癌症研究
体内
髓系白血病
化学
癌症
白血病
细胞凋亡
细胞培养
髓样
细胞生长
淋巴瘤
药理学
免疫学
生物
医学
生物化学
内科学
生物技术
遗传学
作者
Taekyu Lee,Plamen P. Christov,Subrata Shaw,James C. Tarr,Bin Zhao,Nagarathanam Veerasamy,Kyu Ok Jeon,Jonathan J. Mills,Zhiguo Bian,John Sensintaffar,Allison L. Arnold,Stuart A. Fogarty,Evan Perry,Haley E. Ramsey,Rebecca S. Cook,Melinda G. Hollingshead,Myrtle Davis Millin,Kyung‐min Lee,Brian Koss,Amit Budhraja
标识
DOI:10.1021/acs.jmedchem.8b01991
摘要
Overexpression of myeloid cell leukemia-1 (Mcl-1) in cancers correlates with high tumor grade and poor survival. Additionally, Mcl-1 drives intrinsic and acquired resistance to many cancer therapeutics, including B cell lymphoma 2 family inhibitors, proteasome inhibitors, and antitubulins. Therefore, Mcl-1 inhibition could serve as a strategy to target cancers that require Mcl-1 to evade apoptosis. Herein, we describe the use of structure-based design to discover a novel compound (42) that robustly and specifically inhibits Mcl-1 in cell culture and animal xenograft models. Compound 42 binds to Mcl-1 with picomolar affinity and inhibited growth of Mcl-1-dependent tumor cell lines in the nanomolar range. Compound 42 also inhibited the growth of hematological and triple negative breast cancer xenografts at well-tolerated doses. These findings highlight the use of structure-based design to identify small molecule Mcl-1 inhibitors and support the use of 42 as a potential treatment strategy to block Mcl-1 activity and induce apoptosis in Mcl-1-dependent cancers.
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