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特定的醌还原酶 2 抑制剂可减轻代谢负担并逆转小鼠的阿尔茨海默病表型。

Specific quinone reductase 2 inhibitors reduce metabolic burden and reverse Alzheimer's disease phenotype in mice.

机构信息

Sagol Department of Neurobiology, University of Haifa, Haifa, Israel.

Wohl Institute for Drug Discovery of the Nancy and Stephen Grand Israeli National Center for Personalized Medicine (GINCPM), Weizmann Institute of Science, Rehovot, Israel.

出版信息

J Clin Invest. 2023 Oct 2;133(19):e162120. doi: 10.1172/JCI162120.

Abstract

Biological aging can be described as accumulative, prolonged metabolic stress and is the major risk factor for cognitive decline and Alzheimer's disease (AD). Recently, we identified and described a quinone reductase 2 (QR2) pathway in the brain, in which QR2 acts as a removable memory constraint and metabolic buffer within neurons. QR2 becomes overexpressed with age, and it is possibly a novel contributing factor to age-related metabolic stress and cognitive deficit. We found that, in human cells, genetic removal of QR2 produced a shift in the proteome opposing that found in AD brains while simultaneously reducing oxidative stress. We therefore created highly specific QR2 inhibitors (QR2is) to enable evaluation of chronic QR2 inhibition as a means to reduce biological age-related metabolic stress and cognitive decline. QR2is replicated results obtained by genetic removal of QR2, while local QR2i microinjection improved hippocampal and cortical-dependent learning in rats and mice. Continuous consumption of QR2is in drinking water improved cognition and reduced pathology in the brains of AD-model mice (5xFAD), with a noticeable between-sex effect on treatment duration. These results demonstrate the importance of QR2 activity and pathway function in the healthy and neurodegenerative brain and what we believe to be the great therapeutic potential of QR2is as first-in-class drugs.

摘要

生物衰老可以被描述为累积的、长期的代谢压力,是认知能力下降和阿尔茨海默病(AD)的主要风险因素。最近,我们在大脑中发现并描述了一种醌还原酶 2(QR2)途径,其中 QR2 作为神经元中可去除的记忆限制因素和代谢缓冲剂发挥作用。QR2 随着年龄的增长而过度表达,它可能是导致与年龄相关的代谢压力和认知缺陷的一个新的因素。我们发现,在人类细胞中,QR2 的遗传去除导致蛋白质组发生变化,与 AD 大脑中的变化相反,同时减少氧化应激。因此,我们创造了高度特异性的 QR2 抑制剂(QR2is),以评估慢性 QR2 抑制作为减轻与生物年龄相关的代谢压力和认知能力下降的一种手段。QR2is 复制了 QR2 遗传去除所获得的结果,而局部 QR2i 微注射改善了大鼠和小鼠海马和皮质依赖性学习。在饮用水中连续消耗 QR2is 可改善 AD 模型小鼠(5xFAD)的认知能力,并减少其大脑中的病理学,在治疗持续时间上具有明显的性别间效应。这些结果表明 QR2 活性和途径功能在健康和神经退行性大脑中的重要性,以及我们认为 QR2is 作为一流药物具有巨大的治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3dfa/10541198/86b0064ebab0/jci-133-162120-g202.jpg

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