A High-Throughput Screen with Isogenic PTEN+/+ and PTEN-/- Cells Identifies CID1340132 as a Novel Compound That Induces Apoptosis in PTEN and PIK3CA Mutant Human Cancer Cells

被引:9
作者
Li, Hui-Fang [1 ]
Keeton, Adam [2 ]
Vitolo, Michele [3 ]
Maddox, Clinton [2 ]
Rasmussen, Lynn [2 ]
Hobrath, Judith [2 ]
White, E. Lucile [2 ]
Park, Ben Ho [4 ]
Piazza, Gary A. [2 ]
Kim, Jung-Sik [1 ]
Waldman, Todd [1 ]
机构
[1] Georgetown Univ, Lombardi Comprehens Canc Ctr, Dept Oncol, Sch Med, Washington, DC 20007 USA
[2] So Res Inst, Div Drug Discovery, Birmingham, AL 35255 USA
[3] Univ Maryland, Sch Med, Greenebaum Canc Ctr, Baltimore, MD 21201 USA
[4] Johns Hopkins Sch Med, Kimmel Canc Ctr, Baltimore, MD USA
关键词
PTEN; PIK3CA; human somatic cell gene targeting; phenotypic screen; DNA damage; high-throughput screen; synthetic lethality; PHENYL AMIDES; SUPPRESSION; MUTATIONS; GROWTH; AGENTS; GENE;
D O I
10.1177/1087057110397357
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The PTEN tumor suppressor gene is one of the most commonly mutated genes in human cancer. Because inactivation of PTEN is a somatic event, PTEN mutations represent an important genetic difference between cancer cells and normal cells and therefore a potential anticancer drug target. However, it remains a substantial challenge to identify compounds that target loss-of-function events such as mutations of tumor suppressors. In an effort to identify small molecules that preferentially kill cells with mutations of PTEN, the authors developed and implemented a high-throughput, paired cell-based screen composed of parental HCT116 cells and their PTEN gene-targeted derivatives. From 138 758 compounds tested, two hits were identified, and one, N'-[(1-benzyl-1H-indol-3-yl) methylene]benzenesulfonohydrazide (CID1340132), was further studied using a variety of cell-based models, including HCT116, MCF10A, and HEC1A cells with targeted deletion of either their PTEN or PIK3CA genes. Preferential killing of PTEN and PIK3CA mutant cells was accompanied by DNA damage, inhibition of DNA synthesis, and apoptosis. Taken together, these data validate a cell-based screening approach for identifying lead compounds that target cells with specific tumor suppressor gene mutations and describe a novel compound with preferential killing activity toward PTEN and PIK3CA mutant cells. (Journal of Biomolecular Screening 2011; 16: 383-393)
引用
收藏
页码:383 / 393
页数:11
相关论文
共 6 条
  • [1] PIK3CA mutation, but not PTEN loss of function, determines the sensitivity of breast cancer cells to mTOR inhibitory drugs
    Weigelt, B.
    Warne, P. H.
    Downward, J.
    ONCOGENE, 2011, 30 (29) : 3222 - 3233
  • [2] (-)-Epigallocatechin-3-gallate induces apoptosis in human pancreatic cancer cells via PTEN
    Liu, Shi
    Xu, Zhong-Ling
    Sun, Li
    Liu, Ying
    Li, Cheng-Chong
    Li, Hong-Mei
    Zhang, Wei
    Li, Cheng-Jun
    Qin, Wei
    MOLECULAR MEDICINE REPORTS, 2016, 14 (01) : 599 - 605
  • [3] PIK3CA mutation, but not PTEN loss of function, determines the sensitivity of breast cancer cells to mTOR inhibitory drugs
    B Weigelt
    P H Warne
    J Downward
    Oncogene, 2011, 30 : 3222 - 3233
  • [4] High-throughput interrogation of PIK3CA, PTEN, KRAS, FBXW7 and TP53 mutations in primary endometrial carcinoma
    Garcia-Dios, Diego A.
    Lambrechts, Diether
    Coenegrachts, Lieve
    Vandenput, Ingrid
    Capoen, An
    Webb, Penelope M.
    Ferguson, Kaltin
    Akslen, Lars A.
    Claes, Bart
    Vergote, Ignace
    Moerman, Philippe
    Van Robays, Johan
    Marcickiewicz, Janusz
    Salvesen, Helga B.
    Spurdle, Amanda B.
    Amant, Frederic
    GYNECOLOGIC ONCOLOGY, 2013, 128 (02) : 327 - 334
  • [5] Noscapine Induces Apoptosis in Human Colon Cancer Cells by Regulating Mitochondrial Damage and Warburg Effect via PTEN/PI3K/mTOR Signaling Pathway
    Tian, Xia
    Liu, Meng
    Huang, Xiaodong
    Zhu, Qingxi
    Liu, Weijie
    Chen, Wei
    Zou, Yanli
    Cai, Yishan
    Huang, Shasha
    Chen, Aifang
    Zhan, Ting
    Huang, Min
    Chen, Xiaoli
    Han, Zheng
    Tan, Jie
    ONCOTARGETS AND THERAPY, 2020, 13 : 5419 - 5428
  • [6] Dietary isothiocyanate sulforaphene induces reactive oxygen species, caspase-9,-8,-3-dependent apoptosis and modulates PTEN/PI3Kinase in human cervical cancer cells
    Rhee, Yun-Hee
    Mondal, Arindam
    Chung, Phil-Sang
    Ahn, Jin-Chul
    TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH, 2017, 16 (12) : 2811 - 2821