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Role and regulation of cAMP signaling in human trophoblast fusion [R?le de la signalisation AMPc dans la fusion des trophoblastes du placenta humain]

机译:cAMP信号在人滋养细胞融合中的作用和调控[cAMP信号在人胎盘滋养细胞融合中的作用]

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摘要

In the human placenta, mononuclear cytotrophoblasts fuse to form multinucleated syncytia ensuring hormonal production and nutrient exchanges between the maternal and fetal circulation. The syncytial formation is necessary for the maintenance of pregnancy and for fetal growth. The cAMP signaling pathway is the major route to trigger trophoblast fusion and its activation results in phosphorylation of specific intracellular target proteins and assembly of macromolecular protein complexes constituting the fusogenic machinery at the plasma membrane. Specificity in cAMP signaling is ensured by generation of localized pools of cAMP controlled by cAMP phosphodiesterases (PDEs) and by discrete spatial and temporal activation of protein kinase A (PKA) in supramolecular signaling clusters inside the cell organized by A-kinase-anchoring proteins (AKAPs) and by organization of signal termination by protein phosphatases (PPs). Here we summarize the current knowledge of proteins and protein macrocomplexes involved in the spatiotemporal regulation of cAMP signaling that triggers human trophoblast fusion.
机译:在人胎盘中,单核细胞滋养细胞融合形成多核合胞体,从而确保激素的产生以及母体和胎儿循环之间的营养交换。合胞体的形成对于维持妊娠和胎儿生长是必需的。 cAMP信号传导途径是引发滋养细胞融合的主要途径,其活化导致特定细胞内靶蛋白的磷酸化以及构成融合蛋白的质膜上大分子蛋白复合物的组装。通过生成由cAMP磷酸二酯酶(PDE)控制的cAMP局部池,并通过由A激酶锚定的蛋白质( AKAPs)和蛋白磷酸酶(PPs)信号终止的组织。在这里,我们总结了参与触发人类滋养细胞融合的cAMP信号的时空调控所涉及的蛋白质和蛋白质大复合体的当前知识。

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