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AZ703是一种细胞周期蛋白依赖性激酶1和2的咪唑并[1,2-a]吡啶抑制剂,可诱导由细胞周期蛋白依赖性激酶9缺失增强的E2F-1依赖性凋亡。

AZ703, an imidazo[1,2-a]pyridine inhibitor of cyclin-dependent kinases 1 and 2, induces E2F-1-dependent apoptosis enhanced by depletion of cyclin-dependent kinase 9.

作者信息

Cai Dongpo, Byth Kate F, Shapiro Geoffrey I

机构信息

Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts 02115, USA.

出版信息

Cancer Res. 2006 Jan 1;66(1):435-44. doi: 10.1158/0008-5472.CAN-05-1769.

Abstract

Preclinical studies were performed of a novel selective imidazopyridine cyclin-dependent kinase (cdk) inhibitor, AZ703. In vitro kinase assays showed that IC50 values for AZ703 against purified cyclin E/cdk2 and cyclin B/cdk1 were 34 and 29 nmol/L, respectively. In contrast, the IC50 against cdk4 was 10 micromol/L. AZ703 also inhibited cdk7 and cdk9 with IC50 values of 2.1 micromol/L and 521 nmol/L, respectively. Treatment of U2OS, NCI-H1299, and A549 cells for 24 hours resulted in growth arrest involving multiple cell cycle phases. At low drug concentrations (< 2 micromol/L), G2 arrest predominated, whereas at higher concentrations (> or = 2 micromol/L), S-G2 arrest was observed. When cells were synchronized in G1 by starvation and released into AZ703, a block in G1 occurred that was not evident in exponentially growing cells. Cell cycle arrest was associated with reduced phosphorylation of the retinoblastoma protein and p27(Kip1) at cdk2 phospho-sites. Following longer exposures, apoptosis was evident. Cells were further sensitized to AZ703 following recruitment to S phase by synchronization. Consistent with the inhibition of cdks during S and G2 that modulate the activity and stability of E2F-1, AZ703 treatment induced E2F-1 expression. In U2OS and NCI-H1299 cells engineered to inducibly express the dominant-negative mutant E2F-1 (1-374), expression of the mutant decreased AZ703-mediated apoptosis, indicating dependence on E2F-1 transcriptional targets. AZ703-induced apoptosis in NCI-H1299 cells was enhanced by small interfering RNA-mediated depletion of cdk9, which caused reduced levels of Mcl-1 and XIAP, suggesting that cdk2, cdk1, and cdk9 represent a rational subset of family members for drug targeting.

摘要

对一种新型选择性咪唑并吡啶细胞周期蛋白依赖性激酶(cdk)抑制剂AZ703进行了临床前研究。体外激酶试验表明,AZ703对纯化的细胞周期蛋白E/cdk2和细胞周期蛋白B/cdk1的IC50值分别为34和29 nmol/L。相比之下,对cdk4的IC50为10 μmol/L。AZ703还抑制cdk7和cdk9,IC50值分别为2.1 μmol/L和521 nmol/L。用AZ703处理U2OS、NCI-H1299和A549细胞24小时导致生长停滞,涉及多个细胞周期阶段。在低药物浓度(<2 μmol/L)时,G2期停滞占主导,而在较高浓度(≥2 μmol/L)时,观察到S-G2期停滞。当细胞通过饥饿同步于G1期并释放到AZ703中时,G1期出现阻滞,这在指数生长的细胞中不明显。细胞周期停滞与视网膜母细胞瘤蛋白和p27(Kip1)在cdk2磷酸化位点的磷酸化减少有关。长时间暴露后,凋亡明显。通过同步化使细胞进入S期后,细胞对AZ703更敏感。与在S期和G2期抑制调节E2F-1活性和稳定性的cdk一致,AZ703处理诱导E2F-1表达。在经基因工程改造可诱导表达显性负性突变体E2F-1(1-374)的U2OS和NCI-H1299细胞中,突变体的表达降低了AZ703介导的凋亡,表明依赖于E2F-1转录靶点。小干扰RNA介导的cdk9缺失增强了AZ703诱导的NCI-H1299细胞凋亡,这导致Mcl-1和XIAP水平降低,表明cdk2、cdk1和cdk9是药物靶向的合理的家族成员子集。

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