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淀粉样β蛋白前体sAβPPα的裂解产物调节BAG3依赖的聚集体形成并增强细胞蛋白酶体活性。

The cleavage product of amyloid-β protein precursor sAβPPα modulates BAG3-dependent aggresome formation and enhances cellular proteasomal activity.

作者信息

Renziehausen Jana, Hiebel Christof, Nagel Heike, Kundu Arpita, Kins Stefan, Kögel Donat, Behl Christian, Hajieva Parvana

机构信息

Institute for Pathobiochemistry, University Medical Center of the Johannes Gutenberg University Mainz, Mainz, Germany.

Experimental Neurosurgery, Neuroscience Center, Goethe University Hospital, Frankfurt, Germany.

出版信息

J Alzheimers Dis. 2015;44(3):879-96. doi: 10.3233/JAD-140600.

Abstract

Alzheimer's disease (AD) is the major age-associated form of dementia characterized by gradual cognitive decline. Aberrant cleavage of the amyloid-β protein precursor (AβPP) is thought to play an important role in the pathology of this disease. Two principal AβPP processing pathways exist: amyloidogenic cleavage of AβPP resulting in production of the soluble N-terminal fragment sAβPPβ, amyloid-β (Aβ), which accumulates in AD brain, and the AβPP intracellular domain (AICD) sAβPPα, p3 and AICD are generated in the non-amyloidogenic pathway. Prevalence of amyloidogenic versus non-amyloidogenic processing leads to depletion of sAβPPα and an increase in Aβ. Although sAβPPα is a well-accepted neurotrophic protein, molecular effects of this fragment remains unknown. Different studies reported impaired protein degradation pathways in AD brain, pointing to a role of disturbed proteasomal activity in the pathogenesis of this disease. Here we studied the possible role of sAβPPα in Bag3-mediated selective macroautophagy and proteasomal degradation. Employing human IMR90 cells, HEK 293 cells, and primary neurons, we demonstrate that sAβPPα prevents the proteotoxic stress-induced increase of Bag3 at the protein and at the mRNA level indicating a transcriptional regulation. Intriguingly, p62 and LC3, two other key players of autophagy, were not affected. Moreover, the formation and the accumulation of disease-related protein aggregates were significantly reduced by sAβPPα. Interestingly, there was a significant increase of proteasomal activity by sAβPPα as demonstrated by using various proteasome substrates. Our findings demonstrate that sAβPPα modulates Bag3 expression, aggresome formation, and proteasomal activity, thereby providing first evidence for a function of sAβPPα in the regulation of proteostasis.

摘要

阿尔茨海默病(AD)是与年龄相关的主要痴呆形式,其特征为认知功能逐渐衰退。淀粉样前体蛋白(AβPP)的异常切割被认为在该疾病的病理过程中起重要作用。存在两种主要的AβPP加工途径:AβPP的淀粉样生成性切割导致可溶性N端片段sAβPPβ、淀粉样β蛋白(Aβ)的产生,Aβ在AD大脑中积累,以及AβPP细胞内结构域(AICD);sAβPPα、p3和AICD在非淀粉样生成途径中产生。淀粉样生成性加工与非淀粉样生成性加工的比例失衡导致sAβPPα减少和Aβ增加。尽管sAβPPα是一种公认的神经营养蛋白,但其片段的分子效应仍不清楚。不同研究报道AD大脑中蛋白质降解途径受损,提示蛋白酶体活性紊乱在该疾病发病机制中起作用。在此,我们研究了sAβPPα在Bag3介导的选择性巨自噬和蛋白酶体降解中的可能作用。利用人IMR90细胞、HEK 293细胞和原代神经元,我们证明sAβPPα在蛋白质和mRNA水平上可防止蛋白毒性应激诱导的Bag3增加,表明存在转录调控。有趣的是,自噬的另外两个关键分子p62和LC3未受影响。此外,sAβPPα可显著减少疾病相关蛋白聚集体的形成和积累。有趣的是,使用各种蛋白酶体底物证明,sAβPPα可显著提高蛋白酶体活性。我们的研究结果表明,sAβPPα可调节Bag3表达、聚集体形成和蛋白酶体活性;从而首次证明sAβPPα在蛋白质稳态调节中的功能。

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