Dynamic changes in mitochondrial localization in human neocortical basal radial glial cells during cell cycle

IF 2.3 4区 医学 Q3 NEUROSCIENCES
Vasiliki Gkini, Inés Gómez-Lozano, Oskari Heikinheimo, Takashi Namba
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Abstract

Mitochondria play critical roles in neural stem/progenitor cell proliferation and fate decisions. The subcellular localization of mitochondria in neural stem/progenitor cells during mitosis potentially influences the distribution of mitochondria to the daughter cells and thus their fates. Therefore, understanding the spatial dynamics of mitochondria provides important knowledge about brain development. In this study, we analyzed the subcellular localization of mitochondria in the fetal human neocortex with a particular focus on the basal radial glial cells (bRGCs), a neural stem/progenitor cell subtype attributed to the evolutionary expansion of the human neocortex. During interphase, bRGCs exhibit a polarized localization of mitochondria that is localized at the base of the process or the proximal part of the process. Thereafter, mitochondria in bRGCs at metaphase show unpolarized distribution in which the mitochondria are randomly localized in the cytoplasm. During anaphase and telophase, mitochondria are still localized evenly, but mainly in the periphery of the cytoplasm. Mitochondria start to accumulate at the cleavage furrow during cytokinesis. These results suggest that the mitochondrial localization in bRGCs is tightly regulated during the cell cycle, which may ensure the proper distribution of mitochondria to the daughter cells and, thus in turn, influence their fates.

Abstract Image

人类新皮质基底放射胶质细胞线粒体定位在细胞周期中的动态变化
线粒体在神经干细胞/祖细胞增殖和命运决定中起着关键作用。在有丝分裂过程中,神经干细胞/祖细胞中线粒体的亚细胞定位可能会影响线粒体在子细胞中的分布,从而影响子细胞的命运。因此,了解线粒体的空间动态可提供有关大脑发育的重要知识。在这项研究中,我们分析了线粒体在胎儿期人类新皮质中的亚细胞定位,重点是基底放射状胶质细胞(bRGCs),这是一种神经干细胞/祖细胞亚型,与人类新皮质的进化扩张有关。在间期,bRGCs 的线粒体呈现极化定位,定位在突起基部或突起近端。此后,bRGCs 的线粒体在分裂期呈现非极化分布,线粒体随机分布在细胞质中。在无极期和端粒期,线粒体仍然均匀分布,但主要分布在细胞质的外围。在细胞分裂过程中,线粒体开始在裂沟处聚集。这些结果表明,线粒体在bRGCs中的定位在细胞周期中受到严格调控,这可能会确保线粒体正确分布到子细胞中,进而影响子细胞的命运。
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来源期刊
CiteScore
5.80
自引率
8.00%
发文量
158
审稿时长
3-6 weeks
期刊介绍: Established in 1891, JCN is the oldest continually published basic neuroscience journal. Historically, as the name suggests, the journal focused on a comparison among species to uncover the intricacies of how the brain functions. In modern times, this research is called systems neuroscience where animal models are used to mimic core cognitive processes with the ultimate goal of understanding neural circuits and connections that give rise to behavioral patterns and different neural states. Research published in JCN covers all species from invertebrates to humans, and the reports inform the readers about the function and organization of nervous systems in species with an emphasis on the way that species adaptations inform about the function or organization of the nervous systems, rather than on their evolution per se. JCN publishes primary research articles and critical commentaries and review-type articles offering expert insight in to cutting edge research in the field of systems neuroscience; a complete list of contribution types is given in the Author Guidelines. For primary research contributions, only full-length investigative reports are desired; the journal does not accept short communications.
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