告了针对人胰岛淀粉样多肽(hIAPP)的多克隆抗体的原纤维和单体的二维红外光谱。我们观察到两个原纤维多晶型物在G24残基处的结构不同,这支持了hIAPP多晶型物从常见的寡聚中间体形成的假设。这项工作提供了对hIAPP结构的见解,建立了一种使用2D红外光谱研究蛋白质结构的新方法,并创建了适用于研究各种生物标记物的光谱免疫测定法。

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