Targeted intestinal deletion of Rho guanine nucleotide exchange factor 7, βPIX, impairs enterocyte proliferation,

Kunrong Cheng1,2, Shannon M Larabee3, Mazen Tolaymat2

  • 1Veterans Affairs Maryland Healthcare System, Baltimore, Maryland.

Insights

BetaPix, a RhoGEF protein, is essential for maintaining intestinal epithelial homeostasis and promoting cell proliferation. Its deficiency impairs villus development and reduces resistance to injury.

Area of Science:

  • Gastroenterology
  • Cell Biology
  • Molecular Biology

Background:

  • Rho guanine nucleotide exchange factors (RhoGEFs) regulate Rho GTPase activity, impacting cytoskeletal dynamics and cell adhesion.
  • BetaPix (encoded by ARHGEF7) is a RhoGEF implicated in colon cancer cell proliferation and intestinal epithelial restitution.

Purpose of the Study:

  • To investigate the role of BetaPix in maintaining intestinal epithelial homeostasis.
  • To determine the effects of BetaPix deficiency on intestinal development, injury response, and barrier function.

Main Methods:

  • Examined BetaPix distribution in human and murine intestines via immunostaining.
  • Created and analyzed intestinal epithelial-selective BetaPix knockout mice (Arhgef7 CKO).
  • Assessed intestinal epithelial and enteroid development, dextran sodium sulfate-induced injury, and gut permeability.

Main Results:

  • BetaPix is diffusely expressed in the cytoplasm and moderately in the nucleus of enterocytes.
  • Arhgef7 CKO mice exhibited reduced villus height, fewer goblet cells, and impaired crypt cell proliferation (Ki67 staining).
  • BetaPix-deficient enteroids failed to survive, with partial rescue by a Rho kinase inhibitor; CKO mice showed increased susceptibility to DSS-induced injury and barrier dysfunction.

Conclusions:

  • BetaPix is crucial for normal enterocyte development, intestinal epithelial homeostasis, and mucosal integrity.
  • Rho kinase signaling mediates developmental arrest in BetaPix-deficient enteroids.
  • ARHGEF7/BetaPix plays a vital role in intestinal physiology and resistance to toxic insults.