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新型雌激素受体调节剂STX对β-淀粉样蛋白毒性的神经保护作用需要多条信号通路协同作用。

Neuroprotection against beta-amyloid toxicity by the novel estrogen receptor modulator STX requires convergent signaling pathways.

作者信息

Lee Hun-Joo, Bostick Zoe, Doherty John, Swanson Tracy L, Kelly Martin J, Quinn Joseph F, Gray Nora E, Copenhaver Philip F

机构信息

Department of Cell, Developmental and Cancer Biology, OHSU, Portland, OR, United States.

Department of Psychiatry, OHSU, Portland, OR and VA Portland Health Care System, Portland, OR, United States.

出版信息

Front Mol Neurosci. 2025 Sep 12;18:1670646. doi: 10.3389/fnmol.2025.1670646. eCollection 2025.

Abstract

INTRODUCTION

STX is a synthetic non-steroidal estrogen receptor modulator (SERM) that can provide many of the beneficial effects of 17β-estradiol in the brain without its adverse side effects, via its selective engagement of the membrane estrogen receptor GqMER. Using both neuronal culture assays and transgenic mouse models of Alzheimer's disease (AD), we have shown that STX protects against the deleterious effects of -amyloid (Aβ), in part by supporting mitochondrial function and synaptic integrity. However, the specific transduction pathways by which STX induces these beneficial responses have not been previously investigated.

METHODS

Using the MC65 neuroblastoma model of Aβ toxicity and primary cultures of hippocampal neurons from the 5XFAD mouse model of AD, we analyzed the involvement of different signal transduction pathways associated with STX-dependent responses in other contexts. We used pharmacological methods to test the role of key pathway components in assays of cell viability, neuronal morphology, quantitative immunoblots to analyze pathway engagement, and modulation of the mitochondrial permeability transition pore.

RESULTS

We found that the neuroprotective effects of STX against Aβ toxicity required engagement of the PI3K/Akt/GSK3β pathway. Using well-characterized inhibitors of specific isoforms of the p110 catalytic domain of PI3K, we then showed that this response was predominantly mediated via engagement of the P110δ isoform, with a more modest contribution by P110β. In contrast, targeting the PLC/PKC/PKA pathway (which plays a prominent role in hypothalamic neurons) had a relatively modest effect on the neuroprotective responses induced by STX, while targeting ERK/MAPK signaling had no significant effect.

DISCUSSION

In combination with our previous studies, these results indicate that engagement of GqMER by STX promotes neuroprotective responses via convergent signaling pathways that mitigate the effects of Aβ toxicity on mitochondrial function, synaptic integrity, and neuronal calcium (Ca) homeostasis. They also provide the framework for testing the mechanisms of STX neuroprotection , using mouse AD models. Since STX has been shown to provide many of the beneficial effects of 17β-estradiol in the brain without its adverse side effects (including feminizing effects in males), these results support the hypothesis that STX might have therapeutic potential in patients at risk of AD.

摘要

引言

STX是一种合成的非甾体雌激素受体调节剂(SERM),它可以通过选择性结合膜雌激素受体GqMER,在大脑中发挥许多17β-雌二醇的有益作用,而无其不良副作用。利用神经元培养试验和阿尔茨海默病(AD)的转基因小鼠模型,我们已经表明STX可以预防β-淀粉样蛋白(Aβ)的有害作用,部分原因是通过支持线粒体功能和突触完整性。然而,STX诱导这些有益反应的具体转导途径此前尚未被研究。

方法

使用Aβ毒性的MC65神经母细胞瘤模型和来自AD的5XFAD小鼠模型的海马神经元原代培养物,我们分析了在其他情况下与STX依赖性反应相关的不同信号转导途径的参与情况。我们使用药理学方法来测试关键途径成分在细胞活力测定、神经元形态学、定量免疫印迹分析途径参与以及线粒体通透性转换孔调节中的作用。

结果

我们发现STX对Aβ毒性的神经保护作用需要PI3K/Akt/GSK3β途径的参与。然后,我们使用PI3K的p110催化结构域特定亚型的特征明确的抑制剂,表明这种反应主要是通过P110δ亚型的参与介导的,P110β的贡献较小。相比之下,靶向PLC/PKC/PKA途径(在下丘脑神经元中起重要作用)对STX诱导的神经保护反应影响相对较小,而靶向ERK/MAPK信号传导则没有显著影响。

讨论

结合我们之前的研究,这些结果表明STX与GqMER的结合通过汇聚信号途径促进神经保护反应,这些途径减轻了Aβ毒性对线粒体功能、突触完整性和神经元钙(Ca)稳态的影响。它们还为使用小鼠AD模型测试STX神经保护机制提供了框架。由于STX已被证明在大脑中发挥许多17β-雌二醇的有益作用而无其不良副作用(包括对男性的女性化作用),这些结果支持STX可能对有AD风险的患者具有治疗潜力的假设。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0d3/12464056/3a73d1a2e12c/fnmol-18-1670646-g001.jpg

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