不同类型的多能干细胞代表不同的发育阶段。

Q4 Biochemistry, Genetics and Molecular Biology Results and Problems in Cell Differentiation Pub Date : 2024-01-01 DOI:10.1007/978-3-031-39027-2_2
Hisato Kondoh
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引用次数: 0

摘要

从哺乳动物或其他物种早期胚胎建立的多能干细胞系代表了体细胞发育开始前的胚胎阶段。在这些干细胞系中,细胞增殖能力得以保持,而发育进程则在特定发育阶段停止,该阶段由培养条件、细胞状态和物种组合决定。所有这些多能干细胞系都表达转录因子(TFs)Sox2和Pou5f1(Oct3/4);因此,这些TFs通常被视为多能因子。然而,这些转录因子的调控作用因细胞系类型而异。代表着着床前胚胎细胞(小鼠胚胎干细胞,mESCs)的细胞系主要受 Sox2 和 Pou5f1 的联合作用调控。 人类 ESCs 和小鼠上胚层干细胞(EpiSCs)分别代表着未成熟和成熟的上胚层细胞,其中 Otx2 和 Zic2 逐步取代着床前阶段 Sox2 和 Pou5f1 的调控作用。 核心 TFs 的这种转变是为启动体细胞发育做准备。
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Different Types of Pluripotent Stem Cells Represent Different Developmental Stages.

Pluripotent stem cell lines established from early-stage embryos of mammals or other species represent the embryonic stages before the initiation of somatic development. In these stem cell lines, cell proliferation capacity is maintained while developmental progression is arrested at a specific developmental stage that is determined by the combination of culture conditions, cell state, and species. All of these pluripotent stem cell lines express the transcription factors (TFs) Sox2 and Pou5f1 (Oct3/4); hence, these TFs are often regarded as pluripotency factors. However, the regulatory roles of these TFs vary depending on the cell line type. The cell lines representing preimplantation stage embryonic cells (mouse embryonic stem cells, mESCs) are regulated principally by the combined action of Sox2 and Pou5f1. Human ESCs and mouse epiblast stem cells (EpiSCs) represent immature and mature epiblast cells, respectively, where Otx2 and Zic2 progressively take over the preimplantation stage's regulatory roles of Sox2 and Pou5f1. This transition of the core TFs occurs to prepare for the initiation of somatic development.

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来源期刊
Results and Problems in Cell Differentiation
Results and Problems in Cell Differentiation Biochemistry, Genetics and Molecular Biology-Developmental Biology
CiteScore
1.90
自引率
0.00%
发文量
21
期刊介绍: Results and Problems in Cell Differentiation is an up-to-date book series that presents and explores selected questions of cell and developmental biology. Each volume focuses on a single, well-defined topic. Reviews address basic questions and phenomena, but also provide concise information on the most recent advances. Together, the volumes provide a valuable overview of this exciting and dynamically expanding field.
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