Literature DB >> 16842237

Chk1 inhibitors for novel cancer treatment.

Zhi-Fu Tao1, Nan-Horng Lin.   

Abstract

Chemo- and radiotherapies that target DNA are the mainstay of cancer treatment. In response to DNA damage, cells are arrested in multiple checkpoints in the cell cycle to allow the damaged DNA to be repaired before progressing into mitosis. Normal cells are arrested in the G1 phase mediated by the p53 tumor suppressor, and p53-deficient cancer cells are arrested in the S or G2 phase. Checkpoint kinase 1 (Chk 1) is a serine / threonine protein kinase and a key mediator in the DNA damage-induced checkpoint network. When the G2 or S checkpoint is abrogated by the inhibition of Chk1, p53-deficient cancer cells undergo mitotic catastrophe and eventually apoptosis, whereas normal cells are still arrested in the G1 phase. Thus, Chk1 inhibitors can preferentially potentiate the efficacy of DNA damaging agents in cancer cells, and Chk1 is an attractive therapeutic target for cancer treatment, especially since approximately 50% of all human cancers are p53-deficient. This review discusses the rationale of Chk1 as an anticancer target, the structural basis for designing Chk1 inhibitors, and recently disclosed Chk1 inhibitors.

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Year:  2006        PMID: 16842237     DOI: 10.2174/187152006777698132

Source DB:  PubMed          Journal:  Anticancer Agents Med Chem        ISSN: 1871-5206            Impact factor:   2.505


  13 in total

1.  Discovery of novel checkpoint kinase 1 inhibitors by virtual screening based on multiple crystal structures.

Authors:  Yan Li; Dong Joon Kim; Weiya Ma; Ronald A Lubet; Ann M Bode; Zigang Dong
Journal:  J Chem Inf Model       Date:  2011-10-12       Impact factor: 4.956

Review 2.  Molecular targets and mechanisms of radiosensitization using DNA damage response pathways.

Authors:  David R Raleigh; Daphne A Haas-Kogan
Journal:  Future Oncol       Date:  2013-02       Impact factor: 3.404

3.  Characterization and preclinical development of LY2603618: a selective and potent Chk1 inhibitor.

Authors:  Constance King; Henry Diaz; Darlene Barnard; David Barda; David Clawson; Wayne Blosser; Karen Cox; Sherry Guo; Mark Marshall
Journal:  Invest New Drugs       Date:  2013-10-10       Impact factor: 3.850

4.  Identification of novel inhibitors of human Chk1 using pharmacophore-based virtual screening and their evaluation as potential anti-cancer agents.

Authors:  Vikash Kumar; Saman Khan; Priyanka Gupta; Namrata Rastogi; Durga Prasad Mishra; Shakil Ahmed; Mohammad Imran Siddiqi
Journal:  J Comput Aided Mol Des       Date:  2014-10-14       Impact factor: 3.686

5.  Structure-based and shape-complemented pharmacophore modeling for the discovery of novel checkpoint kinase 1 inhibitors.

Authors:  Xiu-Mei Chen; Tao Lu; Shuai Lu; Hui-Fang Li; Hao-Liang Yuan; Ting Ran; Hai-Chun Liu; Ya-Dong Chen
Journal:  J Mol Model       Date:  2009-12-18       Impact factor: 1.810

Review 6.  Impaired DNA damage response--an Achilles' heel sensitizing cancer to chemotherapy and radiotherapy.

Authors:  Zbigniew Darzynkiewicz; Frank Traganos; Donald Wlodkowic
Journal:  Eur J Pharmacol       Date:  2009-10-18       Impact factor: 4.432

7.  LY2603618, a selective CHK1 inhibitor, enhances the anti-tumor effect of gemcitabine in xenograft tumor models.

Authors:  Darlene Barnard; H Bruce Diaz; Teresa Burke; Gregory Donoho; Richard Beckmann; Bonita Jones; David Barda; Constance King; Mark Marshall
Journal:  Invest New Drugs       Date:  2015-11-27       Impact factor: 3.850

8.  Golgi partitioning controls mitotic entry through Aurora-A kinase.

Authors:  Angela Persico; Romina Ines Cervigni; Maria Luisa Barretta; Daniela Corda; Antonino Colanzi
Journal:  Mol Biol Cell       Date:  2010-09-15       Impact factor: 4.138

9.  Gemcitabine sensitization by checkpoint kinase 1 inhibition correlates with inhibition of a Rad51 DNA damage response in pancreatic cancer cells.

Authors:  Leslie A Parsels; Meredith A Morgan; Daria M Tanska; Joshua D Parsels; Brian D Palmer; R John Booth; William A Denny; Christine E Canman; Alan J Kraker; Theodore S Lawrence; Jonathan Maybaum
Journal:  Mol Cancer Ther       Date:  2009-01       Impact factor: 6.261

Review 10.  The ATR barrier to replication-born DNA damage.

Authors:  Andrés J López-Contreras; Oscar Fernandez-Capetillo
Journal:  DNA Repair (Amst)       Date:  2010-10-30
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