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载脂蛋白 E4 与胰岛素抵抗相互作用损害认知并改变表观基因组和代谢组。

Apolipoprotein E4 and Insulin Resistance Interact to Impair Cognition and Alter the Epigenome and Metabolome.

机构信息

Department of Behavioral Neuroscience, Oregon Health &Science University, Portland, OR 97239, USA.

Oregon Stem Cell Center and Department of Pediatrics, Oregon Health &Science University, Portland, OR 97239, USA.

出版信息

Sci Rep. 2017 Mar 8;7:43701. doi: 10.1038/srep43701.

Abstract

Apolipoprotein E4 (E4) and type 2 diabetes are major risk factors for cognitive decline and late onset Alzheimer's disease (AD). E4-associated phenotypes and insulin resistance (IR) share several features and appear to interact in driving cognitive dysfunction. However, shared mechanisms that could explain their overlapping pathophysiology have yet to be found. We hypothesized that, compared to E3 mice, E4 mice would be more susceptible to the harmful cognitive effects of high fat diet (HFD)-induced IR due to apoE isoform-specific differences in brain metabolism. While both E3 and E4 mice fed HFD displayed impairments in peripheral metabolism and cognition, deficits in hippocampal-dependent spatial learning and memory were exaggerated in E4 mice. Combining genome-wide measures of DNA hydroxymethylation with comprehensive untargeted metabolomics, we identified novel alterations in purine metabolism, glutamate metabolism, and the pentose phosphate pathway. Finally, in E4 mice, the metabolic and cognitive deficiencies caused by HFD were rescued by switching to a low fat diet for one month, suggesting a functional role was associated with reversal of the same metabolic pathways described above. These results suggest a susceptibility of E4 carriers to metabolic impairments brought on by IR, and may guide development of novel therapies for cognitive decline and dementia.

摘要

载脂蛋白 E4(E4)和 2 型糖尿病是认知能力下降和迟发性阿尔茨海默病(AD)的主要危险因素。E4 相关表型和胰岛素抵抗(IR)具有一些共同特征,似乎在导致认知功能障碍方面相互作用。然而,仍未找到可以解释其重叠病理生理学的共同机制。我们假设,与 E3 小鼠相比,由于脑代谢中载脂蛋白 E 同工型特异性差异,E4 小鼠更容易受到高脂肪饮食(HFD)诱导的 IR 对认知的有害影响。尽管喂食 HFD 的 E3 和 E4 小鼠均表现出外周代谢和认知障碍,但 E4 小鼠的海马依赖性空间学习和记忆缺陷更为严重。将 DNA 羟甲基化的全基因组测量与全面的非靶向代谢组学相结合,我们发现嘌呤代谢、谷氨酸代谢和戊糖磷酸途径发生了新的改变。最后,在 E4 小鼠中,通过切换到低脂肪饮食一个月可挽救 HFD 引起的代谢和认知缺陷,这表明与上述相同代谢途径的逆转相关的功能作用。这些结果表明 E4 携带者易受 IR 引起的代谢损伤的影响,这可能为认知能力下降和痴呆症的新型治疗方法提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c517/5341123/2864d3dc4cac/srep43701-f1.jpg

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