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The Calcium-Sensing Receptor and the Reproductive System

机译:钙敏感受体与生殖系统

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Active placental transport of maternal serum calcium (Ca~(2+)) to the offspring is pivotal for proper development of the fetal skeleton as well as various organ systems. Moreover, extracellular Ca~(2+)levels impact on distinct processes in mammalian reproduction. The calcium-sensing receptor (CaSR) translates changes in extracellular Ca~(2+)-concentrations into cellular reactions. This review summarizes current knowledge on the expression of CaSR and its putative functions in reproductive organs. CaSR was detected in placental cells mediating materno-fetal Ca~(2+)-transport such as the murine intraplacental yolk sac (IPYS) and the human syncytiotrophoblast. As shown in casr knock-out mice, ablation of CaSR downregulates transplacental Ca~(2+)-transport. Receptor expression was reported in human and rat ovarian surface epithelial (ROSE) cells, where CaSR activation stimulates cell proliferation. In follicles of various species a role of CaSR activation in oocyte maturation was suggested. Based on studies in avian follicles, the activation of CaSR expressed in granulosa cells may support the survival of follicles after their selection. CaSR in rat and equine sperms was functionally linked to sperm motility and sperm capacitation. Implantation involves complex interactions between the blastocyst and the uterine epithelium. During early pregnancy, CaSR expression at the implantation site as well as in decidual cells indicates that CaSR is important for blastocyst implantation and decidualization in the rat uterus. Localization of CaSR in human extravillous cytotrophoblasts suggests a role of CaSR in placentation. Overall, evidence for functional involvement of CaSR in physiologic mammalian reproductive processes exists. Moreover, several studies reported altered expression of CaSR in cells of reproductive tissues under pathologic conditions. However, in many tissues we still lack knowledge on physiological ligands activating CaSR, CaSR-linked G-proteins, activated intracellular signaling pathway, and functional relevance of CaSR activation. Clearly, more work is required in the future to decode the complex physiologic and pathophysiologic relationship of CaSR and the mammalian reproductive system.
机译:母体血清钙(Ca〜(2+))向后代的主动胎盘运输对于胎儿骨骼以及各种器官系统的正常发育至关重要。此外,细胞外Ca〜(2+)水平影响哺乳动物繁殖的不同过程。钙敏感受体(CaSR)将细胞外Ca〜(2+)浓度的变化转化为细胞反应。这篇综述总结了有关CaSR在生殖器官中的表达及其推定功能的最新知识。 CaSR在介导胎-胎Ca〜(2+)转运的胎盘细胞如鼠胎盘内卵黄囊(IPYS)和人合体滋养层细胞中检测到。如在casr基因敲除小鼠中所示,CaSR的消融下调了胎盘Ca〜(2 +)-转运。据报道,在人和大鼠卵巢表面上皮(ROSE)细胞中受体表达,其中CaSR激活刺激细胞增殖。建议在各种物种的卵泡中CaSR激活在卵母细胞成熟中的作用。根据对鸟类卵泡的研究,颗粒细胞中表达的CaSR的激活可能支持卵泡选择后的存活。大鼠和马精子中的CaSR在功能上与精子运动和精子获能有关。植入涉及胚泡和子宫上皮之间的复杂相互作用。在怀孕早期,CaSR在植入位点以及蜕膜细胞中的表达表明CaSR对于大鼠子宫内胚泡的植入和蜕膜的形成很重要。 CaSR在人类绒毛外滋养细胞中的定位表明CaSR在胎盘形成中的作用。总体而言,存在CaSR功能参与生理性哺乳动物生殖过程的证据。此外,一些研究报道了病理条件下生殖组织细胞中CaSR表达的改变。但是,在许多组织中,我们仍然缺乏有关激活CaSR的生理配体,CaSR连接的G蛋白,激活的细胞内信号传导途径以及CaSR激活的功能相关性的知识。显然,将来需要更多的工作来解释CaSR与哺乳动物生殖系统之间复杂的生理和病理生理关系。

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