MAP3K4 kinase activity dependent control of mouse gonadal sex determination

Noha A M Shendy1,2, Amber L Broadhurst1, Kristin Shoemaker1

  • 1Department of Biological Sciences, University of Memphis, Memphis, TN, USA.

Insights

The kinase activity of MAP3K4 is essential for male sex determination in mice. Loss of this activity leads to gonadal sex reversal in XY mice, impacting Sry expression and reproductive development.

Area of Science:

  • Genetics
  • Developmental Biology
  • Reproductive Biology

Background:

  • Sex determination involves bipotential gonads differentiating into testes or ovaries.
  • The Map3k4 gene plays a known role in male gonadal development.
  • The necessity of MAP3K4's kinase activity in this process remained uninvestigated.

Purpose of the Study:

  • To investigate the role of MAP3K4 kinase activity in male gonadal sex determination.
  • To determine if kinase-inactive MAP3K4 can support normal male development.

Main Methods:

  • Generation of mice with a kinase-inactive MAP3K4 mutation (Map3k4KI/KI).
  • Analysis of gonadal sex, Sry expression, and reproductive phenotypes in Map3k4KI/KI mice.
  • Assessment of mating behavior and fertility in affected adults.

Main Results:

  • Kinase-inactive MAP3K4 (Map3k4KI/KI) mice exhibit a female-biased sex ratio and gonadal sex reversal in XY individuals.
  • Loss of MAP3K4 kinase activity leads to reduced Sry expression at embryonic day 11.5.
  • Map3k4KI/KI adults display a range of ovarian abnormalities and reduced fertility.

Conclusions:

  • MAP3K4 kinase activity is indispensable for male gonadal sex determination.
  • Disruption of MAP3K4 kinase function results in embryonic male-to-female sex reversal.
  • These findings highlight the critical role of enzymatic activity in developmental signaling pathways.