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肽对 C-反应蛋白分子识别的研究-理论与实验研究。

Investigation of Peptides for Molecular Recognition of C-Reactive Protein-Theoretical and Experimental Studies.

机构信息

Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.

Biological and Chemical Research Centre, University of Warsaw, Zwirki i Wigury 101, 02-089 Warsaw, Poland.

出版信息

Anal Chem. 2023 Sep 26;95(38):14475-14483. doi: 10.1021/acs.analchem.3c03127. Epub 2023 Sep 11.

Abstract

We investigate the interactions between C-reactive protein (CRP) and new CRP-binding peptide materials using experimental (biological and physicochemical) methods with the support of theoretical simulations (computational modeling analysis). Three specific CRP-binding peptides (P2, P3, and P9) derived from an M13 bacteriophage have been identified using phage-display technology. The binding efficiency of the peptides exposed on phages toward the CRP protein was demonstrated via biological methods. Fibers of the selected phages/peptides interact differently due to different compositions of amino acid sequences on the exposed peptides, which was confirmed by transmission electron microscopy. Numerical and experimental studies consistently showed that the P3 peptide is the best CRP binder. A combination of theoretical and experimental methods demonstrates that identifying the best binder can be performed simply, cheaply, and fast. Such an approach has not been reported previously for peptide screening and demonstrates a new trend in science where calculations can replace or support laborious experimental techniques. Finally, the best CRP binder─the P3 peptide─was used for CRP recognition on silicate-modified indium tin oxide-coated glass electrodes. The obtained electrodes exhibit a wide range of operation (1.0-100 μg mL) with a detection limit (LOD = 3σ/) of 0.34 μg mL. Moreover, the dissociation constant of 4.2 ± 0.144 μg mL (35 ± 1.2 nM) was evaluated from the change in the current. The selectivity of the obtained electrode was demonstrated in the presence of three interfering proteins. These results prove that the presented P3 peptide is a potential candidate as a receptor for CRP, which can replace specific antibodies.

摘要

我们使用实验(生物和物理化学)方法并辅以理论模拟(计算建模分析)来研究 C 反应蛋白 (CRP) 与新型 CRP 结合肽材料之间的相互作用。使用噬菌体展示技术鉴定了三种源自 M13 噬菌体的特定 CRP 结合肽(P2、P3 和 P9)。通过生物方法证明了噬菌体/肽上暴露的肽与 CRP 蛋白的结合效率。由于暴露肽上的氨基酸序列组成不同,选定的噬菌体/肽的纤维以不同的方式相互作用,这通过透射电子显微镜得到证实。数值和实验研究一致表明,P3 肽是最好的 CRP 结合物。理论和实验方法的结合表明,可以简单、廉价和快速地识别最佳结合物。这种方法以前在肽筛选中没有报道过,展示了一种新的科学趋势,即计算可以替代或支持繁琐的实验技术。最后,使用最佳 CRP 结合物(P3 肽)在硅酸改性铟锡氧化物涂覆玻璃电极上对 CRP 进行识别。所获得的电极在 1.0-100 μg mL 的宽工作范围内具有检测限(LOD = 3σ/)为 0.34 μg mL。此外,从电流变化评估解离常数为 4.2 ± 0.144 μg mL(35 ± 1.2 nM)。在存在三种干扰蛋白的情况下,证明了所得电极的选择性。这些结果证明,所提出的 P3 肽是 CRP 的潜在候选受体,可替代特异性抗体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c017/10535004/1619072542dd/ac3c03127_0001.jpg

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