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Establishment and maintenance of alternative chromatin states at a multicopy gene locus

机译:在多拷贝基因位点建立和维持替代染色质状态

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In eukaryotes, each of the more than 100 copies of ribosomal RNA (rRNA) genes exists in either an RNA polymerase I transcribed open chromatin state or a nucleosomal, closed chromatin state. Open rRNA genes guarantee the cell's supply with structural components of the ribosome, whereas closed rRNA genes ensure genomic integrity. We report that the observed balance between open and closed rRNA gene chromatin states in proliferating yeast cells is due to a dynamic equilibrium of transcription-dependent removal and replication-dependent assembly of nucleosomes. Pol I transcription is required for the association of the HMG box protein Hmo1 with open rRNA genes, counteracting replication-independent nucleosome deposition and maintaining the open rRNA gene chromatin state outside of S phase. The findings indicate that the opposing effects of replication and transcription lead to a de novo establishment of chromatin states for rRNA genes during each cell cycle.
机译:在真核生物中,核糖体RNA(rRNA)基因的100多个拷贝中的每一个都以RNA聚合酶I转录的开放染色质状态或核小体的封闭染色质状态存在。开放的rRNA基因可确保细胞具有核糖体的结构成分,而封闭的rRNA基因可确保基因组完整性。我们报告说,在增殖的酵母细胞中打开和关闭的rRNA基因染色质状态之间观察到的平衡是由于核小体的转录依赖性去除和复制依赖性组装的动态平衡。 Pol I转录是HMG框蛋白Hmo1与开放rRNA基因缔合,抵消复制非依赖性核小体沉积并在S期之外维持开放rRNA基因染色质状态所必需的。这些发现表明,复制和转录的相反作用导致在每个细胞周期内从头建立rRNA基因的染色质状态。

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