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神经节苷脂GD3调节神经干细胞的静止状态并控制出生后的神经发生。

Ganglioside GD3 regulates neural stem cell quiescence and controls postnatal neurogenesis.

作者信息

Fuchigami Takahiro, Itokazu Yutaka, Yu Robert K

机构信息

Department of Neuroscience and Regenerative Medicine, Medical College of Georgia, Augusta University, Augusta, GA 30912, USA.

出版信息

bioRxiv. 2023 Mar 14:2023.03.14.532547. doi: 10.1101/2023.03.14.532547.

Abstract

The postnatal neural stem cell (NSC) pool hosts quiescent and activated radial glia-like NSCs contributing to neurogenesis throughout adulthood. However, the underlying regulatory mechanism during the transition from quiescent NSCs to activated NSCs in the postnatal NSC niche is not fully understood. Lipid metabolism and lipid composition play important roles in regulating NSC fate determination. Biological lipid membranes define the individual cellular shape and help maintain cellular organization and are highly heterogenous in structure and there exist diverse microdomains (also known as lipid rafts), which are enriched with sugar molecules, such as glycosphingolipids. An often overlooked but key aspect is that the functional activities of proteins and genes are highly dependent upon their molecular environments. We previously reported that ganglioside GD3 is the predominant species in NSCs and that the reduced postnatal NSC pools are observed in global GD3-synthase knockout (GD3S-KO) mouse brains. The specific roles of GD3 in determining the stage and cell-lineage determination of NSCs remain unclear, since global GD3S-KO mice cannot distinguish if GD3 regulates postnatal neurogenesis or developmental impacts. Here we show that inducible GD3 deletion in postnatal radial glia-like NSCs promotes the NSC activation, resulting in the loss of the long-term maintenance of the adult NSC pools. The reduced neurogenesis in the subventricular zone (SVZ) and the dentate gyrus (DG) of GD3S-conditional-knockout mice led to impaired olfactory and memory functions. Thus, our results provide convincing evidence that postnatal GD3 maintains the quiescent state of radial glia-like NSCs in the adult NSC niche.

摘要

出生后的神经干细胞(NSC)库包含静止和激活的放射状胶质样神经干细胞,它们在成年期全程对神经发生都有贡献。然而,出生后神经干细胞生态位中静止神经干细胞向激活神经干细胞转变过程中的潜在调控机制尚未完全明确。脂质代谢和脂质组成在调节神经干细胞命运决定中发挥重要作用。生物脂质膜界定了单个细胞的形状,有助于维持细胞组织,并且在结构上高度异质,存在多种微结构域(也称为脂筏),这些微结构域富含糖分子,如神经节苷脂。一个常被忽视但关键的方面是,蛋白质和基因的功能活动高度依赖于它们的分子环境。我们之前报道神经节苷脂GD3是神经干细胞中的主要种类,并且在全球GD3合酶基因敲除(GD3S-KO)小鼠大脑中观察到出生后神经干细胞库减少。GD3在决定神经干细胞的阶段和细胞谱系决定中的具体作用仍不清楚,因为全球GD3S-KO小鼠无法区分GD3是调节出生后神经发生还是发育影响。在这里我们表明,出生后放射状胶质样神经干细胞中可诱导的GD3缺失促进神经干细胞激活,导致成年神经干细胞库长期维持的丧失。GD3S条件性敲除小鼠脑室下区(SVZ)和齿状回(DG)中神经发生减少导致嗅觉和记忆功能受损。因此,我们的结果提供了令人信服的证据,表明出生后的GD3维持成年神经干细胞生态位中放射状胶质样神经干细胞的静止状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f82/10055067/fd489020ec5f/nihpp-2023.03.14.532547v1-f0002.jpg

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