The (pro)renin receptor mediates constitutive PLZF-independent pro-proliferative effects which are inhibited by bafilomycin but not genistein

Int J Mol Med. 2014 Apr;33(4):795-808. doi: 10.3892/ijmm.2014.1624. Epub 2014 Jan 14.

Abstract

The (pro)renin receptor [(P)RR] is crucial for cardio-renal pathophysiology. The distinct molecular mechanisms of this receptor are still incompletely understood. The (P)RR is able to interact with different signalling proteins such as promyelocytic leukemia zinc finger protein (PLZF) and Wnt receptors. Moreover, domains of the (P)RR are essential for V-ATPase activity. V-ATPase- and Wnt-mediated effects imply constitutive, i.e., (pro)renin-independent functions of the (P)RR. Regarding ligand-dependent (P)RR signalling, the role of prorenin glycosylation is currently unknown. Therefore, the aim of this study was to analyse the contribution of constitutive (P)RR activity to its cellular effects and the relevance of prorenin glycosylation on its ligand activity. We were able to demonstrate that high glucose induces (P)RR signal transduction whereas deglycosylation of prorenin abolishes its intrinsic activity in neuronal and epithelial cells. By using siRNA against (P)RR or PLZF as well as the PLZF translocation blocker genistein and the specific V-ATPase inhibitor bafilomycin, we were able to dissect three distinct sub-pathways downstream of the (P)RR. The V-ATPase function is ligand-independently associated with strong pro-proliferative effects whereas prorenin causes moderate proliferation in vitro. In contrast, PLZF per se [i.e., in the absence of (pro)renin] does not interfere with cell number.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Count
  • Cell Line, Tumor
  • Cell Proliferation / drug effects
  • Genistein / pharmacology*
  • Glucose / pharmacology
  • Glycosylation / drug effects
  • HEK293 Cells
  • Humans
  • Hydrogen-Ion Concentration / drug effects
  • Kruppel-Like Transcription Factors / genetics
  • Kruppel-Like Transcription Factors / metabolism*
  • Lysosomes / drug effects
  • Lysosomes / metabolism
  • Macrolides / pharmacology*
  • Mice
  • Models, Biological
  • Peroxisomes / drug effects
  • Peroxisomes / metabolism
  • Promoter Regions, Genetic / genetics
  • Promyelocytic Leukemia Zinc Finger Protein
  • Protein Isoforms / genetics
  • Protein Isoforms / metabolism
  • Protein Transport / drug effects
  • RNA, Messenger / genetics
  • RNA, Messenger / metabolism
  • RNA, Small Interfering
  • Receptors, Cell Surface / genetics
  • Receptors, Cell Surface / metabolism*
  • Signal Transduction / drug effects
  • Vacuolar Proton-Translocating ATPases / genetics
  • Vacuolar Proton-Translocating ATPases / metabolism*

Substances

  • ATP6AP2 protein, human
  • Kruppel-Like Transcription Factors
  • Macrolides
  • Promyelocytic Leukemia Zinc Finger Protein
  • Protein Isoforms
  • RNA, Messenger
  • RNA, Small Interfering
  • Receptors, Cell Surface
  • bafilomycin A
  • ZBTB16 protein, human
  • Genistein
  • Vacuolar Proton-Translocating ATPases
  • Glucose