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TGFβ1 regulates prolactin secretion during postnatal development: gender differences
Alejandra Abeledo-Machado1, Pablo Anibal Pérez2, María Andrea Camilletti1
1Instituto de Biología y Medicina Experimental (IBYME), CONICET, Buenos Aires, Argentina.
Insights
Pituitary transforming growth factor beta 1 (TGFβ1) activation, influenced by dopamine and estradiol, differentially impacts prolactin secretion in male and female rats, explaining early postnatal gender differences.
Area of Science:
- Endocrinology
- Developmental Biology
- Neuroendocrinology
Background:
- Serum prolactin levels rise from birth to puberty, with females exhibiting higher levels early on.
- While hypothalamic factors are known regulators, they don't fully explain observed gender differences in prolactin secretion.
- Intra-pituitary mechanisms are suggested by increased prolactin secretion from isolated lactotrophs in early life.
Purpose of the Study:
- To investigate the role of pituitary transforming growth factor beta 1 (TGFβ1) in regulating prolactin secretion and early postnatal gender differences.
- To evaluate components of the local TGFβ1 system during postnatal development in male and female rats.
- To determine the impact of TGFβ1 activation on prolactin secretion in vivo.
Main Methods:
- Assessed TGFβ1 system components and activation during postnatal development (days 11, 23, 45) in Sprague-Dawley rats.
- Performed in vivo assays to study TGFβ1 activation and its effect on prolactin secretion.
- Examined TGFβ1 target gene expression and phospho-Smad3 immunostaining in pituitaries.
Main Results:
- Female rats at day 11 showed high active TGFβ1, elevated TGFβ1 target gene expression, and phospho-Smad3 staining in lactotrophs.
- Prolactin secretion increase inversely correlated with active TGFβ1 levels exclusively in females.
- Dopamine and estradiol induced TGFβ1 activation in both genders, but only inhibited prolactin secretion in females.
Conclusions:
- TGFβ1 activation is modulated by dopamine and estradiol.
- The inhibitory effect of local TGFβ1 on prolactin secretion is gender-specific.
- This TGFβ1-mediated mechanism contributes to observed gender differences in prolactin secretion during postnatal development.
Abstract:
Serum prolactin levels gradually increase from birth to puberty in both male and female rats, with higher levels observed in female since the first days of life. The increase in lactotroph secretion was attributed to the maturation of prolactin-inhibiting and prolactin-releasing factors; however, those mechanisms could not fully explain the gender differences observed. Prolactin secretion from isolated lactotrophs, in the absence of hypothalamic control, also increases during the first weeks of life, suggesting the involvement of intra-pituitary factors. We postulate that pituitary transforming growth factor beta 1 (TGFβ1) is involved in the regulation of prolactin secretion as well as in the gender differences observed at early postnatal age. Several components of the local TGFβ1 system were evaluated during postnatal development (11, 23, and 45 days) in female and male Sprague-Dawley rats. In vivo assays were performed to study local TGFβ1 activation and its impact on prolactin secretion. At day 11, female pituitaries present high levels of active TGFβ1, concomitant with the highest expression of TGFβ1 target genes and the phospho-Smad3 immunostaining in lactotrophs. The steady increase in prolactin secretion inversely correlates with active TGFβ1 levels only in females. Dopamine and estradiol induce TGFβ1 activation at day 11, in both genders, but its activation induces the inhibition of prolactin secretion only in females. Our findings demonstrate that: (1) TGFβ1 activation is regulated by dopamine and estradiol; (2) the inhibitory regulation of local TGFβ1 on prolactin secretion is gender specific; and (3) this mechanism is responsible, at least partially, for the gender differences observed being relevant during postnatal development.
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