Molecular and Cellular Biology Program, University of Washington, Seattle, WA, USA.
Immunol Rev. 2010 Nov;238(1):233-46. doi: 10.1111/j.1600-065X.2010.00952.x.
Current research suggests that a number of newly identified T-helper cell subsets retain a degree of context-dependent plasticity in their signature cytokine expression patterns. To understand this process, a major challenge is to determine the molecular mechanisms by which lineage-defining transcription factors regulate gene expression profiles in T-helper cells. This mechanistic information will aid in our interpretation of whether a T-helper cell state that expresses or retains the capacity to re-express a combination of lineage-defining transcription factors will have a stable or more flexible gene expression profile. Studies examining the developmental T-box transcription factor T-bet demonstrate the powerful information that is gained from combining in vivo analysis with basic biochemical and molecular mechanism approaches. Significantly, T-bet's ability to physically recruit epigenetic modifying complexes, in particular a Jmjd3 H3K27-demethylase and a Set7/9 H3K4-methyltransferase complex, to its target genes allows T-bet to effectively reverse and establish new epigenetic states. This observation suggests that until T-bet is permanently extinguished, T-helper cells will retain some plasticity toward a T-helper 1-like program. Therefore, insight into the complexity of T-helper cell commitment decisions will be aided by determining the molecular mechanisms for lineage-defining transcription factors.
目前的研究表明,一些新鉴定的 T 辅助细胞亚群在其标志性细胞因子表达模式中保持一定程度的依赖背景的可塑性。为了理解这个过程,一个主要的挑战是确定谱系定义转录因子调节 T 辅助细胞中基因表达谱的分子机制。这些机制信息将有助于我们解释表达或保留重新表达一系列谱系定义转录因子的能力的 T 辅助细胞状态是否具有稳定或更灵活的基因表达谱。研究检查了发育中的 T 盒转录因子 T-bet,证明了从体内分析与基本生化和分子机制方法相结合获得的强大信息。重要的是,T-bet 能够物理地招募表观遗传修饰复合物,特别是 Jmjd3 H3K27 去甲基酶和 Set7/9 H3K4 甲基转移酶复合物,到其靶基因,使 T-bet 能够有效地逆转和建立新的表观遗传状态。这一观察结果表明,只要 T-bet 不被永久熄灭,T 辅助细胞就会保持一定的向 T 辅助 1 样程序的可塑性。因此,通过确定谱系定义转录因子的分子机制,将有助于深入了解 T 辅助细胞决定的复杂性。