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首页> 外文期刊>Molecular and Cellular Biology >Transcriptional Activation of Histone Genes Requires NPAT-Dependent Recruitment of TRRAP-Tip60 Complex to Histone Promoters during the G1/S Phase Transition
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Transcriptional Activation of Histone Genes Requires NPAT-Dependent Recruitment of TRRAP-Tip60 Complex to Histone Promoters during the G1/S Phase Transition

机译:组蛋白基因的转录激活需要在G1 / S相变期间将NPAT依赖的TRRAP-Tip60复合物招募至组蛋白启动子。

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Transcriptional activation of histone subtypes is coordinately regulated and tightly coupled with the onset of DNA replication during S-phase entry. The underlying molecular mechanisms for such coordination and coupling are not well understood. The cyclin E-Cdk2 substrate NPAT has been shown to play an essential role in the transcriptional activation of histone genes at the G1/S-phase transition. Here, we show that NPAT interacts with components of the Tip60 histone acetyltransferase complex through a novel amino acid motif, which is functionally conserved in E2F and adenovirus E1A proteins. In addition, we demonstrate that transformation/transactivation domain-associated protein (TRRAP) and Tip60, two components of the Tip60 complex, associate with histone gene promoters at the G1/S-phase boundary in an NPAT-dependent manner. In correlation with the association of the TRRAP-Tip60 complex, histone H4 acetylation at histone gene promoters increases at the G1/S-phase transition, and this increase involves NPAT function. Suppression of TRRAP or Tip60 expression by RNA interference inhibits histone gene activation. Thus, our data support a model in which NPAT recruits the TRRAP-Tip60 complex to histone gene promoters to coordinate the transcriptional activation of multiple histone genes during the G1/S-phase transition.
机译:组蛋白亚型的转录激活受到协调调控,并与S期进入过程中DNA复制的开始紧密相关。对于这种配位和偶联的潜在分子机制还没有很好的理解。 Cyclin E-Cdk2底物NPAT已被证明在组蛋白基因G 1 / S的过渡激活中起着至关重要的作用。在这里,我们显示NPAT通过新的氨基酸基序与Tip60组蛋白乙酰基转移酶复合物的成分相互作用,该基序在E2F和腺病毒E1A蛋白中功能保守。此外,我们证明了Tip60复合体的两个组成部分-转化/反式激活域相关蛋白(TRRAP)和Tip60与NPAT中G 1 / S相边界的组蛋白基因启动子相关依赖的方式。与TRRAP-Tip60复合体的关联相关,组蛋白基因启动子处的组蛋白H4乙酰化在G 1 / S相转变处增加,并且这种增加涉及NPAT功能。 RNA干扰抑制TRRAP或Tip60表达可抑制组蛋白基因激活。因此,我们的数据支持了一个模型,其中NPAT将TRRAP-Tip60复合物募集到组蛋白基因启动子上,以协调G 1 / S期过渡过程中多个组蛋白基因的转录激活。

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