Overexpression of RET leads to vesicoureteric reflux in mice

O H Yu1, I J Murawski, D B Myburgh

  • 1Department of Pediatrics, Montreal Children's Hospital, McGill University, Montreal, Quebec, Canada.

Insights

Overexpression of RET in mice leads to urinary tract abnormalities, specifically vesicoureteric reflux (VUR). This transgenic model provides insights into VUR development during kidney and urinary tract formation.

Area of Science:

  • Developmental Biology
  • Urology
  • Genetics

Background:

  • RET, a tyrosine kinase receptor, is crucial for kidney and urinary tract development.
  • Abnormal RET signaling can lead to congenital urinary tract malformations.
  • Vesicoureteric reflux (VUR) is a significant urinary tract abnormality with potential for kidney damage.

Purpose of the Study:

  • To investigate the role of RET overexpression in urinary tract development and its association with VUR.
  • To characterize the anatomical and developmental basis for VUR in the HoxB7/Ret transgenic mouse model.
  • To explore the transient nature of VUR during normal urinary tract development.

Main Methods:

  • Utilized HoxB7/Ret transgenic mice with overexpressed RET.
  • Assessed VUR in vitro by injecting methylene blue into bladders of postnatal and embryonic mice.
  • Measured the length of the intravesical ureteral tunnel.
  • Examined the caudal exit point of the ureteric bud from the mesonephric duct.

Main Results:

  • HoxB7/Ret mice exhibited a significantly higher incidence of VUR at postnatal day 1 (30%) compared to wild-type mice (4%).
  • Shorter intravesical ureteral tunnel length was observed in HoxB7/Ret mice, correlating with increased VUR.
  • Abnormal caudal positioning of the ureteric bud in HoxB7/Ret embryos at embryonic day 11 predisposed to VUR.
  • High VUR frequencies were noted in both wild-type and HoxB7/Ret mice at embryonic day 17, suggesting transient reflux during development.

Conclusions:

  • Overexpression of RET in the HoxB7/Ret mouse model delays distal ureter maturation, leading to postnatal VUR.
  • The HoxB7/Ret mouse serves as a valuable model for studying the mechanisms underlying VUR.
  • Transient VUR may be a normal occurrence during urinary tract development before complete ureteral insertion into the bladder.

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