Generation of Conditional KO Mice of CCN2 and Its Function in the Kidney

Hideki Yokoi1, Naohiro Toda2,3, Masashi Mukoyama3

  • 1Department of Nephrology, Graduate School of Medicine, Kyoto University, Kyoto, Japan. yokoih@kuhp.kyoto-u.ac.jp.

Insights

Cellular communication network factor 2 (CCN2) drives kidney fibrosis. New conditional knockout mouse models enable studying CCN2

Area of Science:

  • Nephrology
  • Molecular Biology
  • Genetics

Background:

  • Cellular communication network factor 2 (CCN2) is implicated in renal fibrosis progression.
  • Direct in vivo studies of CCN2 are limited by perinatal lethality in knockout models.
  • Conditional knockout technology offers a solution for studying gene function in specific cell types or time points.

Purpose of the Study:

  • To develop and validate CCN2-floxed and inducible conditional knockout mouse models.
  • To establish methodologies for assessing CCN2's role in adult kidney disease models.
  • To investigate the functional significance of CCN2 in the pathogenesis of renal fibrosis.

Main Methods:

  • Construction of CCN2-floxed mouse lines.
  • Development of inducible systemic CCN2 conditional knockout mice.
  • Application of unilateral ureteral obstruction (UUO) model for tubulointerstitial fibrosis.
  • Induction of anti-glomerular basement membrane (anti-GBM) antibody glomerulonephritis model.

Main Results:

  • Successfully generated CCN2-floxed and inducible conditional knockout mice.
  • Established protocols for UUO and anti-GBM glomerulonephritis induction in these models.
  • These models allow for the targeted deletion of CCN2 in adult mice to study its role in kidney disease.

Conclusions:

  • Conditional knockout technology overcomes limitations of traditional knockout models for studying CCN2 in vivo.
  • The developed mouse models and disease induction methods are crucial for dissecting CCN2's function in renal fibrosis.
  • These tools pave the way for understanding CCN2 as a therapeutic target in kidney diseases.