Abteilung für Genetik, Zentrum für Medizinische Biotechnologie (ZMB), Universität Duisburg-Essen, D-45141 Essen, Germany.
Genes Dev. 2011 Sep 1;25(17):1835-46. doi: 10.1101/gad.17175111.
The silent information regulator 2/3/4 (Sir2/3/4) complex is required for gene silencing at the silent mating-type loci and at telomeres in Saccharomyces cerevisiae. Sir3 is closely related to the origin recognition complex 1 subunit and consists of an N-terminal bromo-adjacent homology (BAH) domain and a C-terminal AAA(+) ATPase-like domain. Here, through a combination of structure biology and exhaustive mutagenesis, we identified unusual, silencing-specific features of the AAA(+) domain of Sir3. Structural analysis of the putative nucleotide-binding pocket in this domain reveals a shallow groove that would preclude nucleotide binding. Mutation of this site has little effect on Sir3 function in vivo. In contrast, several surface regions are shown to be necessary for the Sir3 silencing function. Interestingly, the Sir3 AAA(+) domain is shown here to bind chromatin in vitro in a manner sensitive to histone H3K79 methylation. Moreover, an exposed loop on the surface of this Sir3 domain is found to interact with Sir4. In summary, the unique folding of this conserved Sir3 AAA(+) domain generates novel surface regions that mediate Sir3-Sir4 and Sir3-nucleosome interactions, both being required for the proper assembly of heterochromatin in living cells.
沉默信息调节因子 2/3/4(Sir2/3/4)复合物是酿酒酵母沉默交配型基因座和端粒基因沉默所必需的。Sir3 与起始识别复合物 1 亚基密切相关,由一个 N 端溴相邻同源(BAH)结构域和一个 C 端 AAA(+)ATP 酶样结构域组成。在这里,通过结构生物学和详尽的诱变,我们确定了 Sir3 的 AAA(+)结构域中沉默特异性的不寻常特征。该结构域中假定核苷酸结合口袋的结构分析显示出一个浅沟,这将排除核苷酸结合。该位点的突变对 Sir3 的体内功能几乎没有影响。相比之下,几个表面区域对于 Sir3 的沉默功能是必需的。有趣的是,这里显示 Sir3 AAA(+)结构域以一种对组蛋白 H3K79 甲基化敏感的方式在体外与染色质结合。此外,在这个 Sir3 结构域的表面上发现一个暴露的环与 Sir4 相互作用。总之,这个保守的 Sir3 AAA(+)结构域的独特折叠产生了新型的表面区域,介导 Sir3-Sir4 和 Sir3-核小体相互作用,这两者都是活细胞中异染色质正确组装所必需的。