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Mitochondrial sub-cellular localization of cAMP-specific phosphodiesterase 8A in ovarian follicular cells

机译:卵巢卵泡细胞中CAMP特异性磷酸二酯酶8a的线粒体亚细胞定位

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Cyclic adenosine monophosphate (cAMP) is a ubiquitous secondary messenger that plays a central role in endocrine tissue function, particularly in the synthesis of steroid hormones. The intracellular concentration of cAMP is regulated through its synthesis by cyclases and its degradation by cyclic nucleotide phosphodiesterases (PDEs). Although the expression and activity of PDEs impact the specificity and the amplitude of the cAMP response, it is becoming increasingly clear that the sub-cellular localization of PDE emphasizes the spatial regulation of the cell signalling processes that are essential for normal cellular function. We first examined the expression of PDE8A in porcine ovarian cells. PDE8A is expressed in granulosa cells, cumulus cells and oocytes. Second, we assessed the mitochondrial sub-cellular localization of PDE8A. Using western blotting with isolated mitochondrial fractions from granulosa cells and cumulus-oocyte complexes revealed immuno-reactive bands. PDE assay of isolated mitochondrial fractions from granulosa cells measured specific PDE8 cAMP-PDE activity as PF-04957325-sensitive. The immune-reactive PDE8A signal and MitoTracker labelling co-localized supporting mitochondrial sub-cellular localization of PDE8A, which was confirmed using immuno-electron microscopy. Finally, the effect of PDE8 on progesterone production was assessed during the in-vitro maturation of cumulus-oocyte complexes. Using PF-04957325, we observed a significant increase (P??0.05) in progesterone secretion with follicle-stimulating hormone (FSH). Active mitochondria stained with MitoTracker orange CMTMRos were also increased by the specific PDE8 inhibitor supporting its functional regulation. In conclusion, we propose the occurrence of mitochondrial sub-cellular localization of PDE8A in porcine granulosa cells and cumulus cells. This suggests that there is potential for new strategies for ovarian stimulation and artificial reproductive technologies, as well as the possibility for using new media to improve the quality of oocytes.
机译:环状腺苷一磷酸(营地)是一种普遍存在的次生信使,其在内分泌组织功能中起着核心作用,特别是在组合类固醇激素的合成中。通过通过环酶的合成来调节CAMP的细胞内浓度及其通过环状核苷酸磷酸酯酶(PDE)的降解。尽管PDE的表达和活性会影响营地响应的特异性和幅度,但越来越明显,PDE的子蜂窝定位强调了对正常细胞功能至关重要的细胞信号传导过程的空间调节。我们首先检查了Prcine卵巢细胞中PDE8A的表达。 PDE8A在颗粒细胞,积积菌细胞和卵母细胞中表达。其次,我们评估了PDE8A的线粒体亚细胞定位。使用蛋白质印迹与来自颗粒细胞和积云复合物的分离的线粒体级分,揭示了免疫活性带。来自颗粒细胞分离的线粒体级分的PDE测定法测定特异性PDE8 CAMP-PDE活性作为PF-04957325敏感性。使用免疫电子显微镜证实,免疫反应性PDE8A信号和标记标记PDE8A的线粒体副蜂窝定位。最后,在体外卵母细胞配合物的体外成熟期间评估PDE8对孕酮产生的影响。使用PF-04957325,我们观察到卵泡刺激激素(FSH)的孕激素分泌中显着增加(P?0.05)。通过支撑其功能调节的特定PDE8抑制剂也增加了用MitoTracker橙色CMTMTMRO染色的活性线粒体。总之,我们提出了猪颗粒细胞和积云细胞中PDE8a的线粒体亚细胞定位的发生。这表明卵巢刺激和人工生殖技术的新策略以及使用新媒体提高卵母细胞质量的可能性。

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