RhoGDIα/Tau之间的直接相互作用减轻了阿尔茨海默病和血管性痴呆中Tau的过度磷酸化。

Heping Zhang, Fan Lu, Panhong Liu, Zhaohui Qiu, Jianling Li, Xiaotong Wang, Hui Xu, Yandong Zhao, Xuemin Li, Huadong Wang, Daxiang Lu, Renbin Qi
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This RhoGDIα-Tau partnership was further verified by using immunofluorescence colocalization and fluorescence resonance energy transfer (FRET) approaches in PC12 cells. Using the RNA interference (RNAi) technique, we found that the RhoGDIα may be involved in an upstream signaling pathway for Tau. Subsequently, in Aβ<sub>25-35</sub>- and H/R-induced PC12 cells, forced expression of RhoGDIα via cDNA plasmid transfection was found to reduce the hyperphosphorylation of Tau, augment the expression of bcl-2 protein, and inhibit the expression of Bax protein (reducing the Bax/bcl-2 ratio) and the activity of caspase-3. In mouse AD and VaD models, forced expression of RhoGDIα via injection of a viral vector (pAAV-EGFP-RhoGDIα) into the lateral ventricle of the brain alleviated the pathological symptoms of AD and VaD. Finally, GST pulldown confirmed that the binding sites on RhoGDIα for Tau were located in the range of the ΔC33 fragment (aa 1-33). 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引用次数: 3

摘要

RhoGDIα是RhoGDP解离的抑制剂,通过调节RhoGTP酶活性参与阿尔茨海默病(AD)中的Aβ代谢和NFTs产生。我们先前的研究表明,RhoGDIα作为远志皂苷(Sen)的靶点,可能减轻缺氧/复氧(H/R)引起的神经细胞凋亡。为了进一步阐明RhoGDIα在NFT生成中的作用,我们探讨了RhoGDIα和Tau之间的关系。我们发现RhoGDIα和Tau可以在体外通过共免疫沉淀(Co-IP)和GST下拉方法相互结合和相互作用。通过在PC12细胞中使用免疫荧光共定位和荧光共振能量转移(FRET)方法进一步验证了这种RhoGDIα-Tau伙伴关系。使用RNA干扰(RNAi)技术,我们发现RhoGDIα可能参与Tau的上游信号通路。随后,在Aβ25-35-和H/R诱导的PC12细胞中,通过cDNA质粒转染强制表达RhoGDIα可以减少Tau的过度磷酸化,增加bcl-2蛋白的表达,并抑制Bax蛋白的表达(降低Bax/bcl-2比率)和胱天蛋白酶-3的活性。在小鼠AD和VaD模型中,通过将病毒载体(pAAV-EGFP-RhoGDIα)注射到大脑侧脑室来强制表达RhoGDIα减轻了AD和VaD的病理症状。最后,GST下拉证实了RhoGDIα上Tau的结合位点位于ΔC33片段(AA1-33)的范围内。这些结果表明RhoGDIα参与AD和VaD中Tau的磷酸化和细胞凋亡。RhoGDIα的过表达可抑制NFT的产生并延缓这两种类型痴呆的进展。
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A direct interaction between RhoGDIα/Tau alleviates hyperphosphorylation of Tau in Alzheimer's disease and vascular dementia.

RhoGDIα is an inhibitor of RhoGDP dissociation that involves in Aβ metabolism and NFTs production in Alzheimer's disease (AD) by regulating of RhoGTP enzyme activity. Our previous research revealed that RhoGDIα, as the target of Polygala saponin (Sen), might alleviate apoptosis of the nerve cells caused by hypoxia/reoxygenation (H/R). To further clarify the role of RhoGDIα in the generation of NFTs, we explored the relationship between RhoGDIα and Tau. We found out that RhoGDIα and Tau can bind with each other and interact by using coimmunoprecipitation (Co-IP) and GST pulldown methods in vitro. This RhoGDIα-Tau partnership was further verified by using immunofluorescence colocalization and fluorescence resonance energy transfer (FRET) approaches in PC12 cells. Using the RNA interference (RNAi) technique, we found that the RhoGDIα may be involved in an upstream signaling pathway for Tau. Subsequently, in Aβ25-35- and H/R-induced PC12 cells, forced expression of RhoGDIα via cDNA plasmid transfection was found to reduce the hyperphosphorylation of Tau, augment the expression of bcl-2 protein, and inhibit the expression of Bax protein (reducing the Bax/bcl-2 ratio) and the activity of caspase-3. In mouse AD and VaD models, forced expression of RhoGDIα via injection of a viral vector (pAAV-EGFP-RhoGDIα) into the lateral ventricle of the brain alleviated the pathological symptoms of AD and VaD. Finally, GST pulldown confirmed that the binding sites on RhoGDIα for Tau were located in the range of the ΔC33 fragment (aa 1-33). These results indicate that RhoGDIα is involved in the phosphorylation of Tau and apoptosis in AD and VaD. Overexpression of RhoGDIα can inhibit the generation of NFTs and delay the progress of these two types of dementia.

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