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结构导向优化 2-氨基喹唑啉造血祖细胞激酶 1 抑制剂以提高口服生物利用度和协同抗肿瘤免疫

英文原题:Structure-Guided Optimization of 2-Aminoquinazoline Hematopoietic Progenitor Kinase 1 Inhibitors for Improved Oral Bioavailability and Synergistic Antitumor Immunity.

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Structure-Guided Optimization of 2-Aminoquinazoline Hematopoietic Progenitor Kinase 1 Inhibitors for Improved Oral Bioavailability and Synergistic Antitumor Immunity.

PubMed 2025/05/05(内容时间) J Med Chem Q1 · IF 7.3(JCR 2025)

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中文摘要

造血祖细胞激酶1(HPK1)是一种关键的T细胞免疫抑制因子,具有克服免疫检查点耐药的变革性潜力,但现有抑制剂无法在效力、选择性和药代动力学之间取得平衡。

我们在2-氨基喹唑啉核心的统一化学框架内开发了一种空间分辨策略,将(1)通过双齿氢键和疏水堆积对HPK1铰链区亚口袋(Leu23/Phe93/Gly95)的高亲和力结合与(2)战略性占据溶剂暴露的变构位点以空间阻断CYP3A4/2C9/2D6介导的氧化代谢相结合。优化化合物39表现出亚纳摩尔结合亲和力(IC 50 = 0.70 nM)和中等选择性,同时在人肝微粒体中具有高代谢稳定性(CL int < 1 mL/min/kg),并在小鼠中具有良好的口服生物利用度(>100%)。在CT26模型中,化合物39与anti-PD-1协同作用(60%肿瘤生长抑制),通过扩增IFN-γ + CD8 + TIL(肿瘤浸润淋巴细胞)(7倍)和增强脾脏IFN-γ产生(3倍)。这项工作验证了2-氨基喹唑啉作为一种新型HPK1化学型,解决了代谢不稳定性——激酶药物发现中的一个关键障碍。

展开英文摘要原文

Hematopoietic progenitor kinase 1 (HPK1), a pivotal T-cell immunity suppressor, offers transformative potential to overcome immune checkpoint resistance, yet existing inhibitors fail to balance potency, selectivity, and pharmacokinetics.

We developed a spatially resolved strategy within a unified chemical framework of our 2-aminoquinazoline core, integrating (1) high-affinity engagement of the HPK1 hinge-region subpocket (Leu23/Phe93/Gly95) through bidentate hydrogen bonding and hydrophobic packing with (2) strategic occupation of a solvent-exposed allosteric site to sterically block CYP3A4/2C9/2D6-mediated oxidative metabolism. Optimized compound 39 demonstrated subnanomolar binding affinity (IC 50 = 0.

70 nM) with moderate selectivity, combined with high metabolic stability in human liver microsomes (CL int < 1 mL/min/kg) and favorable oral bioavailability (>100%) in mice. In CT26 models, compound 39 synergized with anti-PD-1 (60% tumor growth inhibition) by expanding IFN-γ + CD8 + tumor-infiltrating lymphocytes (7-fold) and enhancing splenic IFN-γ production (3-fold). This work validates 2-aminoquinazolines as a novel HPK1 chemotype addressing metabolic instability─a key hurdle in kinase drug discovery.

论文信息

作者
Wan B、Liang L、Zhong K、Ma Y、Wang H、Wang Z、Sun S、Lu T
单位
School of Science, China Pharmaceutical University, No. 639 Longmian Avenue, Nanjing 211198, China.China
期刊
Journal of medicinal chemistry2025 May 22
原文标识
PubMed 40325350 · DOI 10.1021/acs.jmedchem.5c00762