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线粒体代谢在成体海马神经发生中早期谱系进展及衰老表型调控中的作用

Role of Mitochondrial Metabolism in the Control of Early Lineage Progression and Aging Phenotypes in Adult Hippocampal Neurogenesis.

作者信息

Beckervordersandforth Ruth, Ebert Birgit, Schäffner Iris, Moss Jonathan, Fiebig Christian, Shin Jaehoon, Moore Darcie L, Ghosh Laboni, Trinchero Mariela F, Stockburger Carola, Friedland Kristina, Steib Kathrin, von Wittgenstein Julia, Keiner Silke, Redecker Christoph, Hölter Sabine M, Xiang Wei, Wurst Wolfgang, Jagasia Ravi, Schinder Alejandro F, Ming Guo-Li, Toni Nicolas, Jessberger Sebastian, Song Hongjun, Lie D Chichung

机构信息

Institute of Biochemistry, Emil Fischer Center, Friedrich-Alexander Universität Erlangen-Nürnberg, 91054 Erlangen, Germany.

Institute of Biochemistry, Emil Fischer Center, Friedrich-Alexander Universität Erlangen-Nürnberg, 91054 Erlangen, Germany; Institute of Developmental Genetics, Helmholtz Center Munich, German Research Center for Environmental Health, 85764 Munich-Neuherberg, Germany.

出版信息

Neuron. 2017 Feb 8;93(3):560-573.e6. doi: 10.1016/j.neuron.2016.12.017. Epub 2017 Jan 19.

Abstract

Precise regulation of cellular metabolism is hypothesized to constitute a vital component of the developmental sequence underlying the life-long generation of hippocampal neurons from quiescent neural stem cells (NSCs). The identity of stage-specific metabolic programs and their impact on adult neurogenesis are largely unknown. We show that the adult hippocampal neurogenic lineage is critically dependent on the mitochondrial electron transport chain and oxidative phosphorylation machinery at the stage of the fast proliferating intermediate progenitor cell. Perturbation of mitochondrial complex function by ablation of the mitochondrial transcription factor A (Tfam) reproduces multiple hallmarks of aging in hippocampal neurogenesis, whereas pharmacological enhancement of mitochondrial function ameliorates age-associated neurogenesis defects. Together with the finding of age-associated alterations in mitochondrial function and morphology in NSCs, these data link mitochondrial complex function to efficient lineage progression of adult NSCs and identify mitochondrial function as a potential target to ameliorate neurogenesis-defects in the aging hippocampus.

摘要

细胞代谢的精确调控被认为是静息神经干细胞(NSCs)终身产生海马神经元的发育序列的重要组成部分。阶段特异性代谢程序的特征及其对成体神经发生的影响在很大程度上尚不清楚。我们发现,在快速增殖的中间祖细胞阶段,成体海马神经发生谱系严重依赖线粒体电子传递链和氧化磷酸化机制。通过敲除线粒体转录因子A(Tfam)来干扰线粒体复合体功能,会重现海马神经发生中衰老的多个特征,而线粒体功能的药理学增强则可改善与年龄相关的神经发生缺陷。结合在NSCs中发现的与年龄相关的线粒体功能和形态变化,这些数据将线粒体复合体功能与成体NSCs的有效谱系进展联系起来,并将线粒体功能确定为改善衰老海马中神经发生缺陷的潜在靶点。

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