CA1 Nampt knockdown recapitulates hippocampal cognitive phenotypes in old mice which nicotinamide mononucleotide improves.

IF 5.4 Q1 GERIATRICS & GERONTOLOGY
NPJ Aging and Mechanisms of Disease Pub Date : 2018-11-08 eCollection Date: 2018-01-01 DOI:10.1038/s41514-018-0029-z
Sean Johnson, David F Wozniak, S Imai
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引用次数: 38

Abstract

Cognitive dysfunction is one of the most concerning outcomes in global population aging. However, the mechanisms by which cognitive functions are impaired during aging remain elusive. It has been established that NAD+ levels are reduced in multiple tissues and organs, including the brain. We found that NAD+ levels declined in the hippocampus of mice during the course of aging, and whereas we observed minimal age-related effects on spatial learning/memory capabilities in old mice, we discovered that they developed cognitive hypersensitivity in response to aversive stimulation during contextual fear conditioning tests. This cognitive hypersensitivity appears to be associated with alterations in emotionality (fear/anxiety) and sensory processing (shock sensitivity), rather than reflect genuine conditioning/retention effects, during aging. Supplementation of nicotinamide mononucleotide (NMN) improved the sensory processing aspect of the hypersensitivity and possibly other related behaviors. Specific knockdown of nicotinamide phosphoribosyltransferase (Nampt) in the CA1 region, but not in the dentate gyrus, recapitulates this cognitive hypersensitivity observed in old mice. We identified calcium/calmodulin-dependent serine protein kinase (Cask) as a potential downstream effector in response to age-associated NAD+ reduction in the hippocampus. Cask expression is responsive to NAD+ changes and also reduced in the hippocampus during aging. Short-term NMN supplementation can enhance Cask expression in the hippocampus of old mice. Its promoter activity is regulated in a Sirt1-dependent manner. Taken together, NAD+ reduction in the CA1 region contributes to development of age-associated cognitive dysfunction, aspects of which may be prevented or treated by enhancing NAD+ availability through supplementation of NAD+ intermediates, such as NMN.

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CA1 Nampt敲除重现了烟酰胺单核苷酸改善的老年小鼠海马认知表型。
认知功能障碍是全球人口老龄化最令人关注的结果之一。然而,认知功能在衰老过程中受损的机制仍然难以捉摸。已经确定,NAD+水平在包括大脑在内的多个组织和器官中降低。我们发现,在衰老过程中,小鼠海马体中的NAD+水平下降,尽管我们观察到年龄对老年小鼠空间学习/记忆能力的影响很小,但我们发现,在情境恐惧条件反射测试中,它们对厌恶刺激的反应产生了认知超敏反应。在衰老过程中,这种认知超敏似乎与情绪(恐惧/焦虑)和感觉处理(休克敏感性)的改变有关,而不是反映真正的条件反射/保留效应。补充烟酰胺单核苷酸(NMN)改善了超敏反应的感觉加工方面以及可能的其他相关行为。CA1区烟酰胺磷酸核糖基转移酶(Nampt)的特异性下调,而齿状回中没有,概括了在老年小鼠中观察到的这种认知超敏反应。我们发现钙/钙调素依赖性丝氨酸蛋白激酶(Cask)是海马中与年龄相关的NAD+减少的潜在下游效应物。在衰老过程中,海马中NAD+的表达也随之减少。短期补充NMN可增强老年小鼠海马中Cask的表达。它的启动子活性以sirt1依赖的方式调节。综上所述,CA1区域NAD+的减少有助于年龄相关认知功能障碍的发展,其中一些方面可以通过补充NAD+中间体(如NMN)来提高NAD+的可用性来预防或治疗。
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来源期刊
NPJ Aging and Mechanisms of Disease
NPJ Aging and Mechanisms of Disease Medicine-Geriatrics and Gerontology
自引率
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审稿时长
8 weeks
期刊介绍: npj Aging and Mechanisms of Disease is an online open access journal that provides a forum for the world’s most important research in the fields of aging and aging-related disease. The journal publishes papers from all relevant disciplines, encouraging those that shed light on the mechanisms behind aging and the associated diseases. The journal’s scope includes, but is not restricted to, the following areas (not listed in order of preference): • cellular and molecular mechanisms of aging and aging-related diseases • interventions to affect the process of aging and longevity • homeostatic regulation and aging • age-associated complications • translational research into prevention and treatment of aging-related diseases • mechanistic bases for epidemiological aspects of aging-related disease.
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