Mice lacking progesterone receptor exhibit pleiotropic reproductive abnormalities.

У мышей, лишённых рецептора прогестерона, выявляются плейотропные нарушения репродуктивной функции.
John P. Lydon, Francesco J. DeMayo, C. Funk, Shaila K. Mani, Arlene R. Hughes, Charles A. Montgomery, G. Shyamala, Orla M. Conneely, Bert W. O’Malley
1995-09-15

PR gene knockoutmouse modelovulation defectsprogesterone receptoruterine hyperplasia
Although progesterone has been recognized as essential for the establishment and maintenance of pregnancy, this steroid hormone has been recently implicated to have a functional role in a number of other reproductive events. The physiological effects of progesterone are mediated by the progesterone receptor (PR), a member of the nuclear receptor superfamily of transcription factors. In most cases the PR is induced by estrogen, implying that many of the in vivo effects attributed to progesterone could also be the result of concomitantly administered estrogen. Therefore, to clearly define those physiological events that are specifically attributable to progesterone in vivo, we have generated a mouse model carrying a null mutation of the PR gene using embryonic stem cell/gene targeting techniques. Male and female embryos homozygous for the PR mutation developed normally to adulthood. However, the adult female PR mutant displayed significant defects in all reproductive tissues. These included an inability to ovulate, uterine hyperplasia and inflammation, severely limited mammary gland development, and an inability to exhibit sexual behavior. Collectively, these results provide direct support for progesterone's role as a pleiotropic coordinator of diverse reproductive events that together ensure species survival.
1
A progesterone receptor null mouse model was generated using embryonic stem cell gene targeting to isolate progesterone-specific physiological effects.
2
Adult female progesterone receptor mutants exhibited widespread reproductive abnormalities, including failure to ovulate, uterine hyperplasia and inflammation, severely impaired mammary gland development, and absent sexual behavior.
3
Male and female mice lacking the progesterone receptor developed normally to adulthood, indicating progesterone signaling is not required for general developmental progression.
4
The findings directly demonstrate that progesterone coordinates multiple reproductive processes essential for successful reproduction.

Adult female mice lacking the progesterone receptor (PR)

Pleiotropic reproductive abnormalities and progesterone-dependent reproductive functions, including ovulation, uterine and mammary gland development, and sexual behavior

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1995-09-15
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John P. Lydon
Francesco J. DeMayo
C. Funk
Shaila K. Mani
Arlene R. Hughes
Charles A. Montgomery
G. Shyamala
Orla M. Conneely
Bert W. O’Malley
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