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首页> 外文期刊>Human Molecular Genetics >The active Hsc70/tau complex can be exploited to enhance tau turnover without damaging microtubule dynamics
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The active Hsc70/tau complex can be exploited to enhance tau turnover without damaging microtubule dynamics

机译:可以利用活跃的Hsc70 / tau复合物来提高tau的转化率,而不会破坏微管动力学

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The pathological accumulation of abnormally hyperphosphorylated and aggregated tau, a neuronal microtubule (MT)-associated protein that functions to maintain MT stability, is implicated in a number of hereditary and sporadic neurodegenerative diseases including frontotemporal dementia and Alzheimer's disease. Targeting tau for the treatment of these diseases is an area of intense interest and toward that end, modulation of cellular molecular chaperones is a potential therapeutic target. In particular, the constitutive Hsp70 isoform, Hsc70, seems highly interconnected with tau, preserving tau protein levels and synergizing with it to assemble MTs. But the relationship between tau and Hsc70, as well as the impact of this interaction in neurons and its therapeutic implications remain unknown. Using a human dominant negative Hsc70 that resembles isoform selective inhibition of this important chaperone, we found for the first time that Hsc70 activity is required to stimulate MT assembly in cells and brain. However, surprisingly, active Hsc70 also requires active tau to regulate MT assembly in vivo, suggesting that tau acts in some ways as a co-chaperone for Hsc70 to coordinate MT assembly. This was despite tau binding to Hsc70 as substrate, as determined biochemically. Moreover, we show that while chronic Hsc70 inhibition damaged MT dynamics, intermittent treatment with a small molecule Hsp70 inhibitor lowered tau in brain tissue without disrupting MT integrity. Thus, in tauopathies, where MT injury would be detrimental to neurons, the unique relationship of tau with the Hsc70 machinery can be exploited to deplete tau levels without damaging MT networks.
机译:异常高磷酸化和聚集的tau(一种与神经元微管(MT)相关的蛋白,具有维持MT稳定性的功能)的病理累积与许多遗传性和散发性神经退行性疾病有关,包括额颞痴呆和阿尔茨海默氏病。靶向tau来治疗这些疾病是一个非常受关注的领域,为此,调节细胞分子分子伴侣是潜在的治疗目标。特别是,组成型Hsp70亚型Hsc70似乎与tau高度相关,可保持tau蛋白水平并与其协同组装MT。但是,tau和Hsc70之间的关系以及这种相互作用对神经元的影响及其治疗意义仍然未知。我们使用类似于该重要伴侣分子的同工型选择性抑制的人类显性阴性Hsc70,我们首次发现需要Hsc70活性来刺激细胞和大脑中的MT组装。然而,令人惊讶的是,活性Hsc70还需要活性tau来调节体内MT组装,这表明tau在某些方面充当Hsc70的伴侣伴侣来协调MT组装。尽管通过生物化学确定tau结合了作为底物的Hsc70,但还是存在这种情况。此外,我们表明,尽管长期抑制Hsc70会破坏MT动力学,但使用小分子Hsp70抑制剂的间歇性治疗可降低脑组织中的tau,而不会破坏MT的完整性。因此,在Ta病中,MT损伤对神经元有害,可以利用tau与Hsc70机器的独特关系来消耗tau水平而不会破坏MT网络。

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