Fluid shear stress-induced TGF-β/ALK5 signaling in renal epithelial cells is modulated by MEK1/2

Steven J. Kunnen, Wouter N. Leonhard, Cor Semeins, Lukas J. A. C. Hawinkels, Christian Poelma, Peter ten Dijke, Astrid Bakker, Beerend P. Hierck, Dorien J. M. Peters

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Renal tubular epithelial cells are exposed to mechanical forces due to fluid flow shear stress within the lumen of the nephron. These cells respond by activation of mechano-sensors located at the plasma membrane or the primary cilium, having crucial roles in maintenance of cellular homeostasis and signaling. In this paper, we applied fluid shear stress to study TGF-beta signaling in renal epithelial cells with and without expression of the Pkd1-gene, encoding a mechano-sensor mutated in polycystic kidney disease. TGF-beta signaling modulates cell proliferation, differentiation, apoptosis, and fibrotic deposition, cellular programs that are altered in renal cystic epithelia. SMAD2/3-mediated signaling was activated by fluid flow, both in wild-type and Pkd1(-/-) cells. This was characterized by phosphorylation and nuclear accumulation of p-SMAD2/3, as well as altered expression of downstream target genes and epithelial-to-mesenchymal transition markers. This response was still present after cilia ablation. An inhibitor of upstream type-I-receptors, ALK4/ALK5/ALK7, as well as TGF-beta-neutralizing antibodies effectively blocked SMAD2/3 activity. In contrast, an activin-ligand trap was ineffective, indicating that increased autocrine TGF-beta signaling is involved. To study potential involvement of MAPK/ERK signaling, cells were treated with a MEK1/2 inhibitor. Surprisingly, fluid flow-induced expression of most SMAD2/3 targets was further enhanced upon MEK inhibition. We conclude that fluid shear stress induces autocrine TGF-beta/ALK5-induced target gene expression in renal epithelial cells, which is partially restrained by MEK1/2-mediated signaling.
Original languageEnglish
Pages (from-to)2283-2298
Number of pages16
JournalCellular and Molecular Life Sciences
Volume74
Issue number12
DOIs
Publication statusPublished - Jun 2017
Externally publishedYes

Keywords

  • Cilia
  • Erk1/2
  • Fluid flow
  • Mechanotransduction
  • Pkd1(-/-)
  • SMAD2/3 signaling

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