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用于筛选的互补降解剂发现分析方法的优化与评估

Optimization and Evaluation of Complementary Degrader Discovery Assays for Application in Screening.

作者信息

Huchting Johanna, Weller Arjen, Schweizer Moyra, Brandt Mona, Heering Jan, Kuzikov Maria, Wolf Markus, Reinshagen Jeanette, Queisser Markus A, Gribbon Philip, Zaliani Andrea, Pless Ole, Kannt Aimo

机构信息

Fraunhofer Institute for Translational Medicine and Pharmacology ITMP, Schnackenburgallee 114, 22525 Hamburg, Germany.

Fraunhofer Institute for Translational Medicine and Pharmacology ITMP and Innovation Centre TheraNova, Theodor-Stern-Kai 7, 60596 Frankfurt am Main, Germany.

出版信息

ACS Pharmacol Transl Sci. 2025 Jul 20;8(8):2600-2611. doi: 10.1021/acsptsci.5c00195. eCollection 2025 Aug 8.

DOI:10.1021/acsptsci.5c00195
PMID:40810141
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12340641/
Abstract

Targeted protein degradation (TPD) mediated by molecular glues is an innovative pharmaceutical paradigm. By binding to and modulating the surface of an E3-ligase component, molecular glue degraders can facilitate the recruitment of a specific target protein (or vice versa) and ultimately invoke target degradation. This mode of action results in specific challenges for the development of rational discovery strategies, and complex hit validation workflows may be required to reliably eliminate compounds that elicit nonspecific effects. With the aim to guide screening efforts, we optimized two orthogonal cell-based, target-centric assays for degrader discovery: (1) a time-resolved FRET assay directly quantifying the levels of a target protein and its degradation (signal inhibition) and (2) an assay coupling TPD to cell growth (signal rescue). To enable a deeper understanding of the individual assays' strengths and limitations, we compared their statistical performance as well as respective hit populations by screening a specifically designed collection of about 1000 compounds containing well-annotated reference compounds and known frequent hitters (FHs). We found that the signal rescue format reliably and specifically captured active target degraders while efficiently filtering out interfering or FH compounds. Importantly, this format achieved to retrieve lower potency hits, which might be desirable in order to confidently include as many diverse chemical starting points as possible at the start of a drug discovery project.

摘要

分子胶介导的靶向蛋白质降解(TPD)是一种创新的药物模式。通过结合并调节E3连接酶组分的表面,分子胶降解剂可以促进特定靶蛋白的募集(反之亦然),并最终引发靶蛋白降解。这种作用方式给合理发现策略的开发带来了特殊挑战,可能需要复杂的命中验证工作流程来可靠地排除引发非特异性效应的化合物。为了指导筛选工作,我们优化了两种基于细胞的、以靶点为中心的正交检测方法用于降解剂发现:(1)一种时间分辨荧光共振能量转移(FRET)检测方法,直接定量靶蛋白水平及其降解情况(信号抑制);(2)一种将TPD与细胞生长偶联的检测方法(信号拯救)。为了更深入地了解各个检测方法的优势和局限性,我们通过筛选一个专门设计的包含约1000种化合物的集合来比较它们的统计性能以及各自的命中化合物群体,该集合包含注释良好的参考化合物和已知的频繁命中化合物(FHs)。我们发现信号拯救形式能够可靠且特异地捕获活性靶蛋白降解剂,同时有效地滤除干扰化合物或FH化合物。重要的是,这种形式能够找回效力较低的命中化合物,这在药物发现项目开始时可能是可取的,以便自信地纳入尽可能多的不同化学起始点。