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神经元载脂蛋白 E4 的表达会导致蛋白质组的广泛改变,并通过破坏线粒体功能来损害生物能量能力。

Neuronal Apolipoprotein E4 Expression Results in Proteome-Wide Alterations and Compromises Bioenergetic Capacity by Disrupting Mitochondrial Function.

机构信息

Gladstone Institute of Neurological Disease, San Francisco, CA, USA.

Present address: Helen & Robert Appel Alzheimer's Disease Research Institute, Feil Family Brain and Mind Research Institute, Weill Cornell Medicine, New York, NY, USA.

出版信息

J Alzheimers Dis. 2019;68(3):991-1011. doi: 10.3233/JAD-181184.

Abstract

Apolipoprotein (apo) E4, the major genetic risk factor for Alzheimer's disease (AD), alters mitochondrial function and metabolism early in AD pathogenesis. When injured or stressed, neurons increase apoE synthesis. Because of its structural difference from apoE3, apoE4 undergoes neuron-specific proteolysis, generating fragments that enter the cytosol, interact with mitochondria, and cause neurotoxicity. However, apoE4's effect on mitochondrial respiration and metabolism is not understood in detail. Here we used biochemical assays and proteomic profiling to more completely characterize the effects of apoE4 on mitochondrial function and cellular metabolism in Neuro-2a neuronal cells stably expressing apoE4 or apoE3. Under basal conditions, apoE4 impaired respiration and increased glycolysis, but when challenged or stressed, apoE4-expressing neurons had 50% less reserve capacity to generate ATP to meet energy requirements than apoE3-expressing neurons. ApoE4 expression also decreased the NAD+/NADH ratio and increased the levels of reactive oxygen species and mitochondrial calcium. Global proteomic profiling revealed widespread changes in mitochondrial processes in apoE4 cells, including reduced levels of numerous respiratory complex subunits and major disruptions to all detected subunits in complex V (ATP synthase). Also altered in apoE4 cells were levels of proteins related to mitochondrial endoplasmic reticulum-associated membranes, mitochondrial fusion/fission, mitochondrial protein translocation, proteases, and mitochondrial ribosomal proteins. ApoE4-induced bioenergetic deficits led to extensive metabolic rewiring, but despite numerous cellular adaptations, apoE4-expressing neurons remained vulnerable to metabolic stress. Our results provide insights into potential molecular targets of therapies to correct apoE4-associated mitochondrial dysfunction and altered cellular metabolism.

摘要

载脂蛋白 E4(apoE4)是阿尔茨海默病(AD)的主要遗传风险因素,它在 AD 发病早期改变线粒体功能和代谢。当神经元受到损伤或压力时,apoE 的合成会增加。由于与 apoE3 的结构差异,apoE4 会经历神经元特异性蛋白水解,产生进入细胞质的片段,与线粒体相互作用,并导致神经毒性。然而,apoE4 对线粒体呼吸和代谢的影响尚未得到详细阐明。在这里,我们使用生化测定和蛋白质组学分析来更全面地描述 apoE4 在稳定表达 apoE4 或 apoE3 的 Neuro-2a 神经元细胞中线粒体功能和细胞代谢的影响。在基础条件下,apoE4 会损害呼吸作用并增加糖酵解,但当受到挑战或压力时,apoE4 表达的神经元产生 ATP 以满足能量需求的储备能力比 apoE3 表达的神经元低 50%。apoE4 的表达还降低了 NAD+/NADH 比值,增加了活性氧和线粒体钙的水平。全局蛋白质组学分析显示 apoE4 细胞中线粒体过程发生了广泛变化,包括许多呼吸复合物亚基水平降低,以及复合物 V(ATP 合酶)中所有检测到的亚基都发生了主要破坏。apoE4 细胞中还改变了与线粒体内质网相关膜、线粒体融合/裂变、线粒体蛋白易位、蛋白酶和线粒体核糖体蛋白相关的蛋白质水平。apoE4 诱导的能量代谢缺陷导致了广泛的代谢重编程,但尽管存在许多细胞适应,apoE4 表达的神经元仍然容易受到代谢应激的影响。我们的研究结果为纠正 apoE4 相关线粒体功能障碍和改变的细胞代谢提供了潜在的分子治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8361/6481541/64b208c63ccf/jad-68-jad181184-g001.jpg

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