Moazed D, Kistler A, Axelrod A, Rine J, Johnson A D
Department of Biochemistry and Biophysics, University of California, San Francisco 94143, USA.
Proc Natl Acad Sci U S A. 1997 Mar 18;94(6):2186-91. doi: 10.1073/pnas.94.6.2186.
The SIR2, SIR3, and SIR4 silent information regulator proteins are involved in the assembly of silent chromatin domains in the budding yeast Saccharomyces cerevisiae. Using a series of biochemical experiments, we have studied protein-protein interactions involving these proteins. We found that yeast extracts contained a SIR2/SIR4 complex that was associated with little or no SIR3. However, truncations of the N-terminal two-thirds of the SIR4 protein allowed it to efficiently associate with SIR3, suggesting that the N-terminal domain of SIR4 inhibited its interaction with SIR3. We propose that the SIR3 and SIR4 proteins interact only during the assembly of the SIR protein complex at the silencer and that an early step in assembly unmasks the SIR4 protein to allow its association with SIR3. To test whether the interactions observed in yeast extracts were direct, we tested these SIR-SIR interactions using bacterially expressed SIR proteins. We observed direct interactions between SIR4 and SIR2, SIR4 and SIR3, SIR2 and SIR3, SIR2 and SIR2, and SIR4 and SIR4, indicating that the associations observed in yeast extracts were direct.
SIR2、SIR3和SIR4沉默信息调节蛋白参与出芽酵母酿酒酵母中沉默染色质结构域的组装。通过一系列生化实验,我们研究了涉及这些蛋白的蛋白质-蛋白质相互作用。我们发现酵母提取物中含有一种SIR2/SIR4复合物,该复合物与很少或几乎没有SIR3相关联。然而,SIR4蛋白N端三分之二的截短使其能够有效地与SIR3结合,这表明SIR4的N端结构域抑制了其与SIR3的相互作用。我们提出,SIR3和SIR4蛋白仅在沉默子处SIR蛋白复合物组装期间相互作用,并且组装的早期步骤使SIR4蛋白暴露以允许其与SIR3结合。为了测试在酵母提取物中观察到的相互作用是否是直接的,我们使用细菌表达的SIR蛋白测试了这些SIR-SIR相互作用。我们观察到SIR4与SIR2、SIR4与SIR3、SIR2与SIR3、SIR2与SIR2以及SIR4与SIR4之间的直接相互作用,这表明在酵母提取物中观察到的关联是直接的。