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耐力运动可预防因肝脏生酮功能受损引起的认知障碍。

Cognitive impairment caused by compromised hepatic ketogenesis is prevented by endurance exercise.

作者信息

Kelty Taylor J, Kerr Nathan R, Chou Chih H, Shryack Grace E, Taylor Christopher L, Krause Alexa A, Knutson Alexandra R, Bunten Josh, Childs Tom E, Meers Grace M, Dashek Ryan J, Puchalska Patrycja, Crawford Peter A, Thyfault John P, Booth Frank W, Rector R Scott

机构信息

Department of Biomedical Sciences, University of Missouri-Columbia, Columbia, Missouri, USA.

Department of Nutrition and Exercise Physiology, University of Missouri-Columbia, Columbia, Missouri, USA.

出版信息

J Physiol. 2025 Jan 14. doi: 10.1113/JP287573.

Abstract

Extensive research has demonstrated endurance exercise to be neuroprotective. Whether these neuroprotective benefits are mediated, in part, by hepatic ketone production remains unclear. To investigate the role of hepatic ketone production on brain health during exercise, healthy 6-month-old female rats underwent viral knockdown of the rate-limiting enzyme in the liver that catalyses the first reaction in ketogenesis: 3-hydroxymethylglutaryl-CoA synthase 2 (HMGCS2). Rats were then subjected to either a bout of acute exercise or 4 weeks of chronic treadmill running (5 days/week) and cognitive behavioural testing. Acute exercise elevated ketone plasma concentration 1 h following exercise. Hepatic HMGCS2 knockdown, verified by protein expression, reduced ketone plasma concentration 1 h after acute exercise and 48 h after chronic exercise. Proteomic analysis and enrichment of the frontal cortex revealed hepatic HMGCS2 knockdown reduced markers of mitochondrial function 1 h after acute exercise. HMGCS2 knockdown significantly reduced state 3 complex I + II respiration in isolated mitochondria from the frontal cortex after chronic exercise. Spatial memory and protein markers of synaptic plasticity were significantly reduced by HMGCS2 knockdown. These deficiencies were prevented by chronic endurance exercise training. In summary, these are the first data to propose that hepatic ketogenesis is required to maintain cognition and mitochondrial function, irrespective of training status, and that endurance exercise can overcome neuropathology caused by insufficient hepatic ketogenesis. These results establish a mechanistic link between liver and brain health that enhance our understanding of how peripheral tissue metabolism influences brain health. KEY POINTS: Decades of literature demonstrate endurance exercise to be neuroprotective. Whether neuroprotective benefits are mediated, in part, by hepatic ketone production remains unclear. This study provides the first set of data that suggest hepatic ketogenesis is required to maintain cognition, synaptic plasticity and mitochondrial function. These data indicate endurance exercise can protect against cognitive decline caused by compromised hepatic ketogenesis. These results establish a mechanistic link between liver and brain function, prompting further investigation of how hepatic metabolism influences brain health.

摘要

广泛的研究表明耐力运动具有神经保护作用。这些神经保护益处是否部分由肝脏酮生成介导仍不清楚。为了研究运动期间肝脏酮生成对大脑健康的作用,对6个月大的健康雌性大鼠进行病毒介导的肝脏中催化酮生成第一步反应的限速酶——3-羟基-3-甲基戊二酰辅酶A合酶2(HMGCS2)的敲低。然后将大鼠进行一次急性运动或4周的慢性跑步机跑步(每周5天)以及认知行为测试。急性运动后1小时血浆酮浓度升高。通过蛋白质表达验证,肝脏HMGCS2敲低降低了急性运动后1小时和慢性运动后48小时的血浆酮浓度。额叶皮质的蛋白质组分析和富集显示,肝脏HMGCS2敲低降低了急性运动后1小时的线粒体功能标志物。慢性运动后,HMGCS2敲低显著降低了额叶皮质分离线粒体中状态3复合体I + II呼吸。HMGCS2敲低显著降低了空间记忆和突触可塑性的蛋白质标志物。慢性耐力运动训练可预防这些缺陷。总之,这些是首批数据,表明无论训练状态如何,肝脏生酮作用对于维持认知和线粒体功能是必需的,并且耐力运动可以克服肝脏生酮不足引起的神经病理学。这些结果建立了肝脏与大脑健康之间的机制联系,增强了我们对周围组织代谢如何影响大脑健康的理解。要点:数十年的文献表明耐力运动具有神经保护作用。神经保护益处是否部分由肝脏酮生成介导仍不清楚。本研究提供了第一组数据,表明肝脏生酮作用对于维持认知、突触可塑性和线粒体功能是必需的。这些数据表明耐力运动可以预防因肝脏生酮受损引起的认知衰退。这些结果建立了肝脏与大脑功能之间的机制联系,促使进一步研究肝脏代谢如何影响大脑健康。

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本文引用的文献

1
The mitochondrial multi-omic response to exercise training across rat tissues.
Cell Metab. 2024 Jun 4;36(6):1411-1429.e10. doi: 10.1016/j.cmet.2023.12.021. Epub 2024 May 2.
3
Temporal dynamics of the multi-omic response to endurance exercise training.
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4
Sexual dimorphism and the multi-omic response to exercise training in rat subcutaneous white adipose tissue.
Nat Metab. 2024 May;6(5):963-979. doi: 10.1038/s42255-023-00959-9. Epub 2024 May 1.
5
The impact of exercise on gene regulation in association with complex trait genetics.
Nat Commun. 2024 May 1;15(1):3346. doi: 10.1038/s41467-024-45966-w.
6
Western diet-induced obesity results in brain mitochondrial dysfunction in female Ossabaw swine.
Front Mol Neurosci. 2023 Dec 14;16:1320879. doi: 10.3389/fnmol.2023.1320879. eCollection 2023.
7
Molecular mechanisms underlying physical exercise-induced brain BDNF overproduction.
Front Mol Neurosci. 2023 Oct 5;16:1275924. doi: 10.3389/fnmol.2023.1275924. eCollection 2023.
8
Beyond the TCA cycle: new insights into mitochondrial calcium regulation of oxidative phosphorylation.
Biochem Soc Trans. 2023 Aug 31;51(4):1661-1673. doi: 10.1042/BST20230012.
9
SMDT1 variants impair EMRE-mediated mitochondrial calcium uptake in patients with muscle involvement.
Biochim Biophys Acta Mol Basis Dis. 2023 Dec;1869(8):166808. doi: 10.1016/j.bbadis.2023.166808. Epub 2023 Jul 16.
10
Dietary ketone ester attenuates the accretion of adiposity and liver steatosis in mice fed a high-fat, high-sugar diet.
Front Physiol. 2023 Apr 11;14:1165224. doi: 10.3389/fphys.2023.1165224. eCollection 2023.

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