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首页> 外文期刊>Molecular Neurobiology >Modulation of BAG3 Expression and Proteasomal Activity by sAPP alpha Does Not Require Membrane-Tethered Holo-APP
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Modulation of BAG3 Expression and Proteasomal Activity by sAPP alpha Does Not Require Membrane-Tethered Holo-APP

机译:sAPP alpha调节BAG3表达和蛋白酶体活性不需要膜连接的Holo-APP

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Maintenance of intracellular proteostasis is essential for neuronal function, and emerging data support the view that disturbed proteostasis plays an important role in brain aging and the pathogenesis of age-related neurodegenerative disorders such as Alzheimer's disease (AD). sAPPalpha (sAPP alpha), the extracellularly secreted N-terminal alpha secretase cleavage product of the amyloid precursor protein (APP), has an established function in neuroprotection. Recently, we provided evidence that membrane-bound holo-APP functionally cooperates with sAPP alpha to mediate neuroprotection via activation of the Akt survival signaling pathway and sAPP alpha directly affects proteostasis. Here, we demonstrate that in addition to its anti-apoptotic function, sAPP alpha has effects on neuronal proteostasis under conditions of proteasomal stress. In particular, recombinant sAPP alpha significantly suppressed MG132-triggered expression of the co-chaperone BAG3 and aggresome formation, and it partially rescued proteasomal activity in a dose-dependent manner in SH-SY5Y neuroblastoma cells. In analogy, sAPP alpha was able to inhibit MG132-induced BAG3 expression in primary hippocampal neurons. Strikingly, these sAPP alpha-induced changes were unaltered in APP-depleted SH-SY5Y cells and APP-deficient neurons, demonstrating that holo-APP is not required for this particular function of sAPP alpha. Importantly, recombinant sAPPbeta (sAPP beta) failed to modulate BAG3 expression and proteostasis in APP-proficient wild-type (wt) cells, indicating that these biological effects are highly selective for sAPP alpha. In conclusion, we demonstrate that modulation of proteostasis is a distinct biological function of sAPP alpha and does not require surface-bound holo-APP. Our data shed new light on the physiological functions of APP and the interplay between APP processing and proteostasis during brain aging.
机译:维持细胞内蛋白稳态对于神经元功能是必不可少的,并且新出现的数据支持这样的观点,即蛋白紊乱在脑衰老和与年龄有关的神经退行性疾病如阿尔茨海默病(AD)的发病机理中起着重要作用。 sAPPalpha(sAPP alpha)是淀粉样蛋白前体蛋白(APP)的细胞外分泌的N端α分泌酶切割产物,在神经保护中具有确定的功能。最近,我们提供的证据表明,与膜结合的holo-APP在功能上与sAPP alpha协同作用,通过激活Akt生存信号通路来介导神经保护作用,而sAPP alpha直接影响蛋白稳态。在这里,我们证明,除了其抗凋亡功能外,sAPP alpha在蛋白酶体应激条件下还对神经元蛋白稳态具有影响。特别是,重组sAPPα显着抑制了MG132触发的伴侣蛋白BAG3的表达和聚集体的形成,并以剂量​​依赖性方式部分拯救了SH-SY5Y神经母细胞瘤细胞中的蛋白酶体活性。类似地,sAPP alpha能够抑制原代海马神经元中MG132诱导的BAG3表达。令人惊讶的是,这些sAPP alpha诱导的变化在APP缺失的SH-SY5Y细胞和APP缺失的神经元中没有改变,表明sAPP alpha的这一特定功能不需要holo-APP。重要的是,重组sAPPbeta(sAPP beta)无法调节APP熟练的野生型(wt)细胞中BAG3的表达和蛋白稳定,表明这些生物学效应对sAPP alpha具有高度选择性。总之,我们证明了对蛋白质稳态的调节是sAPP alpha的独特生物学功能,不需要表面结合的holo-APP。我们的数据为脑衰老过程中APP的生理功能以及APP加工与蛋白稳定之间的相互作用提供了新的思路。

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