Centre of Anatomy, Department of Neuroanatomy, University Medical Centre Goettingen, Georg-August-University, 37075 Goettingen, Germany.
Proc Natl Acad Sci U S A. 2010 Apr 13;107(15):7042-7. doi: 10.1073/pnas.0912041107. Epub 2010 Mar 26.
Mutations of leukemia-associated AF9/MLLT3 are implicated in neurodevelopmental diseases, such as epilepsy and ataxia, but little is known about how AF9 influences brain development and function. Analyses of mouse mutants revealed that during cortical development, AF9 is involved in the maintenance of TBR2-positive progenitors (intermediate precursor cells, IPCs) in the subventricular zone and prevents premature cell cycle exit of IPCs. Furthermore, in postmitotic neurons of the developing cortical plate, AF9 is implicated in the formation of the six-layered cerebral cortex by suppressing a TBR1-positive cell fate mainly in upper layer neurons. We show that the molecular mechanism of TBR1 suppression is based on the interaction of AF9 with DOT1L, a protein that mediates transcriptional control through methylation of histone H3 lysine 79 (H3K79). AF9 associates with the transcriptional start site of Tbr1, mediates H3K79 dimethylation of the Tbr1 gene, and interferes with the presence of RNA polymerase II at the Tbr1 transcriptional start site. AF9 expression favors cytoplasmic localization of TBR1 and its association with mitochondria. Increased expression of TBR1 in Af9 mutants is associated with increased levels of TBR1-regulated expression of NMDAR subunit Nr1. Thus, this study identified AF9 as a developmental active epigenetic modifier during the generation of cortical projection neurons.
白血病相关基因 AF9/MLLT3 的突变与神经发育疾病有关,如癫痫和共济失调,但人们对 AF9 如何影响大脑发育和功能知之甚少。对小鼠突变体的分析表明,在皮质发育过程中,AF9 参与了室下区 TBR2 阳性祖细胞(中间前体细胞,IPC)的维持,并阻止 IPC 过早退出细胞周期。此外,在发育中的皮质板的有丝分裂后神经元中,AF9 通过抑制 TBR1 阳性细胞命运来参与六层大脑皮质的形成,这种抑制主要发生在上层神经元中。我们表明,TBR1 抑制的分子机制基于 AF9 与 DOT1L 的相互作用,DOT1L 是一种通过组蛋白 H3 赖氨酸 79(H3K79)甲基化介导转录控制的蛋白质。AF9 与 Tbr1 的转录起始位点结合,介导 Tbr1 基因的 H3K79 二甲基化,并干扰 RNA 聚合酶 II 在 Tbr1 转录起始位点的存在。AF9 的表达有利于 TBR1 的细胞质定位及其与线粒体的结合。在 Af9 突变体中 TBR1 的表达增加与 TBR1 调节的 NMDAR 亚基 Nr1 的表达增加有关。因此,本研究确定 AF9 是皮质投射神经元生成过程中的一种发育活跃的表观遗传修饰因子。