Meshorer Eran, Yellajoshula Dhananjay, George Eric, Scambler Peter J, Brown David T, Misteli Tom
National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892, USA.
Dev Cell. 2006 Jan;10(1):105-16. doi: 10.1016/j.devcel.2005.10.017.
Differentiation of embryonic stem (ES) cells from a pluripotent to a committed state involves global changes in genome expression patterns. Gene activity is critically determined by chromatin structure and interactions of chromatin binding proteins. Here, we show that major architectural chromatin proteins are hyperdynamic and bind loosely to chromatin in ES cells. Upon differentiation, the hyperdynamic proteins become immobilized on chromatin. Hyperdynamic binding is a property of pluripotent cells, but not of undifferentiated cells that are already lineage committed. ES cells lacking the nucleosome assembly factor HirA exhibit elevated levels of unbound histones, and formation of embryoid bodies is accelerated. In contrast, ES cells, in which the dynamic exchange of H1 is restricted, display differentiation arrest. We suggest that hyperdynamic binding of structural chromatin proteins is a functionally important hallmark of pluripotent ES cells that contributes to the maintenance of plasticity in undifferentiated ES cells and to establishing higher-order chromatin structure.
胚胎干细胞从多能状态向定向分化状态的转变涉及基因组表达模式的全局性变化。基因活性关键取决于染色质结构以及染色质结合蛋白的相互作用。在此,我们表明主要的染色质结构蛋白具有高度动态性,并且在胚胎干细胞中与染色质松散结合。在分化过程中,这些高度动态的蛋白会固定在染色质上。高度动态结合是多能细胞的特性,而非已定向分化的未分化细胞的特性。缺乏核小体组装因子HirA的胚胎干细胞表现出游离组蛋白水平升高,并且胚状体的形成加速。相反,H1动态交换受限的胚胎干细胞则表现出分化停滞。我们认为,染色质结构蛋白的高度动态结合是多能胚胎干细胞在功能上的一个重要标志,它有助于维持未分化胚胎干细胞的可塑性,并有助于建立高阶染色质结构。