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在神经回路发育过程中,树突状线粒体到达稳定位置。

Dendritic mitochondria reach stable positions during circuit development.

作者信息

Faits Michelle C, Zhang Chunmeng, Soto Florentina, Kerschensteiner Daniel

机构信息

Department of Ophthalmology and Visual Sciences, Washington University School of Medicine, Saint Louis, United States.

Graduate Program in Developmental, Regenerative and Stem Cell Biology, Washington University School of Medicine, St. Louis, United States.

出版信息

Elife. 2016 Jan 7;5:e11583. doi: 10.7554/eLife.11583.

Abstract

Mitochondria move throughout neuronal dendrites and localize to sites of energy demand. The prevailing view of dendritic mitochondria as highly motile organelles whose distribution is continually adjusted by neuronal activity via Ca(2+)-dependent arrests is based on observations in cultured neurons exposed to artificial stimuli. Here, we analyze the movements of mitochondria in ganglion cell dendrites in the intact retina. We find that whereas during development 30% of mitochondria are motile at any time, as dendrites mature, mitochondria all but stop moving and localize stably to synapses and branch points. Neither spontaneous nor sensory-evoked activity and Ca(2+) transients alter motility of dendritic mitochondria; and pathological hyperactivity in a mouse model of retinal degeneration elevates rather than reduces motility. Thus, our findings indicate that dendritic mitochondria reach stable positions during a critical developmental period of high motility, and challenge current views about the role of activity in regulating mitochondrial transport in dendrites.

摘要

线粒体在神经元树突中移动并定位于能量需求部位。关于树突线粒体是高度动态的细胞器,其分布通过依赖于钙离子的停滞由神经元活动不断调节的主流观点,是基于对暴露于人工刺激的培养神经元的观察。在这里,我们分析了完整视网膜中神经节细胞树突中线粒体的运动。我们发现,在发育过程中,任何时候有30%的线粒体是动态的,随着树突成熟,线粒体几乎停止移动并稳定定位于突触和分支点。自发活动或感觉诱发活动以及钙离子瞬变均不会改变树突线粒体的动态性;视网膜变性小鼠模型中的病理性多动反而提高而非降低了线粒体的动态性。因此,我们的研究结果表明,树突线粒体在高动态性的关键发育时期到达稳定位置,并挑战了当前关于活动在调节树突中线粒体运输作用的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0050/4749546/6c67efaa2df7/elife-11583-fig1.jpg

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