Chadee D N, Hendzel M J, Tylipski C P, Allis C D, Bazett-Jones D P, Wright J A, Davie J R
Manitoba Institute of Cell Biology, University of Manitoba, Winnipeg, Manitoba, R3E 0V9 Canada.
J Biol Chem. 1999 Aug 27;274(35):24914-20. doi: 10.1074/jbc.274.35.24914.
When the Ras mitogen-activated protein kinase (MAPK) signaling pathway of quiescent cells is stimulated with growth factors or phorbol esters, the early response genes c-fos and c-myc are rapidly induced, and concurrently there is a rapid phosphorylation of histone H3. Using an antibody specific for phosphorylated Ser-10 of H3, we show that Ser-10 of H3 is phosphorylated, and we provide direct evidence that phosphorylated H3 is associated with c-fos and c-myc genes in stimulated cells. H3 phosphorylation may contribute to proto-oncogene induction by modulating chromatin structure and releasing blocks in elongation. Previously we reported that persistent stimulation of the Ras-MAPK signaling pathway in oncogene-transformed cells resulted in increased amounts of phosphorylated histone H1. Here we show that phosphorylated H3 is elevated in the oncogene-transformed mouse fibroblasts. Further we show that induction of ras expression results in a rapid increase in H3 phosphorylation. H3 phosphatase, identified as PP1, activities in ras-transformed and parental fibroblast cells were similar, suggesting that elevated H3 kinase activity was responsible for the increased level of phosphorylated H3 in the oncogene-transformed cells. Elevated levels of phosphorylated H1 and H3 may be responsible for the less condensed chromatin structure and aberrant gene expression observed in the oncogene-transformed cells.
当用生长因子或佛波酯刺激静止细胞的Ras丝裂原活化蛋白激酶(MAPK)信号通路时,早期反应基因c-fos和c-myc会被迅速诱导,同时组蛋白H3会快速磷酸化。使用针对H3磷酸化丝氨酸-10的特异性抗体,我们发现H3的丝氨酸-10被磷酸化,并且我们提供了直接证据表明磷酸化的H3在受刺激的细胞中与c-fos和c-myc基因相关联。H3磷酸化可能通过调节染色质结构和解除延伸中的阻碍来促进原癌基因的诱导。之前我们报道过,在癌基因转化的细胞中持续刺激Ras-MAPK信号通路会导致磷酸化组蛋白H1的量增加。在这里我们表明,在癌基因转化的小鼠成纤维细胞中磷酸化的H3升高。此外,我们表明ras表达的诱导会导致H3磷酸化迅速增加。被鉴定为PP1的H3磷酸酶在ras转化的和亲代成纤维细胞中的活性相似,这表明升高的H3激酶活性是癌基因转化细胞中磷酸化H3水平增加的原因。磷酸化的H1和H3水平升高可能是癌基因转化细胞中观察到的染色质结构凝聚性降低和异常基因表达的原因。