involvement of cyclic guanosine monophosphate-dependent protein kinase i in renal antifibrotic effects of serelaxin

involvement of cyclic guanosine monophosphate-dependent protein kinase i in renal antifibrotic effects of serelaxin

;Veronika Wetzl;Veronika Wetzl;Elisabeth Schinner;Frieder Kees;Franz Hofmann;Lothar Faerber;Lothar Faerber;Jens Schlossmann
chemical research in chinese universities 2016 Vol. 7 pp. -
225
wetzl2016frontiersinvolvement

Abstract

Introduction: Kidney fibrosis has shown to be ameliorated through the involvement of cyclic guanosine monophosphate (cGMP) and its dependent protein kinase I (cGKI). Serelaxin, the recombinant form of human relaxin-II, increases cGMP levels and has shown beneficial effects on kidney function in acute heart failure patients. Antifibrotic properties of serelaxin are supposed to be mediated via relaxin family peptide receptor 1 and subsequently enhanced nitric oxide/ cGMP to inhibit TGF-β signaling. This study examines the involvement of cGKI in the antifibrotic signaling of serelaxin. Methods and Results: Kidney fibrosis was induced by unilateral ureter obstruction in wildtype (WT) and cGKI knock-out (KO) mice. After 7 days, renal antifibrotic effects of serelaxin were assessed. Serelaxin treatment for 7 days significantly increased cGMP in the kidney of WT and cGKI-KO. In WT, renal fibrosis was reduced through decreased accumulation of collagen1A1, total collagen and fibronectin. The profibrotic CTGF as well as myofibroblast differentiation were reduced and matrix metalloproteinases-2 and -9 were positively modulated after treatment. Moreover, Smad2 as well as extracellular signal-regulated kinase 1 (ERK1) phosphorylation were decreased, whereas phosphodiesterase (PDE) 5a phosphorylation was increased. However, these effects were not observed in cGKI-KO. Conclusion: Antifibrotic renal effects of serelaxin are mediated via cGMP/cGKI to inhibit Smad2- and ERK1 -dependent TGF-β signaling and increased PDE5a phosphorylation.

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149254
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10.3389/fphar.2016.00195
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