Durano Diletta, Lukacs Andrea, Di Felice Francesca, Micheli Gioacchino, Camilloni Giorgio
Dipartimento di Biologia e Biotecnologie "C. Darwin", Sapienza-Università di Roma, Roma 00185, Italy.
Istituto di Biologia e Patologia Molecolari, CNR, Roma, 00185, Italy.
Int J Biochem Cell Biol. 2017 Feb;83:76-83. doi: 10.1016/j.biocel.2016.12.012. Epub 2016 Dec 23.
Maintaining a stable and balanced histone pool is of paramount importance for genome stability and fine regulation of DNA replication and transcription. This involves a complex regulatory machinery, exploiting transcription factors as well as histone chaperones, chromatin remodelers and modifiers. The functional details of this machinery are as yet unclear. Previous studies report histone decrease in mammalian and yeast HMGB family mutants. In this study we find that Nhp6 proteins, the S. cerevisiae HMGB1 homologues, control histone gene expression by affecting nucleosome stability at regulative regions of the histone clusters. In addition, we observe that histone gene overexpression in the nhp6ab mutant is accompanied by downregulated translation, which in turn is responsible for the histone decrease phenotype. Our observations allow us to incorporate Nhp6 proteins into the large group of chromatin factors that tightly regulate histone gene expression.
维持稳定且平衡的组蛋白库对于基因组稳定性以及DNA复制和转录的精细调控至关重要。这涉及一个复杂的调控机制,该机制利用转录因子以及组蛋白伴侣、染色质重塑因子和修饰因子。此机制的功能细节尚不清楚。先前的研究报道了哺乳动物和酵母HMGB家族突变体中组蛋白的减少。在本研究中,我们发现酿酒酵母HMGB1同源物Nhp6蛋白通过影响组蛋白簇调控区域的核小体稳定性来控制组蛋白基因表达。此外,我们观察到nhp6ab突变体中组蛋白基因的过表达伴随着翻译的下调,而这反过来又导致了组蛋白减少的表型。我们的观察结果使我们能够将Nhp6蛋白纳入紧密调控组蛋白基因表达的大量染色质因子中。