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一种利用配体依赖性结构动力学研究蛋白质药理学的通用检测平台。

A general assay platform to study protein pharmacology using ligand-dependent structural dynamics.

作者信息

Ciulla Daniel A, Dranchak Patricia K, Aitha Mahesh, van Neer Renier H P, Shah Divia, Tharakan Ravi, Wilson Kelli M, Wang Yuhong, Braisted John C, Inglese James

机构信息

Division of Preclinical Innovation, National Center for Advancing Translational Sciences, NIH, Rockville, MD, USA.

Metabolic Medicine Branch, National Human Genome Research Institute, NIH, Bethesda, MD, USA.

出版信息

Nat Commun. 2025 May 10;16(1):4342. doi: 10.1038/s41467-025-59658-6.

Abstract

Drug design strategies represent a fundamental challenge in chemical biology that could benefit from the development of next-generation high-throughput assays. Here we demonstrate that structural dynamic changes induced by ligand binding can be transmitted to a sensor protein fused to a target protein terminus. Here, NanoLuc luciferase, used as the intact protein or its α-complementation peptide, was fused to seven proteins from distinct enzyme superfamilies resulting in sensitive ligand-dependent bioluminescent outputs. This finding allows a general non-competitive, function-independent, quantitative, isothermal gain-of-signal ligand binding readout. As applied to chemical library high throughput screening, we can observe multivariate pharmacologic outputs including cofactor-induced synergy in ligand binding, as well as an example of allosteric site binding. The structural dynamics response assay format described here can enable the investigation of proteins precluded from study due to cost-prohibitive, insensitive, or technically challenging assays, including from cell lysates containing endogenously expressed gene edited proteins.

摘要

药物设计策略是化学生物学中的一项基本挑战,下一代高通量检测方法的发展可能会使其受益。在此,我们证明了配体结合诱导的结构动态变化可以传递到与靶蛋白末端融合的传感蛋白上。在这里,用作完整蛋白或其α-互补肽的纳米荧光素酶与来自不同酶超家族的七种蛋白融合,产生了敏感的配体依赖性生物发光输出。这一发现允许进行一般的非竞争性、功能独立、定量、等温信号增强的配体结合读数。应用于化学文库高通量筛选时,我们可以观察到多变量药理学输出,包括辅因子诱导的配体结合协同作用,以及变构位点结合的一个例子。本文所述的结构动力学响应检测形式能够对由于成本过高、不敏感或技术上具有挑战性的检测方法而无法研究的蛋白质进行研究,包括来自含有内源性表达基因编辑蛋白的细胞裂解物中的蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cb06/12064818/04a84943876d/41467_2025_59658_Fig1_HTML.jpg

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