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通过RanBP9和Hsp90/Hsc70伴侣蛋白复合物增强tau蛋白病变。

Enhanced tau pathology via RanBP9 and Hsp90/Hsc70 chaperone complexes.

作者信息

Woo Jung A, Liu Tian, Zhao Xingyu, Trotter Courtney, Yrigoin Ksenia, Cazzaro Sara, Narvaez Emilio De, Khan Hirah, Witas Richard, Bukhari Anusha, Makati Kamal, Wang Xinming, Dickey Chad, Kang David E

机构信息

USF Health Byrd Alzheimer's Institute.

Department of Molecular Medicine.

出版信息

Hum Mol Genet. 2017 Oct 15;26(20):3973-3988. doi: 10.1093/hmg/ddx284.

Abstract

Accumulation of amyloid β (Aβ) and tau represent the two major pathological hallmarks of Alzheimer's disease (AD). Despite the critical importance of Aβ accumulation as an early event in AD pathogenesis, multiple lines of evidence indicate that tau is required to mediate Aβ-induced neurotoxic signals in neurons. We have previously shown that the scaffolding protein Ran-binding protein 9 (RanBP9), which is highly elevated in brains of AD and AD mouse models, both enhances Aβ production and mediates Aβ-induced neurotoxicity. However, it is unknown whether and how RanBP9 transmits Aβ-induced neurotoxic signals to tau. Here we show for the first time that overexpression or knockdown of RanBP9 directly enhances and reduces tau levels, respectively, in vitro and in vivo. Such changes in tau levels are associated with the ability of RanBP9 to physically interact with tau and heat shock protein 90/heat shock cognate 70 (Hsp90/Hsc70) complexes. Meanwhile, both RanBP9 and tau levels are simultaneously reduced by Hsp90 or Hsc70 inhibitors, whereas overexpression or knockdown of RanBP9 significantly diminishes the anti-tau potency of Hsp90/Hsc70 inhibitors as well as Hsc70 variants (WT & E175S). Further, RanBP9 increases the capacity for Hsp90 and Hsc70 complexes to bind ATP and enhances their ATPase activities in vitro. These observations in vitro and cell lines are recapitulated in primary neurons and in vivo, as genetic reduction in RanBP9 not only ameliorates tauopathy in Tau-P301S mice but also rescues the deficits in synaptic integrity and plasticity.

摘要

淀粉样β蛋白(Aβ)和tau蛋白的积累是阿尔茨海默病(AD)的两个主要病理标志。尽管Aβ积累作为AD发病机制中的早期事件至关重要,但多条证据表明,tau蛋白是介导Aβ诱导的神经元神经毒性信号所必需的。我们之前已经表明,支架蛋白Ran结合蛋白9(RanBP9)在AD患者大脑和AD小鼠模型中高度升高,它既能增强Aβ的产生,又能介导Aβ诱导的神经毒性。然而,尚不清楚RanBP9是否以及如何将Aβ诱导的神经毒性信号传递给tau蛋白。在这里,我们首次表明,RanBP9的过表达或敲低分别在体外和体内直接提高和降低tau蛋白水平。tau蛋白水平的这种变化与RanBP9与tau蛋白以及热休克蛋白90/热休克同源蛋白70(Hsp90/Hsc70)复合物发生物理相互作用的能力有关。同时,Hsp90或Hsc70抑制剂可同时降低RanBP9和tau蛋白水平,而RanBP9的过表达或敲低则显著削弱Hsp90/Hsc70抑制剂以及Hsc70变体(野生型和E175S)的抗tau蛋白效力。此外,RanBP9在体外增加了Hsp90和Hsc70复合物结合ATP的能力,并增强了它们的ATP酶活性。在原代神经元和体内也重现了体外和细胞系中的这些观察结果,因为RanBP9的基因减少不仅改善了Tau-P301S小鼠的tau蛋白病变,还挽救了突触完整性和可塑性方面的缺陷。

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