Endogenous Notch Signaling in Adult Kidneys Maintains Segment-Specific Epithelial Cell Types of the Distal Tubules and Collecting Ducts to Ensure Water Homeostasis

J Am Soc Nephrol. 2019 Jan;30(1):110-126. doi: 10.1681/ASN.2018040440. Epub 2018 Dec 4.

Abstract

Background: Notch signaling is required during kidney development for nephron formation and principal cell fate selection within the collecting ducts. Whether Notch signaling is required in the adult kidney to maintain epithelial diversity, or whether its loss can trigger principal cell transdifferentiation (which could explain acquired diabetes insipidus in patients receiving lithium) is unclear.

Methods: To investigate whether loss of Notch signaling can trigger principal cells to lose their identity, we genetically inactivated Notch1 and Notch2, inactivated the Notch signaling target Hes1, or induced expression of a Notch signaling inhibitor in all of the nephron segments and collecting ducts in mice after kidney development. We examined renal function and cell type composition of control littermates and mice with conditional Notch signaling inactivation in adult renal epithelia. In addition, we traced the fate of genetically labeled adult kidney collecting duct principal cells after Hes1 inactivation or lithium treatment.

Results: Notch signaling was required for maintenance of Aqp2-expressing cells in distal nephron and collecting duct segments in adult kidneys. Fate tracing revealed mature principal cells in the inner stripe of the outer medulla converted to intercalated cells after genetic inactivation of Hes1 and, to a lesser extent, lithium treatment. Hes1 ensured repression of Foxi1 to prevent the intercalated cell program from turning on in mature Aqp2+ cell types.

Conclusions: Notch signaling viaHes1 regulates maintenance of mature renal epithelial cell states. Loss of Notch signaling or use of lithium can trigger transdifferentiation of mature principal cells to intercalated cells in adult kidneys.

Keywords: Notch Signaling; collecting duct; intercalated; ionocyte; principal; transdifferentiation.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • Aquaporin 2 / metabolism*
  • Cell Differentiation
  • Cells, Cultured
  • Epithelial Cells / cytology
  • Epithelial Cells / physiology
  • Homeostasis / genetics
  • Kidney / metabolism
  • Kidney Tubules, Collecting / cytology
  • Kidney Tubules, Collecting / metabolism
  • Lithium / pharmacology*
  • Mice
  • Receptor, Notch1 / drug effects
  • Receptor, Notch1 / genetics*
  • Receptor, Notch2 / drug effects
  • Receptor, Notch2 / genetics*
  • Signal Transduction / genetics
  • Water-Electrolyte Balance / genetics*
  • Water-Electrolyte Balance / physiology

Substances

  • Aquaporin 2
  • Receptor, Notch1
  • Receptor, Notch2
  • Lithium