Ura K, Kurumizaka H, Dimitrov S, Almouzni G, Wolffe A P
Laboratory of Molecular Embryology, National Institute of Child Health and Human Development, NIH, Bethesda, MD 20892-5431, USA.
EMBO J. 1997 Apr 15;16(8):2096-107. doi: 10.1093/emboj/16.8.2096.
We demonstrate using a dinucleosome template that acetylation of the core histones enhances transcription by RNA polymerase III. This effect is not dependent on an increased mobility of the core histone octamer with respect to DNA sequence. When linker histone is subsequently bound, we find both a reduction in nucleosome mobility and a repression of transcription. These effects of linker histone binding are independent of core histone acetylation, indicating that core histone acetylation does not prevent linker histone binding and the concomitant transcriptional repression. These studies are complemented by the use of a Xenopus egg extract competent both for chromatin assembly on replicating DNA and for RNA polymerase III transcription. Incorporation of acetylated histones and lack of linker histones together facilitate transcription by >10-fold in this system; however, they have little independent effect on transcription. Thus core histone acetylation significantly facilitates transcription, but this effect is inhibited by the assembly of linker histones into chromatin.
我们使用双核小体模板证明,核心组蛋白的乙酰化增强了RNA聚合酶III介导的转录。这种效应并不依赖于核心组蛋白八聚体相对于DNA序列的迁移率增加。当连接组蛋白随后结合时,我们发现核小体迁移率降低且转录受到抑制。连接组蛋白结合的这些效应独立于核心组蛋白乙酰化,表明核心组蛋白乙酰化并不阻止连接组蛋白结合以及随之而来的转录抑制。这些研究通过使用非洲爪蟾卵提取物得到补充,该提取物既能在复制DNA上进行染色质组装,又能进行RNA聚合酶III转录。在该系统中,乙酰化组蛋白的掺入和连接组蛋白的缺失共同促进转录超过10倍;然而,它们对转录几乎没有独立影响。因此,核心组蛋白乙酰化显著促进转录,但这种效应会被连接组蛋白组装到染色质中所抑制。