Literature DB >> 21220498

MEK/ERK inhibitor U0126 increases the radiosensitivity of rhabdomyosarcoma cells in vitro and in vivo by downregulating growth and DNA repair signals.

Francesco Marampon1, Giovanni Luca Gravina, Agnese Di Rocco, Pierluigi Bonfili, Mario Di Staso, Caterina Fardella, Lorella Polidoro, Carmela Ciccarelli, Claudio Festuccia, Vladimir M Popov, Richard G Pestell, Vincenzo Tombolini, Bianca Maria Zani.   

Abstract

Multimodal treatment has improved the outcome of many solid tumors, and in some cases the use of radiosensitizers has significantly contributed to this gain. Activation of the extracellular signaling kinase pathway (MEK/ERK) generally results in stimulation of cell growth and confers a survival advantage playing the major role in human cancer. The potential involvement of this pathway in cellular radiosensitivity remains unclear. We previously reported that the disruption of c-Myc through MEK/ERK inhibition blocks the expression of the transformed phenotype; affects in vitro and in vivo growth and angiogenic signaling; and induces myogenic differentiation in the embryonal rhabdomyosarcoma (ERMS) cell lines (RD). This study was designed to examine whether the ERK pathway affects intrinsic radiosensitivity of rhabdomyosarcoma cancer cells. Exponentially growing human ERMS, RD, xenograft-derived RD-M1, and TE671 cell lines were used. The specific MEK/ERK inhibitor, U0126, reduced the clonogenic potential of the three cell lines, and was affected by radiation. U0126 inhibited phospho-active ERK1/2 and reduced DNA protein kinase catalytic subunit (DNA-PKcs) suggesting that ERKs and DNA-PKcs cooperate in radioprotection of rhabdomyosarcoma cells. The TE671 cell line xenotransplanted in mice showed a reduction in tumor mass and increase in the time of tumor progression with U0126 treatment associated with reduced DNA-PKcs, an effect enhanced by radiotherapy. Thus, our results show that MEK/ERK inhibition enhances radiosensitivity of rhabdomyosarcoma cells suggesting a rational approach in combination with radiotherapy. ©2010 AACR.

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Year:  2011        PMID: 21220498      PMCID: PMC3064485          DOI: 10.1158/1535-7163.MCT-10-0631

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


  44 in total

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Review 3.  Pharmacological inhibitors of the ERK signaling pathway: application as anticancer drugs.

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4.  Getting at MYC through RAS.

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Review 5.  Transcriptional regulation and transformation by Myc proteins.

Authors:  Sovana Adhikary; Martin Eilers
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Journal:  J Clin Oncol       Date:  2001-03-01       Impact factor: 44.544

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Authors:  K M Ahmed; M Fan; D Nantajit; N Cao; J J Li
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9.  MEK/ERK inhibitor U0126 affects in vitro and in vivo growth of embryonal rhabdomyosarcoma.

Authors:  Francesco Marampon; Gianluca Bossi; Carmela Ciccarelli; Agnese Di Rocco; Ada Sacchi; Richard G Pestell; Bianca M Zani
Journal:  Mol Cancer Ther       Date:  2009-03-03       Impact factor: 6.261

10.  Radiation-induced DNA damage and repair in cells of a radiosensitive human malignant glioma cell line.

Authors:  M J Allalunis-Turner; P K Zia; G M Barron; R Mirzayans; R S Day
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  40 in total

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3.  Disruption of MEK/ERK/c-Myc signaling radiosensitizes prostate cancer cells in vitro and in vivo.

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Review 5.  Phenylpropanoids in radioregulation: double edged sword.

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6.  Inhibitory effects of PPARγ ligands on TGF-β1-induced CTGF expression in cat corneal fibroblasts.

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7.  Matrine inhibits cell proliferation and induces apoptosis of human rhabdomyosarcoma cells via downregulation of the extracellular signal-regulated kinase pathway.

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8.  NRF2 orchestrates the redox regulation induced by radiation therapy, sustaining embryonal and alveolar rhabdomyosarcoma cells radioresistance.

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9.  Vitamin D protects human endothelial cells from H₂O₂ oxidant injury through the Mek/Erk-Sirt1 axis activation.

Authors:  Lorella Polidoro; G Properzi; F Marampon; G L Gravina; C Festuccia; E Di Cesare; L Scarsella; C Ciccarelli; B M Zani; C Ferri
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10.  Inhibitory effects of PPARγ ligands on TGF-β1-induced corneal myofibroblast transformation.

Authors:  Kye-Im Jeon; Ajit Kulkarni; Collynn F Woeller; Richard P Phipps; Patricia J Sime; Holly B Hindman; Krystel R Huxlin
Journal:  Am J Pathol       Date:  2014-03-17       Impact factor: 4.307

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