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核因子 IA 和核因子 IB 共同参与调控小鼠出生后神经干细胞的自我更新。

Nuclear Factor I A and Nuclear Factor I B Are Jointly Required for Mouse Postnatal Neural Stem Cell Self-Renewal.

机构信息

Department of Biochemistry, New York State Center of Excellence in Bioinformatics and Life Sciences, Jacobs School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, New York, USA.

Genetics, Genomics & Bioinformatics Graduate Program, New York State Center of Excellence in Bioinformatics and Life Sciences, Jacobs School of Medicine and Biomedical Sciences, State University of New York at Buffalo, Buffalo, New York, USA.

出版信息

Stem Cells Dev. 2024 Apr;33(7-8):153-167. doi: 10.1089/scd.2022.0204. Epub 2024 Mar 21.

Abstract

Mouse postnatal neural stem cells (pNSCs) can be expanded in vitro in the presence of epidermal growth factor and fibroblast growth factor 2 and upon removal of these factors cease proliferation and generate neurons, astrocytes, and oligodendrocytes. The genetic requirements for self-renewal and lineage-commitment of pNSCs are incompletely understood. In this study, we show that the transcription factors NFIA and NFIB, previously shown individually, to be essential for the normal commitment of pNSCs to the astrocytic lineage in vivo, are jointly required for normal self-renewal of pNSCs in vitro and in vivo. Using conditional knockout alleles of and , we show that the simultaneous loss of these two genes under self-renewal conditions in vitro reduces the expression of the proliferation markers PCNA and Ki67, eliminates clonogenicity of the cells, reduces the number of cells in S phase, and induces aberrant differentiation primarily into the neuroblast lineage. This phenotype requires the loss of both genes and is not seen upon loss of or alone, nor with combined loss of and or and . These data demonstrate a unique combined requirement for both and for pNSC self-renewal.

摘要

小鼠出生后神经干细胞(pNSCs)可以在表皮生长因子和碱性成纤维细胞生长因子 2 的存在下在体外扩增,并且在去除这些因子后停止增殖并产生神经元、星形胶质细胞和少突胶质细胞。pNSCs 自我更新和谱系承诺的遗传要求尚未完全理解。在这项研究中,我们表明转录因子 NFIA 和 NFIB,以前分别显示为体内 pNSCs 向星形胶质细胞谱系正常分化所必需的,共同需要 pNSCs 在体外和体内的正常自我更新。使用 和 的条件性敲除等位基因,我们表明在体外自我更新条件下同时丧失这两个基因会降低增殖标志物 PCNA 和 Ki67 的表达,消除细胞的克隆形成能力,减少 S 期细胞数量,并诱导异常分化主要进入神经母细胞谱系。这种表型需要两个基因的丧失,并且在单独丧失 或 时不会出现,也不会在同时丧失 或 或 或 时出现。这些数据表明,对于 pNSC 的自我更新, 和 都有独特的联合需求。

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