Mitomycin C modulates the circadian oscillation of clock gene period 2 expression through attenuating the glucocorticoid signaling in mouse fibroblasts

Clock gene regulates the circadian rhythm of various physiological functions. The expression of clock gene has been shown to be attenuated by certain drugs, resulting in a rhythm disorder. Mitomycin C (MMC) is often used in combination with ophthalmic surgery, especially in trabeculectomy, a glaucom...

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Veröffentlicht in:Biochemical and biophysical research communications 2015-11, Vol.467 (1), p.157-163
Hauptverfasser: Kusunose, Naoki, Matsunaga, Naoya, Kimoto, Kenichi, Akamine, Takahiro, Hamamura, Kengo, Koyanagi, Satoru, Ohdo, Shigehiro, Kubota, Toshiaki
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Sprache:eng
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Zusammenfassung:Clock gene regulates the circadian rhythm of various physiological functions. The expression of clock gene has been shown to be attenuated by certain drugs, resulting in a rhythm disorder. Mitomycin C (MMC) is often used in combination with ophthalmic surgery, especially in trabeculectomy, a glaucoma surgical procedure. The purpose of this study was to investigate the influence of MMC on clock gene expression in fibroblasts, the target cells of MMC. Following MMC treatment, Bmal1 mRNA levels was significantly decreased, whereas Dbp, Per1, and Rev-erbα mRNA levels were significantly increased in the mouse fibroblast cell line NIH3T3 cells. Microarray analysis was performed to explore of the gene(s) responsible for MMC-induced alteration of clock gene expression, and identified Nr3c1 gene encoding glucocorticoid receptor (GR) as a candidate. MMC suppressed the induction of Per1 mRNA by dexamethasone (DEX), ligand of GR, in NIH3T3 cells. MMC also modulated the DEX-driven circadian oscillations of Per2::Luciferase bioluminescence in mouse-derived ocular fibroblasts. Our results demonstrate a previously unknown effect of MMC in GR signaling and the circadian clock system. The present findings suggest that MMC combined with trabeculectomy could increase the risk for a local circadian rhythm-disorder at the ocular surface. •We investigated the influence of mitomycin C on molecular clock system in fibroblasts.•Mitomycin C modulated clock genes expression in NIH3T3 cells.•Mitomycin C decreased the expression of glucocorticoid receptor in NIH3T3 cells.•Mitomycin C damped glucocorticoid-driven circadian rhythm of clock gene expression.
ISSN:0006-291X
1090-2104
DOI:10.1016/j.bbrc.2015.09.086