首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Mechanism of regulation of 'chromosome kissing' induced by Fob1 and its physiological significance
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Mechanism of regulation of 'chromosome kissing' induced by Fob1 and its physiological significance

机译:Fob1诱导的“染色体接吻”调控机制及其生理意义

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Protein-mediated "chromosome kissing" between two DNA sites in trans (or in cis) is known to facilitate three-dimensional control of gene expression and DNA replication. However, the mechanisms of regulation of the long-range interactions are unknown. Here, we show that the replication terminator protein Fob1 of Saccharomyces cerevisiae promoted chromosome kissing that initiated rDNA recombination and controlled the replicative life span (RLS). Oligomerization of Fob1 caused synaptic (kissing) interactions between pairs of terminator (Ter) sites that initiated recombination in rDNA. Fob1 oligomerization and Ter-Ter kissing were regulated by intramolecular inhibitory interactions between the C-terminal domain (C-Fob1) and the N-terminal domain (N-Fob1). Phosphomimetic substitutions of specific residues of C-Fob1 counteracted the inhibitory interaction. A mutation in either N-Fob1 that blocked Fob1 oligomerization or C-Fob1 that blocked its phosphorylation antagonized chromosome kissing and recombination and enhanced the RLS. The results provide novel insights into a mechanism of regulation of Fob1-mediated chromosome kissing.
机译:已知反式(或顺式)两个DNA位点之间的蛋白质介导的“染色体接吻”有助于基因表达和DNA复制的三维控制。但是,远程相互作用的调节机制尚不清楚。在这里,我们显示酿酒酵母的复制终止蛋白Fob1促进了染色体接吻,从而启动了rDNA重组并控制了复制寿命(RLS)。 Fob1的寡聚引起终止子(Ter)位点对之间的突触(亲吻)相互作用,从而引发rDNA中的重组。 Fob1寡聚和Ter-Ter接吻受C末端域(C-Fob1)和N末端域(N-Fob1)之间的分子内抑制性相互作用调节。 C-Fob1特定残基的拟膦酸酯取代抵消了抑制性相互作用。 N-Fob1中的一个突变阻止了Fob1的寡聚,C-Fob1中的一个突变阻止了其磷酸化,从而拮抗了染色体的亲吻和重组并增强了RLS。结果提供了新的见解,以调节Fob1介导的染色体接吻的机制。

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