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一种用于反式荧光共振能量转移分析以确定NEDDylation级联激活中间体的连接策略。

A linker strategy for trans-FRET assay to determine activation intermediate of NEDDylation cascade.

作者信息

Malik-Chaudhry Harbani Kaur, Saavedra Amanda, Liao Jiayu

机构信息

Department of Bioengineering, Center for Bioengineering Research, Bourns College of Engineering, 900 University Avenue, Riverside, California, 92521.

出版信息

Biotechnol Bioeng. 2014 Jul;111(7):1288-95. doi: 10.1002/bit.25183. Epub 2014 Jan 25.

Abstract

Förster resonance energy transfer (FRET) technology has been widely used in biological and biomedical research and is a valuable tool for elucidating molecular interactions in vitro and in vivo. Quantitative FRET analysis is a powerful method for determining biochemical parameters and molecular distances at nanometer levels. Recently, we reported theoretical developments and experimental procedures for determining the dissociation constant, Kd and enzymatic kinetics parameters, Kcat and KM, of protein interactions with the engineered FRET pair, CyPet and YPet. The strong FRET signal from this pair made these developments possible. However, the direct link of fluorescent proteins with proteins of interests may interfere with the folding of some fusion proteins. Here, we report a new protein engineering strategy for improving FRET signals by adding a linker between the fluorescent protein and the targeted protein. This improvement allowed us to follow the covalent conjugation of NEDD8 to its E2 ligase in the presence of E1 and ATP, which was difficult to determine without linker. Three linkers, LAEAAAKEAA, TSGSPGLQEFGT, and LAAALAAA, which are alpha helix or random coil, all significantly improved the FRET signals. Our results show a general methodology for improving trans-FRET signals to effectively determine biochemical reaction intermediates.

摘要

荧光共振能量转移(FRET)技术已广泛应用于生物学和生物医学研究,是阐明体外和体内分子相互作用的宝贵工具。定量FRET分析是确定纳米级生化参数和分子距离的有力方法。最近,我们报道了利用工程化FRET对CyPet和YPet测定蛋白质相互作用的解离常数Kd以及酶动力学参数Kcat和KM的理论进展和实验方法。该对产生的强FRET信号使这些进展成为可能。然而,荧光蛋白与目标蛋白的直接连接可能会干扰一些融合蛋白的折叠。在此,我们报道了一种新的蛋白质工程策略,通过在荧光蛋白和目标蛋白之间添加一个接头来改善FRET信号。这种改进使我们能够在E1和ATP存在的情况下追踪NEDD8与其E2连接酶的共价结合,而没有接头时很难确定这种结合。三种接头LAEAAAKEAA、TSGSPGLQEFGT和LAAALAAA,它们是α螺旋或无规卷曲,均显著改善了FRET信号。我们的结果展示了一种改善反式FRET信号以有效确定生化反应中间体的通用方法。

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