A novel bioluminescent protease assay using engineered firefly luciferase.

Susan S Wigdal, Jessica L Anderson, Gediminas J Vidugiris, John Shultz, Keith V Wood, Frank Fan
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引用次数: 40

Abstract

Proteases play important roles in a variety of disease processes. Understanding their biological functions underpins the efforts of drug discovery. We have developed a bioluminescent protease assay using a circularly permuted form of firefly luciferase, wherein the native enzyme termini were joined by a peptide containing a protease site of interest. Protease cleavage of these mutant luciferases greatly activates the enzyme, typically over 100 fold. The mutant luciferase substrates are easily generated by molecular cloning and cell-free translation reactions and thus the protease substrates do not need to be chemically synthesized or purchased. The assay has broad applicability using a variety of proteases and their cognate sites and can sensitively detect protease activity. In this report we further demonstrate its utility for the evaluation of protease recognition sequence specificity and subsequent establishment of an optimized assay for the identification and characterization of protease inhibitors using high throughput screening.

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Abstract Image

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一种利用工程萤火虫荧光素酶的新型生物发光蛋白酶测定方法。
蛋白酶在多种疾病过程中发挥重要作用。了解它们的生物学功能是药物发现的基础。我们开发了一种生物发光蛋白酶试验,使用环状排列形式的萤火虫荧光素酶,其中天然酶末端由含有感兴趣蛋白酶位点的肽连接。这些突变的荧光素酶的蛋白酶裂解极大地激活了酶,通常超过100倍。突变型荧光素酶底物很容易通过分子克隆和无细胞翻译反应生成,因此蛋白酶底物不需要化学合成或购买。该方法广泛适用于多种蛋白酶及其同源位点,并能灵敏地检测蛋白酶活性。在本报告中,我们进一步证明了它在评估蛋白酶识别序列特异性方面的效用,并随后建立了一种优化的方法,用于使用高通量筛选来鉴定和表征蛋白酶抑制剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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