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Rethinking progesterone regulation of female reproductive cyclicity

机译:对孕激素调节女性生殖周期的反思

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摘要

The progesterone receptor (PGR) is a ligand-activated transcription factor with key roles in the regulation of female fertility. Much has been learned of the actions of PGR signaling through the use of pharmacologic inhibitors and genetic manipulation, using mouse mutagenesis. Characterization of rats with a null mutation at the Pgr locus has forced a reexamination of the role of progesterone in the regulation of the female reproductive cycle. We generated two Pgr mutant rat models, using genome editing. In both cases, deletions yielded a null mutation resulting from a nonsense frame-shift and the emergence of a stop codon. Similar to Pgr null mice, Pgr null rats were infertile because of deficits in sexual behavior, ovulation, and uterine endometrial differentiation. However, in contrast to the reported phenotype of female mice with disruptions in Pgr signaling, Pgr null female rats exhibit robust estrous cycles. Cyclic changes in vaginal cytology, uterine histology, serum hormone levels, and wheel running activity were evident in Pgr null female rats, similar to wild-type controls. Furthermore, exogenous progesterone treatment inhibited estrous cycles in wild-type female rats but not in Pgr-null female rats. As previously reported, pharmacologic antagonism supports a role for PGR signaling in the regulation of the ovulatory gonadotropin surge, a result at variance with experimentation using genetic ablation of PGR signaling. To conclude, our findings in the Pgr null rat challenge current assumptions and prompt a reevaluation of the hormonal control of reproductive cyclicity.
机译:孕酮受体(PGR)是配体激活的转录因子,在调节女性生育力中起关键作用。通过使用鼠标诱变,通过使用药理抑制剂和基因操作,PGR信号的作用已广为人知。在Pgr位点具有无效突变的大鼠的特征已迫使重新检查孕酮在调节女性生殖周期中的作用。我们使用基因组编辑生成了两个Pgr突变大鼠模型。在这两种情况下,缺失均产生无义突变,这是由无意义的移码和终止密码子的出现引起的。与无Pgr的小鼠相似,无Pgr的大鼠由于性行为,排卵和子宫内膜分化的缺陷而不能生育。然而,与报道的具有Pgr信号传导中断的雌性小鼠表型相反,无Pgr的雌性大鼠表现出强大的发情周期。与野生型对照相似,在无雌激素的雌性大鼠中,阴道细胞学,子宫组织学,血清激素水平和车轮运转活动的循环变化是明显的。此外,外源孕激素治疗可抑制野生型雌性大鼠的发情周期,而对无Pgr雌性大鼠则无此作用。如先前报道的那样,药理拮抗作用支持PGR信号在排卵促性腺激素激增的调节中的作用,这与使用PGR信号基因消融的实验不同。总而言之,我们在Pgr null rat中的发现挑战了当前的假设,并促使人们重新评估生殖周期的激素控制。

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