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The inhibitory effects of calmodulin antagonists on TSH-stimulated thyroid hormone release by mouse thyroid lobes

Endocrinologia Japonica
|February 1, 1987
PubMed

Insights

Calmodulin antagonists, such as W-7 and W-13, inhibit thyroid-stimulating hormone (TSH)-stimulated thyroid hormone release, suggesting calmodulin

Area of Science:

  • Endocrinology
  • Molecular Biology
  • Cell Signaling

Background:

  • Calcium ions are crucial regulators of hormone release from endocrine organs.
  • Calmodulin, a calcium-binding protein, is implicated in hormone release.
  • Thyroid hormone regulation involves complex signaling pathways.

Purpose of the Study:

  • To investigate the role of calmodulin in thyroid-stimulating hormone (TSH)-stimulated thyroid hormone release.
  • To evaluate the effects of specific calmodulin antagonists on TSH-induced thyroxine release in vitro.

Main Methods:

  • Mouse thyroid lobes were incubated in Krebs-Ringer bicarbonate buffer.
  • Free thyroxine (fT4) release was measured using RIA.
  • Thyroidal cAMP and calmodulin content were quantified.
  • Effects of TSH, dibutyryl cAMP (DBC), and calmodulin antagonists (trifluoprazine, prenylamine lactate, W-7, W-13, W-5, W-12) were assessed.

Main Results:

  • TSH and DBC significantly increased fT4 release.
  • Specific calmodulin antagonists (W-7, W-13) and non-specific antagonists (trifluoprazine, prenylamine lactate) inhibited TSH-stimulated fT4 release.
  • Non-specific antagonists (W-5, W-12) did not inhibit TSH-stimulated fT4 release.
  • W-13 inhibited DBC-stimulated fT4 release.
  • TSH did not alter thyroidal calmodulin content despite increasing cAMP levels.

Conclusions:

  • Calmodulin plays a significant role in TSH-stimulated thyroid hormone release.
  • This mechanism operates downstream of cAMP generation.
  • Calmodulin antagonism offers a potential target for modulating thyroid hormone secretion.

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