Literature DB >> 15038770

Radiation-induced up-regulation of Mmp2 involves increased mRNA stability, redox modulation, and MAPK activation.

Weiling Zhao1, Prabhat C Goswami, Mike E C Robbins.   

Abstract

We have previously observed time- and dose-dependent increases in matrix metalloproteinase 2 (Mmp2) protein levels in rat tubule epithelial cells (NRK52E) after irradiation. However, the mechanism(s) involved remains unclear. In the present study, irradiating NRK52E cells with 0-20 Gy gamma rays was associated with time- and dose-dependent increases in Mmp2 mRNA. Studies using the transcription inhibitor actinomycin D (ActD) added 24 h after irradiation revealed the t(1/2) of Mmp2 mRNA to be approximately 8 h in control cells. In contrast, the increase in Mmp2 mRNA levels in irradiated cells was essentially unchanged after incubation with ActD for up to 12 h. Incubating cells with the antioxidants N-acetylcysteine or ebselen or the MEK pathway inhibitors PD98059 and U0126 prior to irradiation abolished the radiation-induced up-regulation of Mmp2. Irradiating NRK52E cells led to reactive oxygen species-mediated Erk1/2 activation; preincubation with NAC prevented the radiation-induced increase in phosphorylated Erk1/2. Transfecting cells with a dominant-negative ERK mutant completely inhibited radiation-induced Erk phosphorylation and abolished the radiation-induced up-regulation of Mmp2 protein. Thus the radiation-induced up-regulation of Mmp2 mRNA is due in part to increased mRNA stability and is mediated by redox; the ERK MAPK signaling pathway may be involved.

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Year:  2004        PMID: 15038770     DOI: 10.1667/3155

Source DB:  PubMed          Journal:  Radiat Res        ISSN: 0033-7587            Impact factor:   2.841


  8 in total

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Journal:  Radiat Res       Date:  2011-08-19       Impact factor: 2.841

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Authors:  Dina V Hingorani; Jessica L Crisp; Matthew K Doan; Maria F Camargo; Maryam A Quraishi; Joseph Aguilera; Mara Gilardi; Larry A Gross; Tao Jiang; Wei T Li; Weg M Ongkeko; Ezra E W Cohen; J Silvio Gutkind; Stephen R Adams; Sunil J Advani
Journal:  Biomaterials       Date:  2020-04-11       Impact factor: 15.304

Review 8.  An Iatrogenic Model of Brain Small-Vessel Disease: Post-Radiation Encephalopathy.

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  8 in total

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