Decidual expression and regulation of fatty acid desaturase 3 during mouse decidualization

Reproduction. 2018 Nov 1;156(5):429-437. doi: 10.1530/REP-18-0145.

Abstract

Decidualization is required for the successful establishment of pregnancy in rodents and primates. Fatty acid desaturase 3 (Fads3) belongs to the fatty acid desaturase family, which is a crucial enzyme for highly unsaturated fatty acid biosynthesis. However, the expression, regulation and function of Fads3 during early pregnancy in mice are still unknown. In this study, we examined Fads3 expression, regulation and function during mouse decidualization. The expression of Fads3 is detected in the subluminal stromal cells at implantation site on day 5 of pregnancy, but not at inter-implantation site and in day 5 pseudopregnant uteri. Compared to delayed implantation, Fads3 is strongly expressed after delayed implantation is activated by estrogen treatment. From days 6 to 8, Fads3 mRNA signals are significantly detected in the decidua. In ovariectomized mice, estrogen significantly stimulates Fads3 expression. However, estrogen has no effect on Fads3 expression in ovariectomized ERα-deficient mice, suggesting that estrogen regulation on Fads3 expression is ERα dependent. When ovariectomized mice were treated with progesterone, Fads3 expression is significantly increased by progesterone. Progesterone stimulation on Fads3 expression is also detected in cultured stromal cells, which is abrogated by RU486 treatment. These data indicate that progesterone upregulation on Fads3 expression is progesterone receptor-dependent. Fads3 knockdown by siRNA reduces in vitro decidualization of mouse stromal cells. Taken together, Fads3 may play an important role during mouse decidualization.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Decidua / enzymology*
  • Embryo Implantation
  • Estrogens / metabolism*
  • Fatty Acid Desaturases / metabolism*
  • Female
  • Mice
  • Pregnancy / metabolism*
  • Progesterone / metabolism*

Substances

  • Estrogens
  • Progesterone
  • Fatty Acid Desaturases