首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Immobilization of biotinylated hGBP1 in a defined orientation on surfaces is crucial for uniform interaction with analyte proteins and catalytic activity
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Immobilization of biotinylated hGBP1 in a defined orientation on surfaces is crucial for uniform interaction with analyte proteins and catalytic activity

机译:将生物素化的hGBP1以固定的方向固定在表面上对于与分析物蛋白质和催化活性的均匀相互作用至关重要

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Guanylate binding proteins (GBPs) belong to the dynamin superfamily of large GTP binding proteins. A biochemical feature common to these proteins is guanosine-triphosphate (GTP) binding leading to self-assembly of the proteins, and this in turn results in higher catalytic GTP hydrolysis activity. In the case of human guanylate binding protein 1 (hGBP1) homodimer formation is observed after binding of nonhydrolyzable GTP analogs like GppNHp. hGBP1 is one of seven GBP isoforms identified in human. While cellular studies suggest heterocomplex formation of various isoforms biochemical binding studies in quantitative terms are lacking. In this work we established a method to study hGBP1 interactions by attaching this protein in a defined orientation to a surface allowing for interaction with molecules from the solution. Briefly, specifically biotinylated hGBP1 is attached to a streptavidin layer on a self-assembled monolayer (SAM) surface allowing for characterization of the packing density of the immobilized protein by surface plasmon resonance (SPR) technology and atomic force microscopy (AFM), respectively. In addition, the enzymatic activity of immobilized hGBP1 and the kinetics of interaction with binding partners in solution are quantified. We present a procedure for attaching an enzyme in a defined orientation to a surface which exposes its active end, the GTPase domain to the solution resulting in a homogeneous population of this enzyme in terms of enzymatic activity and of interaction with soluble proteins.
机译:鸟苷酸结合蛋白(GBPs)属于大GTP结合蛋白的动力超家族。这些蛋白质共有的生化特征是鸟苷三磷酸(GTP)结合,导致蛋白质的自组装,进而导致更高的催化GTP水解活性。对于人鸟苷酸结合蛋白1(hGBP1),在不可水解的GTP类似物如GppNHp结合后,观察到同源二聚体形成。 hGBP1是人体内鉴定的7种GBP异构体之一。虽然细胞研究表明,在定量方面缺乏各种同工型的异源复合物生化结合研究。在这项工作中,我们建立了一种方法来研究hGBP1的相互作用,方法是将这种蛋白质以定义的方向附着在表面上,从而与溶液中的分子发生相互作用。简而言之,将生物素化的hGBP1特异性附着在自组装单层(SAM)表面的抗生蛋白链菌素层上,从而可以分别通过表面等离振子共振(SPR)技术和原子力显微镜(AFM)表征固定化蛋白质的堆积密度。另外,定量了固定化的hGBP1的酶促活性以及与结合伴侣在溶液中相互作用的动力学。我们提出了一种将酶以定义的方向附着于暴露其活性末端,GTPase结构域的溶液的表面的方法,从而在酶促活性和与可溶性蛋白质的相互作用方面导致了该酶的均匀分布。

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