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Budding Yeast Silencing Complexes and Regulation of Sir2 Activity by Protein-Protein Interactions

机译:酵母发酵沉默复合物和蛋白质蛋白相互作用对Sir2活性的调节

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摘要

Gene silencing in the budding yeast Saccharomyces cerevisiae requires the enzymatic activity of the Sir2 protein, a highly conserved NAD-dependent deacetylase. In order to study the activity of native Sir2, we purified and characterized two budding yeast Sir2 complexes: the Sir2/Sir4 complex, which mediates silencing at mating-type loci and at telomeres, and the RENT complex, which mediates silencing at the ribosomal DNA repeats. Analyses of the protein compositions of these complexes confirmed previously described interactions. We show that the assembly of Sir2 into native silencing complexes does not alter its selectivity for acetylated substrates, nor does it allow the deacetylation of nucleosomal histones. The inability of Sir2 complexes to deacetylate nucleosomes suggests that additional factors influence Sir2 activity in vivo. In contrast, Sir2 complexes show significant enhancement in their affinities for acetylated substrates and their sensitivities to the physiological inhibitor nicotinamide relative to recombinant Sir2. Reconstitution experiments showed that, for the Sir2/Sir4 complex, these differences stem from the physical interaction of Sir2 with Sir4. Finally, we provide evidence that the different nicotinamide sensitivities of Sir2/Sir4 and RENT in vitro could contribute to locus-specific differences in how Sir2 activity is regulated in vivo.
机译:芽生啤酒酵母中的基因沉默需要Sir2蛋白(一种高度保守的NAD依赖性脱乙酰酶)的酶促活性。为了研究天然Sir2的活性,我们纯化并鉴定了两种发芽酵母Sir2复合物:Sir2 / Sir4复合物(在交配型基因座和端粒处介导沉默)和RENT复合物(在核糖体DNA介导沉默)。重复。这些复合物的蛋白质组成的分析证实了先前描述的相互作用。我们表明,将Sir2组装成天然沉默复合物不会改变其对乙酰化底物的选择性,也不会使核小体组蛋白脱乙酰化。 Sir2复合物无法使核小体脱乙酰化提示其他因素会影响体内的Sir2活性。相反,相对于重组Sir2,Sir2复合物对乙酰化底物的亲和力和对生理抑制剂烟酰胺的敏感性显着提高。重建实验表明,对于Sir2 / Sir4复合物,这些差异源于Sir2与Sir4的物理相互作用。最后,我们提供的证据表明,Sir2 / Sir4和RENT在体外对烟酰胺的敏感性不同,可能会导致在体内如何调节Sir2活性的基因座特异性差异。

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