Literature DB >> 20053762

The preclinical pharmacology and therapeutic activity of the novel CHK1 inhibitor SAR-020106.

Michael I Walton1, Paul D Eve, Angela Hayes, Melanie Valenti, Alexis De Haven Brandon, Gary Box, Kathy J Boxall, G Wynne Aherne, Suzanne A Eccles, Florence I Raynaud, David H Williams, John C Reader, Ian Collins, Michelle D Garrett.   

Abstract

Genotoxic antitumor agents continue to be the mainstay of current cancer chemotherapy. These drugs cause DNA damage and activate numerous cell cycle checkpoints facilitating DNA repair and the maintenance of genomic integrity. Most human tumors lack functional p53 and consequently have compromised G(1)-S checkpoint control. This has led to the hypothesis that S and G(2)-M checkpoint abrogation may selectively enhance genotoxic cell killing in a p53-deficient background, as normal cells would be rescued at the G(1)-S checkpoint. CHK1 is a serine/threonine kinase associated with DNA damage-linked S and G(2)-M checkpoint control. SAR-020106 is an ATP-competitive, potent, and selective CHK1 inhibitor with an IC(50) of 13.3 nmol/L on the isolated human enzyme. This compound abrogates an etoposide-induced G(2) arrest with an IC(50) of 55 nmol/L in HT29 cells, and significantly enhances the cell killing of gemcitabine and SN38 by 3.0- to 29-fold in several colon tumor lines in vitro and in a p53-dependent fashion. Biomarker studies have shown that SAR-020106 inhibits cytotoxic drug-induced autophosphorylation of CHK1 at S296 and blocks the phosphorylation of CDK1 at Y15 in a dose-dependent fashion both in vitro and in vivo. Cytotoxic drug combinations were associated with increased gammaH2AX and poly ADP ribose polymerase cleavage consistent with the SAR-020106-enhanced DNA damage and tumor cell death. Irinotecan and gemcitabine antitumor activity was enhanced by SAR-020106 in vivo with minimal toxicity. SAR-020106 represents a novel class of CHK1 inhibitors that can enhance antitumor activity with selected anticancer drugs in vivo and may therefore have clinical utility.

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Year:  2010        PMID: 20053762     DOI: 10.1158/1535-7163.MCT-09-0938

Source DB:  PubMed          Journal:  Mol Cancer Ther        ISSN: 1535-7163            Impact factor:   6.261


  32 in total

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

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5.  CCT241533 is a potent and selective inhibitor of CHK2 that potentiates the cytotoxicity of PARP inhibitors.

Authors:  Victoria E Anderson; Michael I Walton; Paul D Eve; Katherine J Boxall; Laurent Antoni; John J Caldwell; Wynne Aherne; Laurence H Pearl; Antony W Oliver; Ian Collins; Michelle D Garrett
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Review 6.  Perspectives on the combination of radiotherapy and targeted therapy with DNA repair inhibitors in the treatment of pancreatic cancer.

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Review 7.  Probing the probes: fitness factors for small molecule tools.

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8.  HMGA2 inhibits apoptosis through interaction with ATR-CHK1 signaling complex in human cancer cells.

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Review 9.  Structure-based design, discovery and development of checkpoint kinase inhibitors as potential anticancer therapies.

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Journal:  Expert Opin Drug Discov       Date:  2013-04-18       Impact factor: 6.098

Review 10.  The cancer therapeutic potential of Chk1 inhibitors: how mechanistic studies impact on clinical trial design.

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