PO.ET01.04 · 实验与分子治疗
针对致癌磷酸酶WIP1的药物开发检测系统的建立
Establishment of assay systems for drug development against the oncogenic phosphatase WIP1
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
丝氨酸/苏氨酸磷酸酶WIP1(PPM1D)是DNA损伤应答(DDR)的关键负调节因子,也是公认的癌基因,在包括乳腺癌、卵巢癌、神经母细胞瘤和胶质母细胞瘤在内的多种癌症中频繁扩增或截短。抑制WIP1可恢复DDR信号传导,提供了一种有前景的治疗策略。尽管已有初步努力,包括开发变构抑制剂GSK2830371,但临床转化仍受限。我们报道了建立一个全面的检测平台以支持靶向WIP1的药物开发。生化检测采用二磷酸荧光素(FDP)、结合磷酸肽(p53、H2AX、p38 MAPK)的孔雀石绿法以及TR-FRET形式进行了优化,实现了稳健的活性谱分析。开发了细胞作用机制检测以监测WIP1底物的磷酸化变化,选择U2OS细胞中的pS15-p53 ELISA用于中通量迭代化合物谱分析。表型检测表明化合物在2D和3D增殖模型中均具有疗效,其中白血病细胞系表现出显著的敏感性。联合研究揭示了WIP1抑制剂与MDM2拮抗剂(如Nutlin3a)之间的强协同作用,支持p53通路重新激活的双靶向策略。在MV4-11异种移植模型中证实了体内疗效,具有剂量依赖性的肿瘤生长抑制和良好的耐受性特征。我们整合的检测套件实现了迭代筛选和先导优化,最终鉴定出一种具有纳摩尔级活性和有前景的临床前疗效的强效变构WIP1抑制剂。这些发现支持WIP1作为肿瘤学中的可行靶点,并为未来的临床开发奠定了基础。
查看英文原文 English abstract
The serine/threonine phosphatase WIP1 (PPM1D) is a key negative regulator of the DNA damage response (DDR) and a recognized oncogene, frequently amplified or truncated in various cancers including breast, ovarian, neuroblastoma, and glioblastoma. Its inhibition restores DDR signaling, offering a promising therapeutic strategy. Despite initial efforts, including the development of the allosteric inhibitor GSK2830371, clinical translation has been limited. We report the establishment of a comprehensive assay platform to support drug development targeting WIP1. Biochemical assays were optimized using fluorescein diphosphate (FDP), malachite green with phosphopeptides (p53, H2AX, p38 MAPK), and TR-FRET formats, enabling robust activity profiling. Cellular mechanism-of-action assays were developed to monitor phosphorylation changes in WIP1 substrates, with pS15-p53 ELISA in U2OS cells selected for medium-throughput iterative compound profiling. Phenotypic assays demonstrated compound efficacy in 2D and 3D proliferation models, with leukemic cell lines showing pronounced sensitivity. Combination studies revealed strong synergy between WIP1 inhibitors and MDM2 antagonists (e.g., Nutlin3a), supporting a dual-targeting approach for p53 pathway reactivation. In vivo efficacy was confirmed in MV4-11 xenograft models, with dose-dependent tumor growth inhibition and favorable tolerability profiles. Our integrated assay suite enables iterative screening and lead optimization, culminating in the identification of a potent allosteric WIP1 inhibitor with nanomolar activity and promising preclinical efficacy. These findings support WIP1 as a viable target in oncology and provide a foundation for future clinical development.
利益披露 Disclosure
D. Feger,
Reaction Biology Europe GmbH Employment.
D. Müller,
Reaction Biology Europe GmbH Employment.
L. Pilgermayer,
Reaction Biology Europe GmbH Employment.
C. Heidemann-Dinger,
Reaction Biology Europe GmbH Employment.
S. Ulrich,
Reaction Biology Europe GmbH Employment.
M. Kubbutat,
Reaction Biology Europe GmbH Employment.
H. Weber,
Reaction Biology Europe GmbH Employment.
J. Lewis,
Anavo Therapeutics GmbH Employment.
B. Zech,
Anavo Therapeutics GmbH Employment.
J. E. Ehlert,
Reaction Biology Europe GmbH Employment.