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The impact of tau hyperphosphorylation at Ser(262) on memory and learning after global brain ischaemia in a rat model of reversible cardiac arrest

机译:在可逆性心脏骤停大鼠模型中,ser(262)的tau蛋白过度磷酸化对全脑缺血后记忆和学习的影响

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摘要

An increase in phosphorylated tau (p-tau) is associated with Alzheimer's disease (AD), and brain hypoxia. Investigation of the association of residue-specific tau hyperphosphorylation and changes in cognition, leads to greater understanding of its potential role in the pathology of memory impairment. The aims of this study are to investigate the involvement of the main metabolic kinases, Liver Kinase B1 (LKB1) and Adenosine Monophosphate Kinase Protein Kinase (AMPK), in tau phosphorylation-derived memory impairment, and to study the potential contribution of the other tau kinases and phosphatases including Glycogen Synthase Kinase (GSK-3β), Protein kinase A (PKA) and Protein Phosphatase 2A (PP2A). Spatial memory and learning were tested in a rat global brain ischemic model of reversible cardiac arrest (CA). The phosphorylation levels of LKB1, AMPK, GSK-3β, PP2A, PKA and tau-specific phosphorylation were assessed in rats, subjected to ischaemia/reperfusion and in clinically diagnosed AD and normal human brains. LKB1 and AMPK phosphorylation increased 4 weeks after CA as did AMPK related p-tau (Ser262). The animals showed unchanged levels of GSK-3β specific p-tau (Ser202/Thr205), phospho-PP2A (Tyr307), total GSK-3β, PP2A, phospho-cAMP response element-binding protein (CREB) which is an indicator of PKA activity, and no memory deficits. AD brains had hyperphosphorylated tau in all the residues of Ser262, Ser202 and Thr205, with increased phosphorylation of both AMPK (Thr172) and GSK-3β (Ser9), and reduced PP2A levels. Our data suggests a crucial role for a combined activation of tau kinases and phosphatases in adversely affecting memory and that hyperphosphorylation of tau in more than one specific site may be required to create memory deficits.
机译:磷酸化tau(p-tau)的增加与阿尔茨海默氏病(AD)和脑缺氧有关。对残基特异性tau过度磷酸化与认知变化之间的关系的研究,导致人们对其记忆障碍病理学的潜在作用有了更深入的了解。这项研究的目的是调查主要代谢激酶,肝激酶B1(LKB1)和腺苷单磷酸激酶蛋白激酶(AMPK)在tau磷酸化引起的记忆障碍中的作用,并研究其他tau蛋白的潜在作用。激酶和磷酸酶,包括糖原合酶激酶(GSK-3β),蛋白激酶A(PKA)和蛋白磷酸酶2A(PP2A)。在可逆性心脏骤停(CA)的大鼠整体脑缺血模型中测试了空间记忆和学习。在大鼠,缺血/再灌注以及临床诊断的AD和正常人脑中,评估了大鼠的LKB1,AMPK,GSK-3β,PP2A,PKA和tau特异性磷酸化水平。与AMPK相关的p-tau(Ser262)一样,CA后4周LKB1和AMPK磷酸化增加。动物的GSK-3β特异性p-tau(Ser202 / Thr205),磷酸-PP2A(Tyr307),总GSK-3β,PP2A,磷酸化-cAMP反应元件结合蛋白(CREB)的水平保持不变,这是PKA的指标活动,没有记忆缺陷。 AD大脑的Ser262,Ser202和Thr205的所有残基都具有高磷酸化的tau蛋白,同时AMPK(Thr172)和GSK-3β(Ser9)的磷酸化增加,PP2A水平降低。我们的数据表明,tau激酶和磷酸酶的联合激活在不利地影响记忆中​​起着至关重要的作用,并且可能需要tau在一个以上特定位点的过度磷酸化来造成记忆缺陷。

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