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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dorsal Hippocampal Actin Polymerization Is Necessary for Activation of G-Protein-Coupled Estrogen Receptor (GPER) to Increase CA1 Dendritic Spine Density and Enhance Memory Consolidation
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Dorsal Hippocampal Actin Polymerization Is Necessary for Activation of G-Protein-Coupled Estrogen Receptor (GPER) to Increase CA1 Dendritic Spine Density and Enhance Memory Consolidation

机译:背海马肌动蛋白聚合是激活G蛋白偶联雌激素受体(GPER)的必需型,以增加CA1树突脊柱密度并增强内存整合

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Activation of the membrane estrogen receptor G-protein-coupled estrogen receptor (GPER) in ovariectomized mice via the GPER agonist G-1 mimics the beneficial effects of 17 beta-estradiol (E-2) on hippocampal CA1 spine density and memory consolidation, yet the cell-signaling mechanisms mediating these effects remain unclear. The present study examined the role of actin polymerization and c-Jun N-terminal kinase (JNK) phosphorylation in mediating effects of dorsal hippocampally infused G-1 on CA1 dendritic spine density and consolidation of object recognition and spatial memories in ovariectomized mice. We first showed that object learning increased apical CA1 spine density in the dorsal hippocampus (DH) within 40 min. We then found that DH infusion of G-1 increased both CA1 spine density and phosphorylation of the actin polymerization regulator cofilin, suggesting that activation of GPER may increase spine morphogenesis through actin polymerization. As with memory consolidation in our previous work (Kim et al., 2016), effects of G-1 on CA1 spine density and cofilin phosphorylation depended on JNK phosphorylation in the DH. Also consistent with our previous findings, E-2-induced cofilin phosphorylation was not dependent on GPER activation. Finally, we found that infusion of the actin polymerization inhibitor, latrunculin A, into the DH prevented G-1 from increasing apical CA1 spine density and enhancing both object recognition and spatial memory consolidation. Collectively, these data demonstrate that GPER-mediated hippocampal spinogenesis and memory consolidation depend on JNK and cofilin signaling, supporting a critical role for actin polymerization in the GPER-induced regulation of hippocampal function in female mice.
机译:经由GPER激动剂G-1模拟物在卵巢切除的小鼠膜雌激素受体的G蛋白偶联雌激素受体(GPER)的活化对海马CA1棘密度和记忆巩固,但17β-雌二醇(E-2)的有益效果调解这些影响的细胞信号机制尚不清楚。本研究检查的作用肌动蛋白聚合和在介导对树突CA1棘密度和对象识别和去势小鼠空间记忆的固结经海马输注G-1背效果的c-Jun N-末端激酶(JNK)的磷酸化。我们首先表明,被摄体学习在背侧海马(DH)在40分钟内增加心尖CA1棘密度。然后我们发现,G-1的DH输注增加了肌动蛋白聚合调节肌动蛋白丝切的两个CA1棘密度化和磷酸化,这表明GPER的活化可增加棘形态通过肌动蛋白聚合。正如我们在以前的工作记忆的巩固(Kim等,2016),在卫生署JNK的磷酸化的CA1棘密度和G-1的效果丝切磷酸化依赖。也与我们以前的研究结果,一致的E-2诱导丝切磷酸化不依赖于GPER激活。最后,我们发现了肌动蛋白聚合抑制剂的输注,latrunculin A,到从提高心尖CA1棘密度和增强二者的对象识别和空间记忆巩固防止G-1的DH。总的来说,这些数据表明,GPER介导的海马树突棘生成和记忆巩固取决于JNK和丝切蛋白信号传导,支撑用于在雌性小鼠海马功能的GPER诱导调控肌动蛋白聚合的关键作用。

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