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Oligodendroglial glycolytic stress triggers inflammasome activation and neuropathology in Alzheimer’s disease

机译:oligodendroglial糖酵解胁迫触发阿尔茨海默病的炎症活化和神经病理学

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Myelin degeneration and white matter loss resulting from oligodendrocyte (OL) death are early events in Alzheimer’s disease (AD) that lead to cognitive deficits; however, the underlying mechanism remains unknown. Here, we find that mature OLs in both AD patients and an AD mouse model undergo NLR family pyrin domain containing 3 (NLRP3)–dependent Gasdermin D–associated inflammatory injury, concomitant with demyelination and axonal degeneration. The mature OL-specific knockdown of dynamin-related protein 1 (Drp1; a mitochondrial fission guanosine triphosphatase) abolishes NLRP3 inflammasome activation, corrects myelin loss, and improves cognitive ability in AD mice. Drp1 hyperactivation in mature OLs induces a glycolytic defect in AD models by inhibiting hexokinase 1 (HK1; a mitochondrial enzyme that initiates glycolysis), which triggers NLRP3-associated inflammation. These findings suggest that OL glycolytic deficiency plays a causal role in AD development. The Drp1-HK1-NLRP3 signaling axis may be a key mechanism and therapeutic target for white matter degeneration in AD.
机译:Oligodendrocyte(OL)死亡引起的髓鞘变性和白场损失是阿尔茨海默病(AD)的早期事件,导致认知赤字;然而,潜在机制仍然未知。在这里,我们发现AD患者和AD小鼠模型中的成熟OLS经历了含有3(NLRP3) - 依赖性汽笛D相关炎症损伤的NLR家族吡喃结构域,伴随着脱髓鞘和轴突变性。发动力学相关蛋白1(DRP1; LP1;线粒体裂变鸟嘌呤三磷酸酶)成熟的OL特异性敲除,抑制了NLRP3炎症组的活化,校正髓鞘损失,并提高了广告小鼠的认知能力。 DRP1在成熟OL中的多动激活通过抑制六酮酶1(HK1;引发糖酵解的线粒体酶)诱导AD模型中的糖酵解缺陷,其触发NLRP3相关的炎症。这些研究结果表明,OL甘醇缺乏在广告开发中发挥了因果作用。 DRP1-HK1-NLRP3信号轴可以是AD中白质变性的关键机制和治疗靶标。

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