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A simple and rapid pipeline for identification of receptor-binding sites on the surface proteins of pathogens

机译:一种简单而快速的管道,用于鉴定病原体表面蛋白的受体结合位点

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摘要

Ligand-receptor interactions play a crucial role in the plethora of biological processes. Several methods have been established to reveal ligand-receptor interface, however, the majority of methods are time-consuming, laborious and expensive. Here we present a straightforward and simple pipeline to identify putative receptor-binding sites on the pathogen ligands. Two model ligands (bait proteins), domain III of protein E of West Nile virus and NadA of Neisseria meningitidis, were incubated with the proteins of human brain microvascular endothelial cells immobilized on nitrocellulose or PVDF membrane, the complex was trypsinized on-membrane, bound peptides of the bait proteins were recovered and detected on MALDI-TOF. Two peptides of DIII (~916?Da and ~2003 Da) and four peptides of NadA (~1453?Da, ~1810 Da, ~2051?Da and ~2433?Da) were identified as plausible receptor-binders. Further, binding of the identified peptides to the proteins of endothelial cells was corroborated using biotinylated synthetic analogues in ELISA and immunocytochemistry. Experimental pipeline presented here can be upscaled easily to map receptor-binding sites on several ligands simultaneously. The approach is rapid, cost-effective and less laborious. The proposed experimental pipeline could be a simpler alternative or complementary method to the existing techniques used to reveal amino-acids involved in the ligand-receptor interface.
机译:配体 - 受体相互作用在血红蛋白过程中发挥着至关重要的作用。已经建立了几种方法以揭示配体 - 受体界面,然而,大多数方法是耗时,费力且昂贵的。在这里,我们提出了一种直接和简单的管道,以鉴定病原体配体上的推定受体结合位点。两种模型配体(诱饵蛋白),西尼罗河毒蕈蛋白E的蛋白质III和Neisseria Meningitidis的Nada,与固定在硝酸纤维素或PVDF膜上的人脑微血管内皮细胞的蛋白质一起孵育,该络合物是胰蛋白酶的膜,结合回收诱饵蛋白的肽并在MALDI-TOF上检测到。鉴定鉴定鉴定为合理的受体 - 粘合剂的DIII(〜916?DA和2003Da)和四种肽(〜1453〜DA,〜2051〜2433〜2433〜2433〜2051〜2433〜2051〜2433?DA)。此外,使用ELISA和免疫细胞化学中的生物素化的合成类似物来证实肽与内皮细胞蛋白质的结合。这里呈现的实验管线可以同时将受体结合位点升高,可以同时映射几个配体上。这种方法是迅速,成本效益和更费力的。所提出的实验管道可以是用于现有技术的更简单的替代或互补方法,用于揭示配体 - 受体界面中涉及的氨基酸。

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