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环境敏感荧光标记肽类的荧光素类似物。

Environment-Sensitive Fluorescent Labelling of Peptides by Luciferin Analogues.

机构信息

Department of Biology, University of Naples Federico II, 80126 Naples, Italy.

Department of Chemical Sciences, University of Naples Federico II, 80126 Naples, Italy.

出版信息

Int J Mol Sci. 2021 Dec 10;22(24):13312. doi: 10.3390/ijms222413312.

Abstract

Environment-sensitive fluorophores are very valuable tools in the study of molecular and cellular processes. When used to label proteins and peptides, they allow for the monitoring of even small variations in the local microenvironment, thus acting as reporters of conformational variations and binding events. Luciferin and aminoluciferin, well known substrates of firefly luciferase, are environment-sensitive fluorophores with unusual and still-unexploited properties. Both fluorophores show strong solvatochromism. Moreover, luciferin fluorescence is influenced by pH and water abundance. These features allow to detect local variations of pH, solvent polarity and local water concentration, even when they occur simultaneously, by analyzing excitation and emission spectra. Here, we describe the characterization of (amino)luciferin-labeled derivatives of four bioactive peptides: the antimicrobial peptides GKY20 and ApoB, the antitumor peptide p53pAnt and the integrin-binding peptide RGD. The two probes allowed for the study of the interaction of the peptides with model membranes, SDS micelles, lipopolysaccharide micelles and cells. K values and binding stoichiometries for lipopolysaccharide were also determined. Aminoluciferin also proved to be very well-suited to confocal laser scanning microscopy. Overall, the characterization of the labeled peptides demonstrates that luciferin and aminoluciferin are previously neglected environment-sensitive labels with widespread potential applications in the study of proteins and peptides.

摘要

环境敏感荧光团在研究分子和细胞过程中是非常有价值的工具。当用于标记蛋白质和肽时,它们可以监测局部微环境中的微小变化,因此可以作为构象变化和结合事件的报告者。荧光素和氨基荧光素是萤火虫荧光素的众所周知的底物,它们是具有不寻常且尚未开发的特性的环境敏感荧光团。这两种荧光团都表现出强烈的溶剂化变色。此外,荧光素的荧光受 pH 值和水丰度的影响。通过分析激发和发射光谱,可以检测到 pH 值、溶剂极性和局部水浓度的局部变化,即使它们同时发生。在这里,我们描述了四种生物活性肽的(氨基)荧光素标记衍生物的表征:抗菌肽 GKY20 和 ApoB、抗肿瘤肽 p53pAnt 和整合素结合肽 RGD。这两种探针可用于研究肽与模型膜、SDS 胶束、脂多糖胶束和细胞的相互作用。还确定了脂多糖的 K 值和结合化学计量比。氨基荧光素也非常适合共聚焦激光扫描显微镜。总的来说,标记肽的表征表明,荧光素和氨基荧光素是以前被忽视的环境敏感标记物,在蛋白质和肽的研究中有广泛的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c0a/8706149/1903b35f6d0c/ijms-22-13312-g001.jpg

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