T 盒蛋白与组蛋白修饰酶之间的重要相互作用。
An essential interaction between T-box proteins and histone-modifying enzymes.
作者信息
Miller Sara A, Weinmann Amy S
机构信息
Molecular and Cellular Biology Program, Department of Immunology, University of Washington, Seattle, WA 98195, USA.
出版信息
Epigenetics. 2009 Feb 16;4(2):85-8. doi: 10.4161/epi.4.2.8111.
Cellular differentiation requires precisely coordinated events to induce developmentally appropriate gene expression profiles. Lineage-defining transcription factors are responsible for establishing cell-type specific gene expression patterns during development. Recently, we reported a novel mechanism by which the T-box transcription factor T-bet interacts with JMJD3, an H3K27-demethylase, and Set7/9, an H3K4-methyltransferase (Genes Dev. 2008. 22: 2980-2993). Importantly, separable contact points in the T-box DNA binding domain mediate these interactions. Due to the highly conserved nature of the contact residues, these represent common interactions for the T-box family. Therefore, studies examining the molecular mechanisms that account for the ability of T-bet to regulate Ifng and Cxcr3, prototypic CD4+ Th1 genes, have provided novel insight into essential regulatory events that occur at diverse developmental transitions. In this article, we discuss the implications for these findings as well as explore the role epigenetic mechanisms may play in the development of human genetic diseases that are caused by T-box mutations, including congenital heart defects, cleft palate, pituitary deficiencies, and Ulnar-mammary syndrome.
细胞分化需要精确协调的事件来诱导发育过程中适当的基因表达谱。谱系定义转录因子负责在发育过程中建立细胞类型特异性基因表达模式。最近,我们报道了一种新机制,即T盒转录因子T-bet与H3K27去甲基化酶JMJD3和H3K4甲基转移酶Set7/9相互作用(《基因与发育》,2008年。22: 2980 - 2993)。重要的是,T盒DNA结合域中可分离的接触点介导了这些相互作用。由于接触残基的高度保守性质,这些代表了T盒家族的常见相互作用。因此,研究解释T-bet调控Ifng和Cxcr3(典型的CD4 + Th1基因)能力的分子机制,为在不同发育转变中发生的关键调控事件提供了新的见解。在本文中,我们讨论这些发现的意义,并探讨表观遗传机制在由T盒突变引起的人类遗传疾病(包括先天性心脏病、腭裂、垂体功能缺陷和尺骨-乳腺综合征)发展中可能发挥的作用。