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脂肪组织外泌体 circ_sxc 通过抑制脑 dme-miR-87-3p 来调节脂肪体对脑老化的作用。

Adipose Tissue Exosome circ_sxc Mediates the Modulatory of Adiposomes on Brain Aging by Inhibiting Brain dme-miR-87-3p.

机构信息

Key Laboratory of Physical Fitness and Exercise Rehabilitation of Hunan Province, Hunan Normal University, Changsha, Hunan, China.

The Center for Heart Development, State Key Laboratory of Development Biology of Freshwater Fish, College of Life Sciences, Hunan Normal University, Changsha, Hunan, China.

出版信息

Mol Neurobiol. 2024 Jan;61(1):224-238. doi: 10.1007/s12035-023-03516-3. Epub 2023 Aug 19.

Abstract

Aging of the brain usually leads to the decline of neurological processes and is a major risk factor for various neurodegenerative diseases, including sleep disturbances and cognitive decline. Adipose tissue exosomes, as adipocyte-derived vesicles, may mediate the regulatory processes of adipose tissue on other organs, including the brain; however, the regulatory mechanisms remain unclear. We analyzed the sleep-wake behavior of young (10 days) and old (40 days) Drosophila and found that older Drosophila showed increased sleep fragmentation, which is similar to mammalian aging characteristics. To investigate the cross-tissue regulatory mechanisms of adiposity on brain aging, we extracted 10-day and 40-day Drosophila adipose tissue exosomes and identified circRNAs with age-dependent expression differences by RNA-seq and differential analysis. Furthermore, by combining data from 3 datasets of the GEO database (GSE130158, GSE24992, and GSE184559), circ_sxc that was significantly downregulated with age was finally screened out. Moreover, dme-miR-87-3p, a conserved target of circ_sxc, accumulates in the brain with age and exhibits inhibitory effects in predicted binding relationships with neuroreceptor ligand genes. In summary, the current study showed that the Drosophila brain could obtain circ_sxc by uptake of adipose tissue exosomes which crossed the blood-brain barrier. And circ_sxc suppressed brain miR-87-3p expression through sponge adsorption, which in turn regulated the expression of neurological receptor ligand proteins (5-HT1B, GABA-B-R1, Rdl, Rh7, qvr, NaCP60E) and ensured brain neuronal synaptic signaling normal function of synaptic signaling. However, with aging, this regulatory mechanism is dysregulated by the downregulation of the adipose exosome circ_sxc, which contributes to the brain exhibiting sleep disturbances and other "aging" features.

摘要

大脑老化通常会导致神经过程的衰退,是各种神经退行性疾病的主要风险因素,包括睡眠障碍和认知能力下降。脂肪组织外泌体作为脂肪细胞衍生的囊泡,可能介导脂肪组织对其他器官(包括大脑)的调节过程;然而,调节机制尚不清楚。我们分析了年轻(10 天)和年老(40 天)果蝇的睡眠-觉醒行为,发现年老的果蝇表现出睡眠碎片化增加,这与哺乳动物衰老的特征相似。为了研究肥胖对大脑老化的跨组织调节机制,我们提取了 10 天和 40 天的果蝇脂肪组织外泌体,并通过 RNA-seq 和差异分析鉴定了具有年龄依赖性表达差异的 circRNAs。此外,通过整合 GEO 数据库的 3 个数据集(GSE130158、GSE24992 和 GSE184559)的数据,最终筛选出与年龄显著相关的 circ_sxc。此外,随着年龄的增长,在大脑中积累并在与神经受体配体基因的预测结合关系中表现出抑制作用的保守靶标 dme-miR-87-3p 也随着年龄的增长而积累。总之,本研究表明,果蝇大脑可以通过摄取穿过血脑屏障的脂肪组织外泌体获得 circ_sxc。circ_sxc 通过海绵吸附抑制大脑 miR-87-3p 的表达,进而调节神经受体配体蛋白(5-HT1B、GABA-B-R1、Rdl、Rh7、qvr、NaCP60E)的表达,确保大脑神经元突触信号正常功能的突触信号。然而,随着年龄的增长,这种调节机制由于脂肪外泌体 circ_sxc 的下调而失调,导致大脑表现出睡眠障碍和其他“衰老”特征。

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