Design of a brain-penetrant CDK4/6 inhibitor for glioblastoma

细胞周期蛋白依赖激酶6 化学 帕博西利布 极表面积 药理学 细胞周期 细胞周期蛋白依赖激酶1 激酶 癌症研究 效力 细胞周期蛋白依赖激酶 生物化学 细胞 癌症 内科学 体外 生物 乳腺癌 医学 转移性乳腺癌 有机化学 分子
作者
Sarah M. Bronner,Karl A. Merrick,Jeremy Murray,Laurent Salphati,John G. Moffat,Jodie Pang,Christopher J. Sneeringer,Nicholas Dompe,Patrick Cyr,Hans E. Purkey,Gladys de Leon Boenig,Jun Li,Aleksandr Kolesnikov,Robin Larouche‐Gauthier,Kwong Wah Lai,Xiaoli Shen,Samuel Aubert‐Nicol,Yi‐Chen Chen,Jonathan Cheong,James J. Crawford,Marc Hafner,Pouyan Haghshenas,Araz Jakalian,Jean‐Philippe Leclerc,Ngiap‐Kie Lim,Thomas O’Brien,Emile G. Plise,Hadil Shalan,Claudio F. Sturino,John Wai,Yang Xiao,Jianping Yin,Liang Zhao,Stephen E. Gould,Alan G. Olivero,Timothy P. Heffron
出处
期刊:Bioorganic & Medicinal Chemistry Letters [Elsevier]
卷期号:29 (16): 2294-2301 被引量:51
标识
DOI:10.1016/j.bmcl.2019.06.021
摘要

CDK4 and CDK6 are kinases with similar sequences that regulate cell cycle progression and are validated targets in the treatment of cancer. Glioblastoma is characterized by a high frequency of CDKN2A/CCND2/CDK4/CDK6 pathway dysregulation, making dual inhibition of CDK4 and CDK6 an attractive therapeutic approach for this disease. Abemaciclib, ribociclib, and palbociclib are approved CDK4/6 inhibitors for the treatment of HR+/HER2− breast cancer, but these drugs are not expected to show strong activity in brain tumors due to poor blood brain barrier penetration. Herein, we report the identification of a brain-penetrant CDK4/6 inhibitor derived from a literature molecule with low molecular weight and topological polar surface area (MW = 285 and TPSA = 66 Å2), but lacking the CDK2/1 selectivity profile due to the absence of a basic amine. Removal of a hydrogen bond donor via cyclization of the pyrazole allowed for the introduction of basic and semi-basic amines, while maintaining in many cases efflux ratios reasonable for a CNS program. Ultimately, a basic spiroazetidine (cpKa = 8.8) was identified that afforded acceptable selectivity over anti-target CDK1 while maintaining brain-penetration in vivo (mouse Kp,uu = 0.20–0.59). To probe the potency and selectivity, our lead compound was evaluated in a panel of glioblastoma cell lines. Potency comparable to abemaciclib was observed in Rb-wild type lines U87MG, DBTRG-05MG, A172, and T98G, while Rb-deficient cell lines SF539 and M059J exhibited a lack of sensitivity.
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