PO.ET09.07 · 实验与分子治疗
发现同类最佳的小分子p53 Y220C重激活剂:突破效力天花板
Discovery of a Best-in-Class small molecule p53 Y220C reactivator: Breaking through the potency ceiling
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
抑癌基因p53在约50%的人类癌症中失活。在约1%的实体瘤中,一个特定的Y220C点突变诱导p53错误折叠,导致其失活。该突变还在蛋白质表面形成了一个独特的、可成药的口袋,使其成为一个有前景的癌症治疗靶点。第一代小分子重激活剂(PC14586,Rezatapopt)设计用于结合该口袋、重新折叠p53并恢复其抑癌功能,已在携带Y220C突变的患者中显示出临床疗效。
然而,这一第一代化合物受限于中等效力,需要在患者中高剂量给药。这种高剂量需求增加了不良事件的风险并缩窄了治疗窗口,无论是单药治疗还是联合方案(后者更甚)。因此,该化合物无法提供达到这一关键抑癌因子完全重激活所需的药物压力。因此,明确需要发现和开发一种高效的p53小分子重激活剂,以充分释放这一有前景靶点的治疗潜力。
在Onco3R Therapeutics,我们以患者为中心的方法整合了深入的转化科学与理性的、基于结构和AI增强的药物设计,已鉴定出同类最佳的p53 Y220C重激活剂系列。我们的先导系列在多种临床前测定(包括生化p53重折叠、细胞p53重折叠和细胞p21诱导)中,效力比临床化合物PC14586(Rezatapopt)优越200倍以上。
重要的是,我们的先导系列具有强效力和体外长驻留时间的特征,可显著持续地维持细胞中的靶点结合和p53重激活。这一特征能够稳健激活促凋亡蛋白PUMA,并在p53 Y220C突变细胞和同基因细胞模型中诱导强效、选择性的细胞毒性。与其优越的细胞活性一致,并结合优化的关键ADME、安全性参数以及跨物种良好的体内PK特征,我们的先导化合物在体内以远低于PC14586的暴露量即达到相似的疗效。
总之,我们已鉴定出独特的p53 Y220C小分子重激活剂,具有明确的同类最佳细胞效力和良好的成药特性。我们目前正在进一步表征这些先导化合物作为潜在候选药物,以在显著更低的剂量下实现优越的疗效,最大化安全窗口,最终为携带p53 Y220C突变的癌症患者带来更好的结局。
查看英文原文 English abstract
The tumor suppressor p53 is inactivated in approximately 50% of human cancers. In about 1% of solid tumors, a specific Y220C point mutation induces p53 misfolding, leading to its inactivation. This mutation also creates a unique, druggable pocket on the protein's surface, making it a promising target for cancer therapy. The first-generation small molecule reactivator (PC14586, Rezatapopt), designed to bind to this pocket, to refold p53 and to restore its tumor-suppressive functions, has shown clinical efficacy in patients harboring the Y220C mutations.
However, this first-generation compound is limited by modest potency, necessitating high dosing in patients. This high-dose requirement increases the risk of adverse events and narrows the therapeutic window, as monotherapy and even more so in combination regimens. As a result, this compound fails to deliver the drug pressure needed to reach full reactivation of this critical tumor suppressor. Thus, there is a clear need to discover and develop a highly potent p53 small molecule reactivator to fully unlock the therapeutic potential of this promising target.
At Onco3R Therapeutics, our patient centric approach, integrating deep translational science with rational, structure-based and AI-augmented drug design, has led to the identification of best-in-class series of p53 Y220C reactivators. Our lead series exhibits more than 200-fold superior potency compared to the clinical compound PC14586 (Rezatapopt) across diverse preclinical assays, including biochemical p53 refolding, cellular p53 refolding, and cellular p21 induction.
Importantly, our lead series, characterized by strong potency and long residence times in vitro, significantly sustains target engagement and P53 reactivation in cells. This profile enables robust activation of the pro-apoptotic protein PUMA and induces potent, selective cytotoxicity in p53 Y220C mutant cells and in an isogenic cell model. In line with their superior cellular activity and in combination with optimized key ADME, safety parameters, and favorable in vivo PK profiles across species, our leads reach similar efficacy in vivo as PC145586 at much lower exposure.
In conclusion, we have identified unique p53 Y220C small molecule reactivators with clear best-in-class cellular potency and favorable drug-like properties. We are currently further profiling these leads as potential drug candidates to achieve superior efficacy at substantially lower doses, maximizing the safety window to ultimately deliver better outcomes to cancer patients with p53 Y220C mutations.
利益披露 Disclosure
R. Boon,
Galapagos Employment.
J. Alen,
Galapagos Employment.
N. Draoui,
Galapagos Employment.
K. Vandyck,
Galapagos Employment.
E. Behaeghel,
Galapagos Employment.
G. Lammens,
Galapagos Employment.
S. Vendeville,
Galapagos Employment.
L. Beke,
Galapagos Employment.
P. Peeters,
Galapagos Employment.
S. De Cesco,
Galapagos Employment.
B. Stoops,
J&J Employment.
P. Raboisson,
Galapagos Employment.
F. Gonzalvez,
Galapagos Employment.
C. De Legher, None.