Moretti P, Freeman K, Coodly L, Shore D
Department of Microbiology, Columbia University College of Physicians & Surgeons, New York, New York 10032.
Genes Dev. 1994 Oct 1;8(19):2257-69. doi: 10.1101/gad.8.19.2257.
The maintenance of transcriptional silencing at HM mating-type loci and telomeres in yeast requires the SIR2, SIR3, and SIR4 proteins, none of which appear to be DNA-binding proteins. Here we show that SIR3 and SIR4 interact with a carboxy-terminal domain of the silencer, telomere, and UAS-binding protein RAP1. We identified SIR3 and SIR4 in a two-hybrid screen for RAP1-interacting factors and showed that SIR3 interacts both with itself and with SIR4. The interaction between RAP1 and SIR3 can be observed in vitro in the absence of other yeast proteins. Consistent with the notion that native SIR proteins interact with the RAP1 carboxyl terminus, we show that mutation of the endogenous SIR3 and SIR4 genes increases transcriptional activation by LexA/RAP1 hybrids. To test the importance of the RAP1-SIR3 interaction for silencing, we identified mutations in the RAP1 carboxyl terminus that either diminish or abolish this interaction. When introduced into the native RAP1 protein, these mutations cause corresponding defects in silencing at both HMR and telomeres. We propose that RAP1 acts in the initiation of transcriptional silencing by recruiting a complex of SIR proteins to the chromosome via protein-protein interactions. These data are consistent with a model in which SIR3 and SIR4 play a structural role in the maintenance of silent chromatin and indicate that their action is initiated at the silencer itself.
酵母中HM交配型基因座和端粒处转录沉默的维持需要SIR2、SIR3和SIR4蛋白,这些蛋白似乎都不是DNA结合蛋白。我们在此表明,SIR3和SIR4与沉默子、端粒及上游激活序列结合蛋白RAP1的羧基末端结构域相互作用。我们在针对RAP1相互作用因子的双杂交筛选中鉴定出了SIR3和SIR4,并表明SIR3既能与自身相互作用,也能与SIR4相互作用。在没有其他酵母蛋白的情况下,可在体外观察到RAP1与SIR3之间的相互作用。与天然SIR蛋白与RAP1羧基末端相互作用的观点一致,我们表明内源性SIR3和SIR4基因的突变会增加LexA/RAP1杂种的转录激活。为了测试RAP1-SIR3相互作用对沉默的重要性,我们在RAP1羧基末端鉴定出了减少或消除这种相互作用的突变。当将这些突变引入天然RAP1蛋白中时,它们会在HMR和端粒处的沉默中引起相应的缺陷。我们提出,RAP1通过蛋白质-蛋白质相互作用将SIR蛋白复合物招募到染色体上,从而在转录沉默的起始过程中发挥作用。这些数据与一个模型一致,在该模型中,SIR3和SIR4在沉默染色质的维持中发挥结构作用,并表明它们的作用始于沉默子本身。