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      Brain natriuretic peptide mitigates TIMP2 induction and reinstates extracellular matrix catabolic activity via GSK3β inhibition in glomerular podocytes exposed to a profibrogenic milieu

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          Abstract

          Brain natriuretic peptide (BNP) has a demonstrable anti-fibrotic effect on diverse organ systems, including the kidney. To understand the molecular mechanism underlying this renoprotective effect, the efficacy of BNP was examined in an in vitro model of glomerular sclerosis by exposing glomerular podocytes to transforming growth factor (TGF)β1-containing media that recapitulates the profibrogenic milieu in chronic glomerular disease. BNP mitigates extracellular matrix (ECM) accumulation in TGFβ1-treated podocytes, as evidenced by Sirius red assay and staining, concomitant with a restoration of the ECM catabolizing activity, as assessed by pulse chase analysis. This effect was in parallel with a mitigating effect on TGFβ1-elicited overexpression of tissue inhibitor of metalloproteinases (TIMP)2, a key inhibitor of a multitude of ECM-degrading metalloproteinases. Mechanistically, glycogen synthase kinase (GSK)3β, a key player in pathogenesis of podocyte injury and glomerulopathies, seems to be involved. BNP treatment considerably induced GSK3β inhibition, marked by inhibitory phosphorylation at the serine 9 residue, and this significantly correlated with the abrogated TIMP2 induction in TGFβ1-injured podocytes. Moreover, genetic knockout of GSK3β in podocytes is sufficient to attenuate the TGFβ1 induced TIMP2 expression and ECM deposition, reminiscent of the effect of BNP. Conversely, ectopic expression of a nonphosphorylatable GSK3β mutant abolished the inhibitory effect of BNP on TGFβ1-elicited TIMP2 overexpression and ECM accumulation, signifying an essential role of GSK3β inhibition in mediating the effect of BNP. Collectively, BNP possesses an anti-fibrotic activity in glomerular epithelial cells. This finding, if validated in vivo, may open a new avenue to the treatment of glomerulosclerosis.

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          Author and article information

          Journal
          Am J Transl Res
          Am J Transl Res
          ajtr
          American Journal of Translational Research
          e-Century Publishing Corporation
          1943-8141
          2019
          15 February 2019
          : 11
          : 2
          : 964-973
          Affiliations
          [1 ] Department of Hemopurification Center, The First Affiliated Hospital, and College of Clinical Medicine of Henan University of Science and Technology Luoyang, China
          [2 ] Institute of Nephrology, Blood Purification Center, The First Affiliated Hospital of Zhengzhou University Zhengzhou, China
          [3 ] Division of Nephrology, Department of Medicine, University of Toledo College of Medicine Toledo, Ohio, USA
          Author notes
          Address correspondence to: Dr. Pei Wang, Blood Purification Center, The First Affiliated Hospital of Zhengzhou University, 1 East Jianshe Road, Zhengzhou 450052, China. E-mail: wangpei146@ 123456hotmail.com ; Dr. Rujun Gong, Division of Nephrology, Department of Medicine, University of Toledo College of Medicine, 3000 Arlington Avenue, Toledo, Ohio 43614, USA. E-mail: Rujun.Gong@ 123456UToledo.edu
          Article
          PMC6413260 PMC6413260 6413260
          6413260
          30899395
          e133eb03-9c6c-4f94-9b72-a55f2a38a58e
          AJTR Copyright © 2019
          History
          : 23 October 2018
          : 03 December 2018
          Categories
          Original Article

          cell culture,extra cellular matrix,glycogen synthase kinase 3β,podocytes,transforming growth factor β1,Brain natriuretic peptide,fibrosis,glomerular disease

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