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Ha-ras癌基因转化的小鼠成纤维细胞中组蛋白H1(S)-3的磷酸化

Histone H1(S)-3 phosphorylation in Ha-ras oncogene-transformed mouse fibroblasts.

作者信息

Chadee Deborah N, Peltier Cheryl P, Davie James R

机构信息

Manitoba Institute of Cell Biology, 675 McDermot Avenue, Winnipeg, Manitoba, R3E 0V9 Canada.

出版信息

Oncogene. 2002 Dec 5;21(55):8397-403. doi: 10.1038/sj.onc.1206029.

Abstract

Phosphorylation of linker histone H1(S)-3 (previously named H1b) and core histone H3 is elevated in mouse fibroblasts transformed with oncogenes or constitutively active mitogen-activated protein kinase (MAPK) kinase (MEK). H1(S)-3 phosphorylation is the only histone modification known to be dependent upon transcription and replication. Our results show that the increased amounts of phosphorylated H1(S)-3 in the oncogene Ha-ras-transformed mouse fibroblasts was a consequence of an elevated Cdk2 activity rather than the reduced activity of a H1 phosphatase, which our studies suggest is PP1. Induction of oncogenic ras expression results in an increase in H1(S)-3 and H3 phosphorylation. However, in contrast to the phosphorylation of H3, which occurred immediately following the onset of Ras expression, there was a lag of several hours before H1(S)-3 phosphorylation levels increased. We found that there was a transient increase in the levels of p21(cip1), which inhibited the H1 kinase activity of Cdk2. Cdk2 activity and H1(S)-3 phosphorylated levels increased after p21(cip1) levels declined. Our studies suggest that persistent activation of the Ras-MAPK signal transduction pathway in oncogene-transformed cells results in deregulated activity of kinases phosphorylating H3 and H1(S)-3 associated with transcribed genes. The chromatin remodelling actions of these modified histones may result in aberrant gene expression.

摘要

在用致癌基因或组成型活性丝裂原活化蛋白激酶(MAPK)激酶(MEK)转化的小鼠成纤维细胞中,连接组蛋白H1(S)-3(以前称为H1b)和核心组蛋白H3的磷酸化水平升高。H1(S)-3磷酸化是已知唯一依赖于转录和复制的组蛋白修饰。我们的结果表明,致癌基因Ha-ras转化的小鼠成纤维细胞中磷酸化H1(S)-3含量的增加是Cdk2活性升高的结果,而不是H1磷酸酶(我们的研究表明是PP1)活性降低的结果。致癌性ras表达的诱导导致H1(S)-3和H3磷酸化增加。然而,与H3的磷酸化在Ras表达开始后立即发生不同,H1(S)-3磷酸化水平增加之前有几个小时的延迟。我们发现p21(cip1)水平有短暂升高,它抑制了Cdk2的H1激酶活性。p21(cip1)水平下降后,Cdk2活性和H1(S)-3磷酸化水平增加。我们的研究表明,致癌基因转化细胞中Ras-MAPK信号转导通路的持续激活导致与转录基因相关的H3和H1(S)-3磷酸化激酶的活性失调。这些修饰组蛋白的染色质重塑作用可能导致异常的基因表达。

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