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基于生物发光的互补测定法,将膜结合复合物的构象变化与酶功能相关联。

Bioluminescence-Based Complementation Assay to Correlate Conformational Changes in Membrane-Bound Complexes with Enzymatic Function.

机构信息

Conway Institute, School of Medicine, University College Dublin, Dublin, Ireland.

Legend Biotech, Dublin, Ireland.

出版信息

Methods Mol Biol. 2022;2525:123-137. doi: 10.1007/978-1-0716-2473-9_9.

Abstract

The proteomics field has undergone tremendous development with the introduction of many innovative methods for the identification and characterization of protein-protein interactions (PPIs). Sensitive and quantitative protein association-based techniques represent a versatile tool to probe the architecture of receptor complexes and receptor-ligand interactions and expand the drug discovery toolbox by facilitating high-throughput screening (HTS) approaches. These novel methodologies will be highly enabling for interrogation of structural determinants required for the activity of multimeric membrane-bound enzymes with unresolved crystal structure and for HTS assay development focused on unique characteristics of complex assembly instead of common catalytic features, thereby increasing specificity. We describe here an example of a binary luciferase reporter assay (NanoBiT®) to quantitatively assess the heterodimerization of the catalytically active NADPH oxidase 4 (NOX4) enzyme complex. The catalytic subunit NOX4 requires association with the protein p22 for stabilization and enzymatic activity, but the precise manner by which these two membrane-bound proteins interact to facilitate hydrogen peroxide (HO) generation is currently unknown. The NanoBiT complementation reporter quantitatively determined the accurate, reduced, or failed complex assembly, which can then be confirmed by determining HO release, protein expression, and heterodimer trafficking. Multimeric complex formation differs between NOX enzyme isoforms, facilitating isoform-specific, PPI-based drug screening in the future.

摘要

蛋白质组学领域随着许多用于鉴定和描述蛋白质-蛋白质相互作用(PPIs)的创新方法的引入而得到了巨大的发展。基于蛋白质关联的灵敏和定量技术是一种多功能工具,可以探测受体复合物和受体-配体相互作用的结构,并通过促进高通量筛选(HTS)方法来扩展药物发现工具包。这些新方法对于探究具有未解决晶体结构的多聚体膜结合酶的活性所必需的结构决定因素以及针对复杂组装的独特特征而不是常见催化特征进行 HTS 测定开发将非常有效,从而提高特异性。我们在这里描述了一个二元荧光素酶报告测定(NanoBiT®)的示例,用于定量评估催化活性烟酰胺腺嘌呤二核苷酸磷酸氧化酶 4(NOX4)酶复合物的异二聚化。催化亚基 NOX4 要求与蛋白质 p22 结合以稳定和发挥酶活性,但这两种膜结合蛋白相互作用以促进过氧化氢(HO)生成的确切方式目前尚不清楚。NanoBiT 互补报告定量确定了准确、减少或失败的复合物组装,然后可以通过确定 HO 释放、蛋白质表达和异二聚体运输来进行确认。NOX 酶同工型之间的多聚体复合物形成不同,从而促进未来基于 PPI 的同工型特异性药物筛选。

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