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Alterations in progesterone receptor membrane component 2 (PGRMC2) in the endometrium of macaques afflicted with advanced endometriosis

机译:患有晚期子宫内膜异位症的猕猴子宫内膜中孕酮受体膜成分2(PGRMC2)的变化

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摘要

The hormonally driven expression and cell-specific localization patterns of the progesterone receptor membrane components (PGRMC1 and PGRMC2) in the macaque endometrium during the menstrual cycle are unknown. Additionally, the expression and localization patterns of PGRMC1 and PGRMC2 in the secretory eutopic endometrium of primates afflicted with endometriosis are also unknown. Therefore, we used real-time PCR to quantify transcript expression levels of the PGRMCs in well-defined samples of endometrium collected from artificially cycled macaques during the menstrual cycle, and in the secretory phase endometrium of naturally cycling macaques afflicted with endometriosis. In situ hybridization and immunocytochemistry were used to localize PGRMC1 and PGRMC2 mRNA and protein, respectively. We compared the patterns of expression and localization of the PGRMCs with the expression and localization patterns of nuclear progesterone receptor (PGR). PGRMC1 and PGR were elevated during the proliferative phases of the cycle, and then declined to nearly undetectable levels during the late secretory phase of the cycle. Levels of PGRMC2 were lowest during the proliferative phases of the cycle and then increased markedly during the secretory phases. Strong staining for PGRMC2 was localized to the luminal and glandular epithelia during the secretory phases. When compared with artificially cycled disease-free animals, macaques with endometriosis exhibited no changes in the expression or localization patterns for PGR and PGRMC1 but exhibited strikingly reduced levels of PGRMC2 transcript and altered intracellular staining patterns for the PGRMC2 protein. Collectively, these results suggest that membrane-bound PGRMC2 may provide a pathway of action that could potentially mediate the non-genomic effects of progesterone on the glandular epithelia during the secretory phase of the cycle. Further, reduced levels of membrane-bound PGRMC2 may be associated with the progesterone insensitivity often observed in the endometrium of primates afflicted with endometriosis.
机译:在月经周期内,猕猴子宫内膜中孕激素受体膜成分(PGRMC1和PGRMC2)的激素驱动表达和细胞特异性定位模式​​尚不清楚。此外,PGRMC1和PGRMC2在受子宫内膜异位症困扰的灵长类动物的分泌性异位子宫内膜中的表达和定位模式也是未知的。因此,我们使用实时荧光定量PCR定量从月经周期中人工循环的猕猴收集的子宫内膜的明确定义的子宫内膜样品中,以及患有内异症的自然循环猕猴的分泌期子宫内膜的PGRMCs的转录表达水平。原位杂交和免疫细胞化学分别用于定位PGRMC1和PGRMC2 mRNA和蛋白。我们比较了PGRMCs的表达和定位模式与核孕激素受体(PGR)的表达和定位模式。 PGRMC1和PGR在周期的增殖阶段升高,然后在周期的晚期分泌阶段下降到几乎不可检测的水平。在循环的增殖阶段,PGRMC2的水平最低,然后在分泌阶段显着增加。在分泌阶段,PGRMC2的强染色位于腔和腺上皮。与人工周期无病的动物相比,患有子宫内膜异位的猕猴在PGR和PGRMC1的表达或定位模式上没有变化,但PGRMC2转录本的水平却显着降低,而PGRMC2蛋白的细胞内染色模式却发生了变化。总的来说,这些结果表明膜结合的PGRMC2可能提供作用途径,其可能在周期的分泌阶段介导孕酮对腺体上皮的非基因组作用。此外,与膜结合的PGRMC2水平降低可能与经常在患有子宫内膜异位症的灵长类动物的子宫内膜中观察到的孕激素不敏感性有关。

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