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荧光标记剂会改变聚糖结合蛋白的结合模式。

Fluorescent labeling agents change binding profiles of glycan-binding proteins.

作者信息

Fei Yiyan, Sun Yung-Shin, Li Yanhong, Lau Kam, Yu Hai, Chokhawala Harshal A, Huang Shengshu, Landry James P, Chen Xi, Zhu Xiangdong

机构信息

Department of Physics, University of California at Davis, California 95616, USA.

出版信息

Mol Biosyst. 2011 Dec;7(12):3343-52. doi: 10.1039/c1mb05332a. Epub 2011 Oct 18.

DOI:10.1039/c1mb05332a
PMID:22009201
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3271732/
Abstract

Interactions of glycan-binding proteins (GBPs) with glycans are essential in cell adhesion, bacterial/viral infection, and cellular signaling pathways. Experimental characterization of these interactions based on glycan microarrays typically involves (1) labeling GBPs directly with fluorescent reagents before incubation with the microarrays, or (2) labeling GBPs with biotin before the incubation and detecting the captured GBPs after the incubation using fluorescently labeled streptavidin, or (3) detecting the captured GBPs after the incubation using fluorescently labeled antibodies raised against the GBPs. The fluorescent signal is mostly measured ex situ after excess fluorescent materials are washed off. In this study, by using a label-free optical scanner for glycan microarray detection, we measured binding curves of 7 plant lectins to 24 glycans: four β1-4-linked galactosides, three β1-3-linked galactosides, one β-linked galactoside, one α-linked N-acetylgalactosaminide, eight α2-3-linked sialosides, and seven α2-6-linked sialosides. From association and dissociation constants deduced by global-fitting the binding curves, we found that (1) labeling lectins directly with fluorescent agents change binding profiles of lectins, in some cases by orders of magnitude; (2) those lectin-glycan binding reactions characterized with large dissociation rates, though biologically relevant, are easily missed or deemed insignificant in ex situ fluorescence-based assays as most captured lectins are washed off before detection. This study highlights the importance of label-free real-time detection of protein-ligand interactions and the potential pitfall in interpreting fluorescence-based assays for characterization of protein-glycan interactions.

摘要

聚糖结合蛋白(GBPs)与聚糖的相互作用在细胞黏附、细菌/病毒感染及细胞信号通路中至关重要。基于聚糖微阵列对这些相互作用进行实验表征通常涉及:(1)在与微阵列孵育前用荧光试剂直接标记GBPs;(2)孵育前用生物素标记GBPs,孵育后用荧光标记的链霉亲和素检测捕获的GBPs;(3)孵育后用针对GBPs的荧光标记抗体检测捕获的GBPs。在洗去过量荧光物质后,大多在非原位测量荧光信号。在本研究中,我们使用无标记光学扫描仪进行聚糖微阵列检测,测量了7种植物凝集素与24种聚糖的结合曲线:4种β1-4连接的半乳糖苷、3种β1-3连接的半乳糖苷、1种β连接的半乳糖苷、1种α连接的N-乙酰半乳糖胺、8种α2-3连接的唾液酸苷和7种α2-6连接的唾液酸苷。通过对结合曲线进行全局拟合推导出的缔合常数和解离常数,我们发现:(1)用荧光剂直接标记凝集素会改变凝集素的结合谱,在某些情况下相差几个数量级;(2)那些解离速率大的凝集素-聚糖结合反应,尽管具有生物学相关性,但在基于非原位荧光的检测中很容易被遗漏或认为不显著,因为大多数捕获的凝集素在检测前就被洗去了。本研究强调了无标记实时检测蛋白质-配体相互作用的重要性,以及在解释基于荧光的检测以表征蛋白质-聚糖相互作用时潜在的陷阱。

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