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The direct role of 5-lipoxygenase on tau pathology, synaptic integrity and cognition in a mouse model of tauopathy

机译:5-脂氧合酶对tau病小鼠模型中tau病理,突触完整性和认知的直接作用

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Neurodegenerative tauopathies are characterized by pathological accumulation of highly phosphorylated isoforms of tau protein, which leads to progressive neuronal loss. Neuroinflammation often accompanies tau-driven diseases; however, the direct role of neuroinflammation in tauopathies remains unknown. The 5-lipoxygenase (5LO) is a pro-inflammatory enzyme, which produces several bioactive metabolites and is widely expressed in the central nervous system. Previously, our group showed that 5LO influences the Alzheimer’s disease (AD) phenotype of APP transgenic mice as well as a mouse model with plaques and tangles. However, whether this protein directly modulates tau phosphorylation and subsequent neuropathology remains to be fully investigated. In the current study, we provide evidence for an age-dependent and region-specific upregulation of the 5LO pathway (protein, message and activity) in a transgenic mouse model of tauopathy, the P301S line. In addition, we demonstrate that genetic deletion of 5LO in this mouse model results in significant memory improvement, reduces tau phosphorylation at specific epitopes?as well as neuroinflammation and rescues synaptic pathology. In vitro studies confirmed that 5LO directly modulates tau phosphorylation at the same epitopes as for the brain tissues. Taken together, our data reveal an active involvement of the 5LO pathway in the development of the tauopathy phenotype and provide strong support to the hypothesis that this enzymatic protein should be considered a novel and viable therapeutic target for the treatment of human tauopathy.
机译:神经退行性tauopathies的特征是tau蛋白高度磷酸化的同工型的病理性积累,从而导致进行性神经元丢失。神经炎症通常伴随着由tau驱动的疾病。然而,神经炎症在tauopathies中的直接作用仍然未知。 5-脂氧合酶(5LO)是一种促炎酶,可产生多种生物活性代谢产物,并在中枢神经系统中广泛表达。先前,我们的研究小组表明5LO影响APP转基因小鼠以及患有斑块和缠结的小鼠模型的阿尔茨海默氏病(AD)表型。然而,该蛋白是否直接调节tau磷酸化及随后的神经病理学仍有待充分研究。在当前的研究中,我们提供了在tauopathy转基因小鼠模型P301S系中5LO途径(蛋白质,信息和活性)的年龄依赖性和区域特异性上调的证据。此外,我们证明了在该小鼠模型中5LO的基因缺失导致显着的记忆改善,减少了特定表位上的tau磷酸化以及神经炎症,并拯救了突触病理。体外研究证实5LO在与脑组织相同的表位上直接调节tau磷酸化。两者合计,我们的数据显示5LO通路积极参与tauopathy表型的发展,并为这一酶蛋白应被认为是治疗人类tauopathy的新型且可行的治疗靶点的假设提供了有力的支持。

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