Jepsen Kristen, Solum Derek, Zhou Tianyuan, McEvilly Robert J, Kim Hyun-Jung, Glass Christopher K, Hermanson Ola, Rosenfeld Michael G
Howard Hughes Medical Institute, Department of Medicine, University of California, San Diego, School of Medicine, 9500 Gilman Drive, La Jolla, California 92093, USA.
Nature. 2007 Nov 15;450(7168):415-9. doi: 10.1038/nature06270. Epub 2007 Oct 10.
A series of transcription factors critical for maintenance of the neural stem cell state have been identified, but the role of functionally important corepressors in maintenance of the neural stem cell state and early neurogenesis remains unclear. Previous studies have characterized the expression of both SMRT (also known as NCoR2, nuclear receptor co-repressor 2) and NCoR in a variety of developmental systems; however, the specific role of the SMRT corepressor in neurogenesis is still to be determined. Here we report a critical role for SMRT in forebrain development and in maintenance of the neural stem cell state. Analysis of a series of markers in SMRT-gene-deleted mice revealed the functional requirement of SMRT in the actions of both retinoic-acid-dependent and Notch-dependent forebrain development. In isolated cortical progenitor cells, SMRT was critical for preventing retinoic-acid-receptor-dependent induction of differentiation along a neuronal pathway in the absence of any ligand. Our data reveal that SMRT represses expression of the jumonji-domain containing gene JMJD3, a direct retinoic-acid-receptor target that functions as a histone H3 trimethyl K27 demethylase and which is capable of activating specific components of the neurogenic program.
一系列对维持神经干细胞状态至关重要的转录因子已被确定,但功能重要的共抑制因子在维持神经干细胞状态和早期神经发生中的作用仍不清楚。先前的研究已对SMRT(也称为NCoR2,核受体共抑制因子2)和NCoR在多种发育系统中的表达进行了表征;然而,SMRT共抑制因子在神经发生中的具体作用仍有待确定。在此,我们报告了SMRT在前脑发育和维持神经干细胞状态中的关键作用。对一系列SMRT基因缺失小鼠中的标志物进行分析,揭示了SMRT在视黄酸依赖性和Notch依赖性前脑发育作用中的功能需求。在分离的皮质祖细胞中,在没有任何配体的情况下,SMRT对于防止视黄酸受体依赖性的沿神经元途径的分化诱导至关重要。我们的数据表明,SMRT抑制含jumonji结构域的基因JMJD3的表达,JMJD3是视黄酸受体的直接靶点,作为组蛋白H3三甲基K27去甲基化酶发挥作用,并且能够激活神经发生程序的特定组分。