Bish Rebecca A, Myers Michael P
Watson School of Biological Sciences, Cold Spring Harbor Laboratory, Cold Spring Harbor, New York 11724, USA.
J Biol Chem. 2007 Aug 10;282(32):23184-93. doi: 10.1074/jbc.M701042200. Epub 2007 Jun 5.
DNA repair is regulated on many levels by ubiquitination. In order to identify novel connections between DNA repair pathways and ubiquitin signaling, we used mass spectrometry to identify proteins that interact with lysine 6-linked polyubiquitin chains. From this proteomic screen, we identified the DNA repair protein WRNIP1 (Werner helicase-interacting protein 1), along with nucleosome assembly protein 1, as novel ubiquitin-interacting proteins. We found that a small zinc finger domain at the N terminus of WRNIP1 is sufficient and necessary for noncovalent ubiquitin binding. This ubiquitin-binding zinc finger (UBZ) domain binds polyubiquitin but not monoubiquitin and appears to show no specificity for polyubiquitin chain linkage. A homologous zinc finger domain in RAD18 also binds polyubiquitin, suggesting a wider role for the UBZ domain in DNA repair. The WRNIP1 ubiquitin-binding function, along with its previously established ATPase activity, suggests that WRNIP1 plays a role in the metabolism of ubiquitinated proteins. Supporting this model, deletion of MGS1, the yeast homolog of WRNIP1, slows the rate of ubiquitin turnover, rendering yeast resistant to cycloheximide. We also find that WRNIP1 is heavily modified with ubiquitin and SUMO, revealing complex layers in the involvement of ubiquitin pathway proteins in the regulation of DNA repair. The novel ubiquitin-binding ability of WRNIP1 sheds light on the role of UBZ domain-containing proteins in postreplication DNA repair.
DNA修复在多个层面上受到泛素化的调控。为了确定DNA修复途径与泛素信号之间的新联系,我们使用质谱法来鉴定与赖氨酸6连接的多聚泛素链相互作用的蛋白质。通过这个蛋白质组学筛选,我们鉴定出DNA修复蛋白WRNIP1(沃纳解旋酶相互作用蛋白1)以及核小体组装蛋白1作为新的泛素相互作用蛋白。我们发现WRNIP1 N端的一个小锌指结构域对于非共价泛素结合是充分且必要的。这个泛素结合锌指(UBZ)结构域结合多聚泛素而不结合单泛素,并且似乎对多聚泛素链连接没有特异性。RAD18中的一个同源锌指结构域也结合多聚泛素,这表明UBZ结构域在DNA修复中具有更广泛的作用。WRNIP1的泛素结合功能,连同其先前确定的ATP酶活性,表明WRNIP1在泛素化蛋白质的代谢中发挥作用。支持这一模型的是,WRNIP1的酵母同源物MGS1的缺失减缓了泛素周转的速度,使酵母对环己酰亚胺产生抗性。我们还发现WRNIP1被泛素和SUMO大量修饰,揭示了泛素途径蛋白参与DNA修复调控的复杂层面。WRNIP1新的泛素结合能力揭示了含UBZ结构域的蛋白质在复制后DNA修复中的作用。