Wu Wei-Hua, Wu Chwen-Huey, Ladurner Andreas, Mizuguchi Gaku, Wei Debbie, Xiao Hua, Luk Ed, Ranjan Anand, Wu Carl
Laboratory of Biochemistry and Molecular Biology, NCI, National Institutes of Health, Bethesda, Maryland 20892, USA.
J Biol Chem. 2009 Mar 6;284(10):6200-7. doi: 10.1074/jbc.M808830200. Epub 2008 Dec 16.
Variant histone H2AZ-containing nucleosomes are involved in the regulation of gene expression. In Saccharomyces cerevisiae, chromatin deposition of histone H2AZ is mediated by the fourteen-subunit SWR1 complex, which catalyzes ATP-dependent exchange of nucleosomal histone H2A for H2AZ. Previous work defined the role of seven SWR1 subunits (Swr1 ATPase, Swc2, Swc3, Arp6, Swc5, Yaf9, and Swc6) in maintaining complex integrity and H2AZ histone replacement activity. Here we examined the function of three additional SWR1 subunits, bromodomain containing Bdf1, actin-related protein Arp4 and Swc7, by analyzing affinity-purified mutant SWR1 complexes. We observed that depletion of Arp4 (arp4-td) substantially impaired the association of Bdf1, Yaf9, and Swc4. In contrast, loss of either Bdf1 or Swc7 had minimal effects on overall complex integrity. Furthermore, the basic H2AZ histone replacement activity of SWR1 in vitro required Arp4, but not Bdf1 or Swc7. Thus, three out of fourteen SWR1 subunits, Bdf1, Swc7, and previously noted Swc3, appear to have roles auxiliary to the basic histone replacement activity. The N-terminal region of the Swr1 ATPase subunit is necessary and sufficient to direct association of Bdf1 and Swc7, as well as Arp4, Act1, Yaf9 and Swc4. This same region contains an additional H2AZ-H2B specific binding site, distinct from the previously identified Swc2 subunit. These findings suggest that one SWR1 enzyme might be capable of binding two H2AZ-H2B dimers, and provide further insight on the hierarchy and interdependency of molecular interactions within the SWR1 complex.
含变体组蛋白H2AZ的核小体参与基因表达的调控。在酿酒酵母中,组蛋白H2AZ的染色质沉积由十四亚基的SWR1复合物介导,该复合物催化核小体组蛋白H2A与H2AZ的ATP依赖性交换。先前的工作确定了七个SWR1亚基(Swr1 ATP酶、Swc2、Swc3、Arp6、Swc5、Yaf9和Swc6)在维持复合物完整性和H2AZ组蛋白置换活性中的作用。在这里,我们通过分析亲和纯化的突变SWR1复合物,研究了另外三个SWR1亚基的功能,即含溴结构域的Bdf1、肌动蛋白相关蛋白Arp4和Swc7。我们观察到,Arp4缺失(arp4-td)会严重损害Bdf1、Yaf9和Swc4的结合。相反,Bdf1或Swc7的缺失对整体复合物完整性的影响最小。此外,SWR1在体外的基本H2AZ组蛋白置换活性需要Arp4,但不需要Bdf1或Swc7。因此,十四种SWR1亚基中的三种,即Bdf1、Swc7和先前提到的Swc3,似乎在基本组蛋白置换活性中起辅助作用。Swr1 ATP酶亚基的N端区域对于指导Bdf1和Swc7以及Arp4、Act1、Yaf9和Swc4的结合是必要且充分的。该区域还包含一个额外的H2AZ-H2B特异性结合位点,与先前鉴定的Swc2亚基不同。这些发现表明,一种SWR1酶可能能够结合两个H2AZ-H2B二聚体,并为SWR1复合物内分子相互作用的层次结构和相互依赖性提供了进一步的见解。