| Literature DB >> 24814289 |
Daniele Avitabile1, Danilo Ranieri2, Arianna Nicolussi3, Sonia D'Inzeo3, Anna Laura Capriotti4, Licia Genovese2, Sara Proietti2, Alessandra Cucina5, Anna Coppa3, Roberto Samperi4, Mariano Bizzarri3, Aldo Laganà4, Maria Rosaria Torrisi6.
Abstract
Circadian rhythms are highly conserved time tracking systems regulating important biological processes at both systemic and cellular levels. The present study was aimed to identify proteins and biological functions circadian regulated in human keratinocytes. HaCaT keratinocytes were entrained by temperature cycles, and a proteomic study was performed on cell fractions isolated under free running conditions at constant temperature. Bioinformatics analysis revealed that molecular clock entrainment was associated with changes in molecular components regulating cell proliferation, energy metabolism, transcription, translation and redox balance. Nuclear levels of the antioxidant enzyme Peroxiredoxin 2 (PRDX2) were found to oscillate rhythmically over two entire 24h long cycles. Donwregulation of PRDX2 resulted in upregulation of the mitochondrion-specific Peroxiredoxin 3 (PRDX3), all other members of the Peroxiredoxin family remained unaltered. Furthermore, PRDX2 knockdown increased intracellular levels of reactive oxygen species (ROS) and impaired cell cycle progression and proliferation. HaCaT cells transduced with a scramble shRNA were used as control. Our work is the first to show that nuclear levels of PRDX2 display circadian oscillation participating in the regulation of human keratinocytes redox balance.Entities:
Keywords: Circadian rhythm; HaCaT keratinocytes; Metabolic clock; Nano-LC–MS/MS; Peroxiredoxin 2; Proteomic analysis
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Year: 2014 PMID: 24814289 DOI: 10.1016/j.biocel.2014.04.024
Source DB: PubMed Journal: Int J Biochem Cell Biol ISSN: 1357-2725 Impact factor: 5.085