Department of Molecular and Cell Biology and QB3 Institute, University of California, Berkeley, Berkeley, California, USA.
Mol Cell Biol. 2012 Nov;32(21):4337-49. doi: 10.1128/MCB.00871-12. Epub 2012 Aug 20.
In Saccharomyces cerevisiae, the histone chaperone Rtt106 binds newly synthesized histone proteins and mediates their delivery into chromatin during transcription, replication, and silencing. Rtt106 is also recruited to histone gene regulatory regions by the HIR histone chaperone complex to ensure S-phase-specific expression. Here we showed that this Rtt106:HIR complex included Asf1 and histone proteins. Mutations in Rtt106 that reduced histone binding reduced Rtt106 enrichment at histone genes, leading to their increased transcription. Deletion of the chromatin boundary element Yta7 led to increased Rtt106:H3 binding, increased Rtt106 enrichment at histone gene regulatory regions, and decreased histone gene transcription at the HTA1-HTB1 locus. These results suggested a unique regulatory mechanism in which Rtt106 sensed the level of histone proteins to maintain the proper level of histone gene transcription. The role of these histone chaperones and Yta7 differed markedly among the histone gene loci, including the two H3-H4 histone gene pairs. Defects in silencing in rtt106 mutants could be partially accounted for by Rtt106-mediated changes in histone gene repression. These studies suggested that feedback mediated by histone chaperone complexes plays a pivotal role in regulating histone gene transcription.
在酿酒酵母中,组蛋白伴侣 Rtt106 结合新合成的组蛋白蛋白,并在转录、复制和沉默期间将其递送至染色质中。Rtt106 还被 HIR 组蛋白伴侣复合物募集到组蛋白基因调控区域,以确保有丝分裂期特异性表达。在这里,我们表明这种 Rtt106:HIR 复合物包括 Asf1 和组蛋白蛋白。降低组蛋白结合的 Rtt106 突变减少了组蛋白基因的 Rtt106 富集,导致其转录增加。删除染色质边界元件 Yta7 导致 Rtt106:H3 结合增加,组蛋白基因调控区域的 Rtt106 富集增加,以及 HTA1-HTB1 基因座上的组蛋白基因转录减少。这些结果表明了一种独特的调节机制,其中 Rtt106 感知组蛋白蛋白的水平以维持组蛋白基因转录的适当水平。这些组蛋白伴侣和 Yta7 在组蛋白基因座之间的作用明显不同,包括两个 H3-H4 组蛋白基因对。rtt106 突变体中的沉默缺陷可以部分归因于 Rtt106 介导的组蛋白基因抑制变化。这些研究表明,由组蛋白伴侣复合物介导的反馈在调节组蛋白基因转录中起着关键作用。