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Connexin-32 acts as a downregulator of growth of thyroid gland
Gaëlle Prost1, Françoise Bernier-Valentin, Yvonne Munari-Silem
1INSERM UMR 664, Faculté de Médecine Laennec, 7 rue Guillaume Paradin, Lyon Cedex 08, France.
Abstract:
Thyroid epithelial cells communicate through gap junctions formed from connexin (Cx)32, Cx43, and Cx26. We previously reported that reexpression of Cx32 in "gap junction-deficient" FRTL-5 and FRT thyroid cell lines induces a reduction of cell proliferation rate and an activation of expression of cell differentiation. The present study aimed at determining whether Cx32 could exert similar regulatory functions in vivo. We investigated morphological and functional characteristics of thyroid gland of Cx32-deficient mice (Cx32-KO), mice overexpressing Cx32 selectively in the thyroid (Cx32-T+), and Cx32-KO mice with a thyroid-selective Cx32 complementation obtained by crossing Cx32-KO and Cx32-T+ mice. In basal conditions, Cx32-KO mice did not present any detectable thyroid alteration, whereas Cx32-T+ mice showed a thyroid hypoplasia (20% reduction) associated with a slight increase in thyroid functional activity. Under thyrotropin stimulation (following sodium perchlorate treatment), Cx32-KO mice developed a larger goiter (< or =65% increase) than wild-type littermates, whereas Cx32-T+ mice exhibited the same thyroid hyperplasia as wild-type mice. Restoration of Cx32 expression in the thyroid of Cx32-KO mice abrogated the thyroid growth increase related to Cx32 deficiency. All together, these data show that Cx32 acts as a downregulator of growth of thyroid gland; an excess of Cx32 limits growth of thyroid cells in the basal state, whereas a lack of Cx32 confers an additional growth potential to TSH-stimulated thyroid cells.
Insights
Connexin 32 (Cx32) regulates thyroid growth. Lack of Cx32 enhances thyroid cell growth, while excess Cx32 limits it, impacting thyroid gland size and function.
Area of Science:
- Endocrinology
- Cell Biology
- Molecular Biology
Background:
- Thyroid epithelial cells utilize gap junctions, formed by connexins (Cx) like Cx32, Cx43, and Cx26, for intercellular communication.
- Previous studies indicated Cx32 re-expression in thyroid cell lines reduces proliferation and enhances differentiation.
- The in vivo role of Cx32 in thyroid regulation remained to be determined.
Purpose of the Study:
- To investigate the in vivo function of Cx32 in regulating thyroid gland morphology and function.
- To determine the impact of Cx32 deficiency and overexpression on thyroid growth under basal and stimulated conditions.
Main Methods:
- Utilized genetically modified mouse models: Cx32-deficient (Cx32-KO), thyroid-specific Cx32-overexpressing (Cx32-T+), and rescued Cx32-KO mice.
- Assessed thyroid gland morphology and function under basal conditions and after thyrotropin stimulation (via sodium perchlorate treatment).
Main Results:
- Cx32-KO mice showed no basal thyroid alterations, but developed larger goiters (up to 65% increase) under stimulation compared to wild-type.
- Cx32-T+ mice exhibited thyroid hypoplasia (20% reduction) and normal hyperplasia response to stimulation.
- Restoring Cx32 in Cx32-KO mice normalized the thyroid growth response.
Conclusions:
- Cx32 acts as a negative regulator of thyroid gland growth in vivo.
- Excess Cx32 limits thyroid cell growth basally, while its absence promotes TSH-stimulated thyroid growth.
- Cx32 plays a critical role in maintaining thyroid homeostasis and controlling thyroid hyperplasia.
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