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E-GEOD-38008 GSE38008 transcription profiling by array Homo sapiens

Gene expression profile of PTEN-deficient U87MG glioblastoma cell line treated with AT13148 and CCT128930

·发布 2012年7月19日 ·更新 2015年8月21日
56
样本数
28
实验数
1
芯片平台
1
相关文献
实验描述

Purpose: Deregulated phosphatidylinositol 3-kinase pathway signaling through AGC kinases including AKT, p70S6 kinase, PKA, SGK and Rho kinase, is a key driver of multiple cancers. The simultaneous inhibition of multiple AGC kinases may increase antitumor activity and minimize clinical resistance compared with a single pathway component. Experimental Design: We investigated the detailed pharmacology and antitumor activity of the novel clinical drug candidate AT13148, an oral ATP-competitive multi-AGC kinase inhibitor. Gene expression microarray studies were undertaken to characterize the molecular mechanisms of action of AT13148. Results: AT13148 caused substantial blockade of AKT, p70S6K, PKA, ROCK and SGK substrate phosphorylation and induced apoptosis in a concentration and time-dependent manner in cancer cells with clinically relevant genetic defects in vitro and in vivo. Antitumor efficacy in HER2-positive, PIK3CA-mutant BT474 breast, PTEN-deficient PC3 human prostate cancer and PTEN-deficient MES-SA uterine tumor xenografts was demonstrated. We show for the first time that induction of AKT phosphorylation at serine 473 by AT13148, as reported for other ATP-competitive inhibitors of AKT, is not a therapeutically relevant reactivation step. Gene expression studies showed that AT13148 has a predominant effect on apoptosis genes, whereas the selective AKT inhibitor CCT128930 modulates cell cycle genes. Induction of upstream regulators including IRS2 and PIK3IP1 due to compensatory feedback loops was observed. Conclusions: The clinical candidate AT13148 is a novel oral multi-AGC kinase inhibitor with potent pharmacodynamic and antitumor activity, which demonstrates a distinct mechanism of action from other AKT inhibitors. AT13148 will now be assessed in a first-in-human Phase I trial. The PTEN-deficient U87MG glioblastoma cell line was treated for 6 hours with vehicle control (DMSO) or to different concentrations of AT13148 and CCT128930 (0.1uM, 1xGI50 and 3XGI50).

参考文献
AT13148 Is a Novel, Oral Multi-AGC Kinase Inhibitor with Potent Pharmacodynamic and Antitumor Activity.
Yap TA, Walton MI, Grimshaw KM, Te Poele RH, Eve PD, Valenti MR, de Haven Brandon AK, Martins V, Zetterlund A, Heaton SP, Heinzmann K, Jones PS, Feltell RE, Reule M, Woodhead SJ, Davies TG, Lyons JF, Raynaud FI, Eccles SA, Workman P, Thompson NT, Garrett MD
PMID: 22781553
芯片平台
A-AGIL-28
Agilent Whole Human Genome Microarray 4x44K 014850 G4112F (85 cols x 532 rows)(28 例)
样本属性
cell line
U87MG
disease
glioblastoma
organism
Homo sapiens
实验信息
登记号
E-GEOD-38008
GEO 编号
GSE38008
实验类型
transcription profiling by array
物种
Homo sapiens
发布日期
2012年7月19日
更新日期
2015年8月21日
提交者
Ruth Feltell、 Kathrin Heinzmann、 Melanie Valenti、 Paul D Eve、 Florence I Raynaud、 Vanessa Martins、 Simon P Heaton、 John F Lyons、 Paul Workman、 Michael I Walton、 Kyla M Grimshaw、 Timothy A Yap、 Matthias Reule、 Robert te Poele、 Suzanne A Eccles、 Michelle D Garrett、 Neil T Thompson、 Robert H te Poele、 Thomas G Davies、 Paul S Jones、 Steven J Woodhead、 Alexis De Haven Brandon、 Anna Zetterlund
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