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锌在小鼠大脑皮层形成过程中的摄取和储存。

Zinc Uptake and Storage During the Formation of the Cerebral Cortex in Mice.

机构信息

Université Grenoble Alpes, CNRS, CEA, BIG-LCBM, 38000, Grenoble, France.

ESRF, Grenoble, France.

出版信息

Mol Neurobiol. 2019 Oct;56(10):6928-6940. doi: 10.1007/s12035-019-1581-7. Epub 2019 Apr 2.

Abstract

The cerebral cortex (or neocortex) is a brain structure formed during embryogenesis. The present study seeks to provide a detailed characterization of the Zn homeostatic mechanisms during cerebral cortex formation and development. To reach that goal, we have combined high-throughput RNA-sequencing analysis of the whole murine genome, X-ray fluorescence nanoimaging (XRF), inductively coupled plasma-atomic emission spectrometry (ICP-AES), and live-cell imaging of dissociated cortical neurons loaded with the Zn fluorescent probe FluoZin-3. The transcriptomic analysis was conducted from mRNAs isolated from cortices collected at embryonic (E) days 11 (E11), E13, and E17 and on postnatal day 1 (PN1) pups. This permitted to characterize the temporal pattern of expression of the main genes participating in the cellular transport, storage, and release of Zn during corticogenesis. It appears that cells of the immature cortex express a wide diversity of actors involved in Zn homeostasis with Zip7, SOD1, and metallothioneins being the most abundant transcripts throughout corticogenesis. The quantification of total Zn with XRF and ICP-AES reveals a reduction of Zn levels. Moreover, this is accompanied by a diminution of the size of the internal pools of mobilizable Zn. This study illustrates the tight temporal and spatial regulation of Zn homeostasis during cerebral brain development.

摘要

大脑皮层(或新皮层)是胚胎发生过程中形成的大脑结构。本研究旨在详细描述大脑皮层形成和发育过程中的锌稳态机制。为了达到这个目标,我们结合了全鼠基因组高通量 RNA 测序分析、X 射线荧光纳米成像(XRF)、电感耦合等离子体原子发射光谱(ICP-AES)和加载锌荧光探针 FluoZin-3 的分离皮质神经元的活细胞成像。转录组分析是从 E11、E13 和 E17 胚胎日(E)和出生后第 1 天(PN1)幼仔收集的皮质中分离的 mRNA 进行的。这使得能够描述在皮质发生过程中参与 Zn 细胞内运输、储存和释放的主要基因的表达时间模式。似乎未成熟皮层中的细胞表达广泛的参与 Zn 稳态的因子,其中 Zip7、SOD1 和金属硫蛋白是整个皮质发生过程中最丰富的转录本。XRF 和 ICP-AES 对总 Zn 的定量显示 Zn 水平降低。此外,这伴随着可移动 Zn 内部池的大小减小。这项研究说明了在大脑发育过程中,Zn 稳态的严格时空调节。

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