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核 Ago2 在 hUCB-MSCs 分化和自我更新中的关键作用:通过干细胞特性控制。

Crucial role of nuclear Ago2 for hUCB-MSCs differentiation and self-renewal via stemness control.

机构信息

Laboratory of Stem Cell Biology, Department of Biotechnology, College of Veterinary Medicine, Seoul, Korea.

出版信息

Antioxid Redox Signal. 2012 Jan 15;16(2):95-111. doi: 10.1089/ars.2011.3975. Epub 2011 Sep 21.

Abstract

AIMS

Argonaute2 (Ago2) has intrinsic endonuclease activity in microRNA processing that plays a fundamental role in gene regulation. In this study, we demonstrate novel functions and molecular mechanisms of nuclear Ago2 in the self-renewal and plasticity of human umbilical cord blood-derived mesenchymal stem cells (hUCB-MSCs).

RESULTS

Nuclear Ago2 binds to a set of regulatory genes, including Ago2 itself, Oct4, Sox2, Nanog, GATA, STAT3, and β-catenin, that potentially target fundamental functions of stem cells. Direct regulation of the stemness genes by nuclear Ago2 was also crucial for cell self-renewal, survival, and differentiation into various types of tissues or cells, including neural cells and β-cells. Moreover, regulation of Oct4 by Ago2 directly controls the stem cell plasticity-determining signal mediators JAK2/STAT3 and Wnt5A/β-catenin and positively regulates cell proliferation and differentiation via blockage of ROS generation and P38/JNK inactivation. Nuclear Ago2 or stemness expression lead increased stem cell identity and decreased differentiation into a mesodermal lineage but also led to increased neural differentiation and β-cell differentiation in hUCB-MSCs. Nuclear Ago2-mediated stemness expression in hUCB-MSCs is also involved in cell survival, helping cells escape apoptotic cell death via inactivation of P38/JNK, caspase-3, and Bax.

INNOVATION AND CONCLUSION

This study reveals that nuclear Ago2 globally controls stem cell self-renewal and differentiation through direct regulation of stemness genes and important signal mediator activation following inactivation of ROS/P38/JNK and activation of the JAK/STAT3 and Wnt/ β-catenin signal pathways.

摘要

目的

Argonaute2(AGO2)在 miRNA 加工过程中具有内在的内切酶活性,在基因调控中发挥着基础作用。在这项研究中,我们证明了核 AGO2 在人脐带来源间充质干细胞(hUCB-MSCs)自我更新和可塑性中的新功能和分子机制。

结果

核 AGO2 与一组调节基因结合,包括 Ago2 本身、Oct4、Sox2、Nanog、GATA、STAT3 和β-catenin,这些基因可能靶向干细胞的基本功能。核 AGO2 对干性基因的直接调控对于细胞自我更新、存活和分化为各种类型的组织或细胞,包括神经细胞和β细胞,也是至关重要的。此外,AGO2 对 Oct4 的调控直接控制了决定干细胞可塑性的信号介质 JAK2/STAT3 和 Wnt5A/β-catenin,并通过阻断 ROS 生成和 P38/JNK 失活,正向调控细胞增殖和分化。核 AGO2 或干性表达增加了干细胞的特性,减少了向中胚层谱系的分化,但也增加了 hUCB-MSCs 的神经分化和β细胞分化。核 AGO2 介导的 hUCB-MSCs 干性表达也参与细胞存活,通过失活 P38/JNK、caspase-3 和 Bax 帮助细胞逃避细胞凋亡。

创新与结论

本研究揭示了核 AGO2 通过直接调控干性基因和重要信号介质的激活,在 ROS/P38/JNK 失活和 JAK/STAT3 和 Wnt/β-catenin 信号通路激活后,全面控制干细胞的自我更新和分化。

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