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首页> 外文期刊>Psychoneuroendocrinology: An International Journal >Dissociable involvement of estrogen receptors in perirhinal cortex-mediated object-place memory in male rats
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Dissociable involvement of estrogen receptors in perirhinal cortex-mediated object-place memory in male rats

机译:雌激素受体在肝癌中介导的雌激素受体涉及雌激素受体

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Estrogens and the estrogen receptors (ER) - ERa, ERβ, and the G-protein coupled estrogen receptor (GPER) - are implicated in various forms of hippocampus (HPC)-dependent memory. However, the involvement of ER-related mechanisms in perirhinal cortex (PRh), which is necessary for object memory, remains much less clear. Moreover, there is a paucity of data assessing ER contributions to cognition in males.despite documented sex differences at the cellular level.We hypothesized that estrogens in PRh are important for object memory in males, assessingthe role of 17-βestradiol (E2), ERa, ERji, GPER, and their downstream signaling pathways, in PRh-mediated object-in-place (OiP) memory in gonadally-intact male rats. Intra-PRh administration of E2 enhanced both long-term memory (LTM; 24 h) and short-term memory (STM; 20 min). Conversely, aromatase inhibition with letrozole impaired LTM and STM. The semi-selective ER inhibitor ICI 182780 impaired LTM, but not STM, This effect may be due to inhibition of ERβ, as the ERβagonist DPN, but not ERaagonist PPT, enhanced LTM. GPER was also found to be necessary in PRh, as the antagonist G15 impaired both LTM and STM. Western blot analyses demonstrated that phosphorylation levels of the extracellular signal-related kinase (ERK2 isoform), awell-establisheddownstream signaling pathway activated by estrogens through ERα/ERβ, was elevated in PRh 5 min following OiP learning. We also reportincreased levels of c-Jun N-terminal kinase (JNK; p46 and p54 isoforms) phosphorylation in PRh 5 min following learning,consistent with recent research linking GPER activation and JNK signaling in the HPC. This effect was abolished by intra-PRh administration of G15, but not letrozole, suggesting that JNK signaling is triggered via GPER activation during OiP learning, and is possibly E2-independent, similar to findings in the HPC. These results, therefore, reveal interesting dissociations between the roles of various ERs, possibly involving both estrogen-dependent and independent mechanisms, in PRh-mediated object-place learning in male rats.
机译:雌激素和雌激素受体(ER) - 时代,ERβ和G-蛋白偶联雌激素受体(GPER)含有各种形式的海马(HPC)依赖性记忆。然而,对物体记忆所需的终极皮质(PRH)中ER相​​关机制的涉及仍然不太清楚。此外,还有缺乏数据评估对男性认知的贡献的数据。群体在细胞水平上的记录性差异。我们假设PRH的雌激素对男性的对象记忆很重要,评估17-β-Trodiol(E2),ERA的作用,Erji,GPer和他们的下游信号通路,在PRH介导的对象(OIP)内存中在Gonady-Intact雄性大鼠中。 e2的PRH intra-PRH施用增强了长期记忆(LTM; 24小时)和短期记忆(STM; 20分钟)。相反,用letrozole损害LTM和STM的芳香酶抑制。半选择性ER抑制剂ICI 182780损害LTM,但不是STM,这种效果可能是由于ERβ的抑制,作为ERβ代表DPN,但不是代购PPT,增强了LTM。由于拮抗剂G15损害LTM和STM,因此也发现GPER也被发现是必要的。 Western印迹分析证明,通过ERα/ERβ激活的细胞外信号相关激酶(ERK2同种型),雌激素的磷酸化水平,雌激素激活的Ass-Erβ,在OIP学习后的PRH 5分钟内升高。在学习之后,我们还报告了PRH 5分钟的C-Jun N-末端激酶(JNK; P46和P54同种型)磷酸化的水平。与HPC中的最近的研究联系,一致。通过G15的PRH局部施用而不是Letrozole废除了这种效果,表明在OIP学习期间通过GPER激活触发JNK信令,并且可能与HPC中的结果类似。因此,这些结果揭示了各种人的角色之间的有趣解剖,可能涉及雌激素依赖性和独立机制,在雄性大鼠的PRH介导的对象学习中。

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