Beckerman Rachel, Donner Aaron J, Mattia Melissa, Peart Melissa J, Manley James L, Espinosa Joaquin M, Prives Carol
Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Genes Dev. 2009 Jun 1;23(11):1364-77. doi: 10.1101/gad.1795709.
We reported previously that when cells are arrested in S phase, a subset of p53 target genes fails to be strongly induced despite the presence of high levels of p53. When DNA replication is inhibited, reduced p21 mRNA accumulation is correlated with a marked reduction in transcription elongation. Here we show that ablation of the protein kinase Chk1 rescues the p21 transcription elongation defect when cells are blocked in S phase, as measured by increases in both p21 mRNA levels and the presence of the elongating form of RNA polymerase II (RNAPII) toward the 3' end of the p21 gene. Recruitment of specific elongation and 3' processing factors (DSIF, CstF-64, and CPSF-100) is also restored. While additional components of the RNAPII transcriptional machinery, such as TFIIB and CDK7, are recruited more extensively to the p21 locus after DNA damage than after replication stress, their recruitment is not enhanced by ablation of Chk1. Significantly, ablating Chk2, a kinase closely related in substrate specificity to Chk1, does not rescue p21 mRNA levels during S-phase arrest. Thus, Chk1 has a direct and selective role in the elongation block to p21 observed during S-phase arrest. These findings demonstrate for the first time a link between the replication checkpoint mediated by ATR/Chk1 and the transcription elongation/3' processing machinery.
我们之前报道过,当细胞停滞在S期时,尽管p53水平很高,但p53靶基因的一个亚群未能被强烈诱导。当DNA复制受到抑制时,p21 mRNA积累的减少与转录延伸的显著降低相关。在这里我们表明,通过p21 mRNA水平的增加以及RNA聚合酶II(RNAPII)延伸形式向p21基因3'端的存在来衡量,当细胞在S期被阻断时,蛋白激酶Chk1的缺失挽救了p21转录延伸缺陷。特定延伸和3'加工因子(DSIF、CstF-64和CPSF-100)的募集也得以恢复。虽然与DNA损伤后相比,复制应激后RNAPII转录机制的其他成分,如TFIIB和CDK7,更广泛地募集到p21基因座,但Chk1缺失并未增强它们的募集。值得注意的是,在S期停滞期间,缺失与Chk1底物特异性密切相关的激酶Chk2并不能挽救p21 mRNA水平。因此,Chk1在S期停滞期间观察到的p21延伸阻滞中具有直接和选择性的作用。这些发现首次证明了由ATR/Chk1介导的复制检查点与转录延伸/3'加工机制之间的联系。