Cheung Edwin, Zarifyan Alla S, Kraus W Lee
Department of Molecular Biology and Genetics, Cornell University, Ithaca, New York 14853, USA.
Mol Cell Biol. 2002 Apr;22(8):2463-71. doi: 10.1128/MCB.22.8.2463-2471.2002.
Chromatin is the physiological template for many nuclear processes in eukaryotes, including transcription by RNA polymerase II. In vivo, chromatin is assembled from genomic DNA, core histones, linker histones such as histone H1, and nonhistone chromatin-associated proteins. Histone H1 is thought to act as a general repressor of transcription by promoting the compaction of chromatin into higher-order structures. We have used a biochemical approach, including an in vitro chromatin assembly and transcription system, to examine the effects of histone H1 on estrogen receptor alpha (ER alpha)-mediated transcription with chromatin templates. We show that histone H1 acts as a potent repressor of ligand- and coactivator-regulated transcription by ER alpha. Histone H1 exerts its repressive effect without inhibiting the sequence-specific binding of ER alpha to chromatin or the overall extent of targeted acetylation of nucleosomal histones by the coactivator p300. Instead, histone H1 acts by blocking a specific step in the ER alpha-dependent transcription process, namely, transcription initiation, without affecting transcription reinitiation. Together, our data indicate that histone H1 acts selectively to reduce the overall level of productive transcription initiation by restricting promoter accessibility and preventing the ER alpha-dependent formation of a stable transcription pre-initiation complex.
染色质是真核生物中许多核过程的生理模板,包括RNA聚合酶II介导的转录。在体内,染色质由基因组DNA、核心组蛋白、连接组蛋白(如组蛋白H1)和非组蛋白染色质相关蛋白组装而成。组蛋白H1被认为通过促进染色质压缩成高阶结构而作为转录的一般抑制因子。我们采用了一种生化方法,包括体外染色质组装和转录系统,来研究组蛋白H1对雌激素受体α(ERα)介导的染色质模板转录的影响。我们发现组蛋白H1作为ERα介导的配体和共激活因子调控转录的有效抑制因子。组蛋白H1发挥其抑制作用时,不会抑制ERα与染色质的序列特异性结合,也不会抑制共激活因子p300对核小体组蛋白的靶向乙酰化的总体程度。相反,组蛋白H1通过阻断ERα依赖的转录过程中的一个特定步骤,即转录起始,而不影响转录再起始来发挥作用。总之,我们的数据表明,组蛋白H1通过限制启动子可及性并阻止稳定的转录起始前复合物的ERα依赖性形成,选择性地降低了有生产性的转录起始的总体水平。