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Divergent dimerization properties of mutant beta 1 thyroid hormone receptors are associated with different dominant

E Hao1, J B Menke, A M Smith

  • 1Department of Medicine, East Carolina University School of Medicine, Greenville, North Carolina 27858.

Insights

Mutations in the thyroid hormone receptor gene cause resistance syndromes. The S receptor enhances homodimerization, while the G-H receptor impairs it, affecting dominant negative activity.

Area of Science:

  • Molecular endocrinology
  • Genetics
  • Cell biology

Background:

  • Syndromes of resistance to thyroid hormones (RTH) stem from mutations in the c-erbA beta gene.
  • Specific mutations, like THR332 deletion (S receptor) and ARG311HIS (G-H receptor), yield distinct dominant-negative protein phenotypes.
  • Understanding these mutations' impact on receptor function is crucial for RTH research.

Purpose of the Study:

  • To investigate the molecular mechanisms underlying differential receptor phenotypes in RTH.
  • To compare the dimerization activities of wild-type (WT), S, and G-H thyroid hormone receptors.
  • To elucidate how specific mutations affect receptor binding to thyroid hormone response elements.

Main Methods:

  • Electrophoretic mobility shift assays (EMSA) were used to analyze receptor-DNA binding.
  • Synthesis of WT, S, and G-H human c-erbA beta 1 receptors in reticulocyte lysate.
  • Testing receptor interactions with thyroid hormone response elements (DR+4, IR+5, IR) and thyroid hormone receptor auxiliary protein (TRAP) factors.

Main Results:

  • The G-H receptor exhibited significantly impaired homodimerization, forming predominantly monomeric complexes.
  • The S receptor showed markedly augmented homodimerization compared to WT and G-H receptors.
  • Both S and G-H receptors displayed altered heterodimerization with TRAP factors, influencing their DNA-binding capabilities.
  • Thyroid hormone differentially affected WT and S receptor homodimeric complex formation on DR+4 elements.

Conclusions:

  • The ARG311HIS mutation severely disrupts c-erbA beta 1 receptor homodimerization and, to a lesser extent, heterodimerization.
  • The THR332 deletion mutation significantly enhances c-erbA beta 1 receptor homodimerization.
  • Divergent effects on receptor dimerization activities correlate with varying levels of dominant-negative function in human RTH syndromes.

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