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PITX2 AND PITX1 regulate thyrotroph function and response to hypothyroidism
F Castinetti1, M L Brinkmeier, D F Gordon
1Department of Human Genetics, University of Michigan, Ann Arbor, USA.
Abstract:
Pitx2 is a homeodomain transcription factor required in a dose-dependent manner for the development of multiple organs. Pitx2-null homozygotes (Pitx2(-/-)) have severe pituitary hypoplasia, whereas mice with reduced-function alleles (Pitx2(neo/neo)) exhibit modest hypoplasia and reduction in the developing gonadotroph and Pou1f1 lineages. PITX2 is expressed broadly in Rathke's pouch and the fetal pituitary gland. It predominates in adult thyrotrophs and gonadotrophs, although it is not necessary for gonadotroph function. To test the role of PITX2 in thyrotroph function, we developed thyrotroph-specific cre transgenic mice, Tg(Tshb-cre) with a recombineered Tshb bacterial artificial chromosome that ablates floxed genes in differentiated pituitary thyrotrophs. We used the best Tg(Tshb-Cre) strain to generate thyrotroph-specific Pitx2-deficient offspring, Pitx2(flox/-;)Tg(Tshb-cre). Double immunohistochemistry confirmed Pitx2 deletion. Pitx2(flox/-);Tg(Tshb-cre) mice have a modest weight decrease. The thyroid glands are smaller, although circulating T(4) and TSH levels are in the normal range. The pituitary levels of Pitx1 transcripts are significantly increased, suggesting a compensatory mechanism. Hypothyroidism induced by low-iodine diet and oral propylthiouracil revealed a blunted TSH response in Pitx2(flox/-);Tg(Tshb-cre) mice. Pitx1 transcripts increased significantly in control mice with induced hypothyroidism, but they remained unchanged in Pitx2(flox/-);Tg(Tshb-cre) mice, possibly because Pitx1 levels were already maximally elevated in untreated mutants. These results suggest that PITX2 and PITX1 have overlapping roles in thyrotroph function and response to hypothyroidism. The novel cre transgene that we report will be useful for studying the function of other genes in thyrotrophs.
Insights
Pitx2 is crucial for pituitary development. Thyrotroph-specific Pitx2 deletion in mice revealed overlapping roles with Pitx1 in thyroid hormone regulation and response to hypothyroidism.
Area of Science:
- Endocrinology
- Molecular Biology
- Developmental Biology
Background:
- Pitx2 is a homeodomain transcription factor essential for pituitary and organ development.
- Pitx2 plays a dose-dependent role, with null mutations causing severe pituitary hypoplasia.
- Pitx2 is expressed in the fetal pituitary and adult thyrotrophs and gonadotrophs.
Purpose of the Study:
- To investigate the specific role of Pitx2 in thyrotroph function.
- To develop a thyrotroph-specific Cre transgenic mouse model for gene ablation.
- To elucidate the interplay between Pitx2 and Pitx1 in thyroid hormone regulation.
Main Methods:
- Generation of thyrotroph-specific Pitx2-deficient mice (Pitx2(flox/-);Tg(Tshb-cre)).
- Utilized a novel Tg(Tshb-Cre) bacterial artificial chromosome.
- Confirmed Pitx2 deletion via double immunohistochemistry.
- Assessed thyroid gland size, circulating hormone levels (T4, TSH), and Pitx1 transcript levels.
- Induced hypothyroidism using a low-iodine diet and propylthiouracil.
Main Results:
- Thyrotroph-specific Pitx2 deficiency resulted in smaller thyroid glands but normal circulating T4 and TSH levels.
- Pituitary Pitx1 transcript levels were significantly increased in Pitx2-deficient mice, suggesting compensation.
- Pitx2-deficient mice exhibited a blunted TSH response to induced hypothyroidism.
- Pitx1 upregulation in response to hypothyroidism was abolished in Pitx2-deficient mice.
Conclusions:
- PITX2 and PITX1 have overlapping functions in thyrotroph biology.
- PITX2 is involved in the thyrotroph response to hypothyroidism.
- The developed Tg(Tshb-Cre) mouse line is a valuable tool for studying gene function in thyrotrophs.
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