Myöhänen S, Baylin S B
Johns Hopkins Oncology Center, Baltimore, Maryland 21231, USA.
J Biol Chem. 2001 Jan 12;276(2):1634-42. doi: 10.1074/jbc.M004481200.
p16(INK4a) is frequently altered in human cancer, often through epigenetically mediated transcriptional silencing. However, little is known about the transcriptional regulation of this gene. To learn more about such control, we initiated studies of proteins that bind to the promoter in cancer cells that do, and do not, express the gene. We identify RNA helicase A (RHA) as a protein that binds much better to the p16(INK4a) promoter in the expressing cells. RHA has not previously been characterized to manifest sequence-specific DNA interaction but does so to the sequence 5' CGG ACC GCG TGC GC 3' in the p16(INK4a) promoter. The Drosophila homologue to RHA, maleless (Mle), functions in the fly for 2-fold activation of male X-chromosome genes. In our experimental setting, RHA induces a similar modest up-regulation of the p16(INK4a) promoter that is dependent upon its sequence-specific interaction. Mle colocalizes with hyperacetylated H4Ac16 on the X-chromosome and some autosomal loci. The decreased binding of RHA to p16(INK4a) in our cells, where the gene is transcriptionally inactive, is associated with decreased amounts of RHA that immunoprecipitate with acetylated lysine antibodies. Finally, we show RHA to be a cellular substrate for caspase-3, which decreases its sequence-specific binding to p16(INK4a) by cleavage of the N terminus. Thus, we have identified a new protein interaction with the p16(INK4a) promoter that involves an important protein for transcriptional modulation. This interaction is decreased in cancer cells, where this gene is aberrantly transcriptionally silent.
p16(INK4a)在人类癌症中经常发生改变,通常是通过表观遗传介导的转录沉默。然而,关于该基因的转录调控知之甚少。为了更多地了解这种调控,我们开始研究在表达和不表达该基因的癌细胞中与启动子结合的蛋白质。我们鉴定出RNA解旋酶A(RHA)是一种在表达细胞中与p16(INK4a)启动子结合能力更强的蛋白质。RHA以前尚未被表征为表现出序列特异性DNA相互作用,但它能与p16(INK4a)启动子中的5' CGG ACC GCG TGC GC 3'序列发生相互作用。RHA在果蝇中的同源物无雄性(Mle),在果蝇中对雄性X染色体基因有2倍的激活作用。在我们的实验环境中,RHA诱导p16(INK4a)启动子有类似的适度上调,这依赖于其序列特异性相互作用。Mle与X染色体和一些常染色体位点上的高乙酰化H4Ac16共定位。在我们的细胞中,该基因转录失活,RHA与p16(INK4a)的结合减少,这与用乙酰化赖氨酸抗体免疫沉淀的RHA量减少有关。最后,我们证明RHA是caspase-3的细胞底物,caspase-3通过切割N端降低其与p16(INK4a)的序列特异性结合。因此,我们鉴定出一种与p16(INK4a)启动子的新蛋白质相互作用,该相互作用涉及一种对转录调节很重要的蛋白质。在该基因异常转录沉默的癌细胞中,这种相互作用减弱。