Juan L J, Utley R T, Adams C C, Vettese-Dadey M, Workman J L
Center for Gene Regulation, Pennsylvania State University, University Park 16802-4500.
EMBO J. 1994 Dec 15;13(24):6031-40. doi: 10.1002/j.1460-2075.1994.tb06949.x.
In order to investigate the interrelated roles of nucleosome cores and histone H1 in transcription repression, we have employed a purified system to analyze the function of H1 in the repression of transcription factor binding to nucleosomes. H1 binding to nucleosome cores resulted in the repression of USF binding to nucleosomes. By contrast, H1 only slightly inhibited the binding of GAL4-AH, indicating that H1 differentially represses the binding of factors with different DNA-binding domains. H1-mediated repression of factor binding was dependent on the core histone amino-terminal tails. Removal of these domains alleviated H1-mediated repression and increased acetylation of these domains partly alleviated repression by H1. H1 binding assays suggest a less stable interaction of histone H1 with the core particle in the absence of the amino termini.
为了研究核小体核心与组蛋白H1在转录抑制中的相互关联作用,我们采用了一个纯化系统来分析H1在抑制转录因子与核小体结合方面的功能。H1与核小体核心的结合导致USF与核小体结合受到抑制。相比之下,H1仅轻微抑制GAL4-AH的结合,这表明H1对具有不同DNA结合结构域的因子的结合有差异地进行抑制。H1介导的因子结合抑制依赖于核心组蛋白的氨基末端尾巴。去除这些结构域可减轻H1介导的抑制作用,而这些结构域的乙酰化增加则部分减轻了H1的抑制作用。H1结合分析表明,在没有氨基末端的情况下,组蛋白H1与核心颗粒的相互作用不太稳定。