早期生活压力诱导成年期脑线粒体动力学变化和性别特异性不良反应

IF 2.9 3区 医学 Q2 NEUROSCIENCES
Angeliki-Maria Vlaikou, Markus Nussbaumer, Aikaterini Iliou, Maria P. Papageorgiou, Chrysoula Komini, Daniela Theodoridou, Dimitra Benaki, Emmanuel Mikros, Evangelos Gikas, Maria Syrrou, Michaela D. Filiou
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引用次数: 0

摘要

早期生活压力暴露对成年期产生不利影响,是精神疾病的危险因素。早期生活压力的分子机制研究主要集中在激素和压力回路上。然而,关于线粒体和线粒体动力学(即线粒体分裂、融合、线粒体自噬和生物发生的协调)如何调节早期生命应激反应,人们知之甚少。本研究采用母鼠分离与早期断奶(MSEW)模式,研究成年期雄性和雌性C57BL/6小鼠早期生活应激诱导的行为和分子效应。我们首先应用行为测试来评估msew驱动的、焦虑相关的和压力应对的改变。然后,我们通过结合蛋白质、mRNA、线粒体DNA拷贝数(mtDNAcn)和代谢组学分析,寻找msew诱导的、以线粒体为中心的扣带皮层、海马和小脑以及血浆中的变化。我们发现MSEW小鼠更焦虑,扣带皮层抗氧化能力下降,海马中裂变调节因子Fis1和线粒体自噬激活因子Pink1的mRNA水平更高,表明线粒体降解的转变。海马凋亡标志物mRNA水平的改变进一步表明,MSEW驱动的凋亡激活伴随着小脑嘌呤分解代谢的失调。性别特异性分析显示,在分子水平上,msew诱导的雄性和雌性小鼠发生了明显的变化。我们的工作揭示了线粒体动力学在调节早期生活压力效应中的作用,并强调了线粒体为中心的失调是成年期早期生活压力的持续结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Early Life Stress Induces Brain Mitochondrial Dynamics Changes and Sex-Specific Adverse Effects in Adulthood

Early Life Stress Induces Brain Mitochondrial Dynamics Changes and Sex-Specific Adverse Effects in Adulthood

Early life stress exposure exerts detrimental effects in adulthood and is a risk factor for psychiatric disorders. Studies addressing the molecular mechanisms of early life stress have primarily focused on hormones and stress circuits. However, little is known on how mitochondria and mitochondrial dynamics (i.e., the orchestration of mitochondrial fission, fusion, mitophagy, and biogenesis) modulate early life stress responses. Here, we used a maternal separation with early weaning (MSEW) paradigm to investigate the behavioral and molecular early life stress-elicited effects in male and female C57BL/6 mice in adulthood. We first applied a behavioral test battery to assess MSEW-driven, anxiety-related and stress-coping alterations. We then looked for MSEW-induced, mitochondria-centered changes in cingulate cortex, hippocampus and cerebellum, as well as in plasma by combining protein, mRNA, mitochondrial DNA copy number (mtDNAcn) and metabolomics analyses. We found that MSEW mice are more anxious, show decreased antioxidant capacity in the cingulate cortex and have higher mRNA levels of the fission regulator Fis1 and the mitophagy activator Pink1 in the hippocampus, indicating a shift towards mitochondrial degradation. Hippocampal mRNA level alterations of apoptotic markers further suggest an MSEW-driven activation of apoptosis accompanied by a dysregulation of purine catabolism in the cerebellum in MSEW mice. Sex-specific analysis revealed distinct MSEW-induced changes in male and female mice at the molecular level. Our work reveals a previously unexplored role of mitochondrial dynamics in regulating early life stress effects and highlights a mitochondria-centered dysregulation as a persistent outcome of early life stress in adulthood.

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来源期刊
Journal of Neuroscience Research
Journal of Neuroscience Research 医学-神经科学
CiteScore
9.50
自引率
2.40%
发文量
145
审稿时长
1 months
期刊介绍: The Journal of Neuroscience Research (JNR) publishes novel research results that will advance our understanding of the development, function and pathophysiology of the nervous system, using molecular, cellular, systems, and translational approaches. JNR covers both basic research and clinical aspects of neurology, neuropathology, psychiatry or psychology. The journal focuses on uncovering the intricacies of brain structure and function. Research published in JNR covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of the nervous system, with emphasis on how disease modifies the function and organization.
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