Embryonic lethal effect of expressing a dominant negative mutant human thyroid hormone receptor alpha1 in mice

Kozo Nishiyama1, Satoshi Baba, Tomoko Yamada

  • 1Second Division, Department of Internal Medicine, Hamamatsu University School of Medicine, Hamamatsu, Shizuoka, Japan.

Endocrine Journal
|November 14, 2003
PubMed

Insights

Mutant thyroid hormone receptor alpha1 (TRalpha1) expression can be lethal during mouse development. Studies show dominant negative TRalpha1 mutants impact fetal development, suggesting potential lethality in early embryogenesis.

Area of Science:

  • Endocrinology
  • Genetics
  • Molecular Biology

Background:

  • Resistance to thyroid hormone (RTH) is primarily linked to thyroid hormone receptor (TR) beta gene mutations.
  • TRalpha1 and TRbeta1 mutants show similar in vitro dominant negative effects, but TRalpha mutants are not found in RTH patients.
  • TRalpha mutations might be lethal, compensated by TRbeta, or cause distinct phenotypes.

Purpose of the Study:

  • To investigate the in vivo consequences of expressing dominant negative mutant TRalpha1.
  • To generate transgenic mouse models expressing strong and weak dominant negative TRalpha1 mutants.

Main Methods:

  • Generated transgenic mice expressing betaF451X (severe RTH) and alphaF397X (strong dominant negative TRalpha1).
  • Attempted generation of transgenic mice expressing alphaK389E (weak dominant negative TRalpha1).
  • Utilized specific promoters (elongation factor 1alpha, CMV-beta-actin) to drive transgene expression.

Main Results:

  • Expression of betaF451X resulted in a 2.7% transgenic frequency.
  • Expression of alphaF397X yielded a significantly lower transgenic frequency (0.39%), with limited expression in testes only.
  • Attempts to generate alphaK389E transgenic mice were unsuccessful, even with different promoters.

Conclusions:

  • Dominant negative mutant TRalpha1 expression has critical in vivo functions during mouse fetal development.
  • Expression of dominant negative TRalpha1 in multiple tissues during early embryogenesis may be lethal.