首页> 外文期刊>Nucleic Acids Research >Structure-based predictions of Rad1, Rad9, Hus1 and Rad17 participation in sliding clamp and clamp-loading complexes.
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Structure-based predictions of Rad1, Rad9, Hus1 and Rad17 participation in sliding clamp and clamp-loading complexes.

机译:Rad1,Rad9,Hus1和Rad17参与滑动夹具和夹具加载复合体的基于结构的预测。

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The repair of damaged DNA is coupled to the completion of DNA replication by several cell cycle checkpoint proteins, including, for example, in fission yeast Rad1(Sp), Hus1(Sp), Rad9(Sp) and Rad17(Sp). We have found that these four proteins are conserved with protein sequences throughout eukaryotic evolution. Using computational techniques, including fold recognition, comparative modeling and generalized sequence profiles, we have made high confidence structure predictions for the each of the Rad1, Hus1 and Rad9 protein families (Rad17(Sc), Mec3(Sc) and Ddc1(Sc) in budding yeast, respectively). Each of these families was found to share a common protein fold with that of PCNA, the sliding clamp protein that tethers DNA polymerase to its template. We used previously reported genetic and biochemical data for these proteins from yeast and human cells to predict a heterotrimeric PCNA-like ring structure for the functional Rad1/Rad9/Hus1 complex and to determine their exact order within it. In addition, for each individual protein family, contact regions with neighbors within the PCNA-like ring were identified. Based on a molecular model for Rad17(Sp), we concluded that members of this family, similar to the subunits of the RFC clamp-loading complex, are capable of coupling ATP binding with conformational changes required to load a sliding clamp onto DNA. This model substantiates previous findings regarding the behavior of Rad17 family proteins upon DNA damage and within the RFC complex of clamp-loading proteins.
机译:受损的DNA的修复与几种细胞周期检查点蛋白(包括例如裂变酵母Rad1(Sp),Hus1(Sp),Rad9(Sp)和Rad17(Sp))中DNA复制的完成相关。我们已经发现,这四种蛋白质在整个真核进化过程中都与蛋白质序列保守。使用包括折叠识别,比较模型和广义序列图谱在内的计算技术,我们对Rad1,Hus1和Rad9蛋白家族(Rad17(Sc),Mec3(Sc)和Ddc1(Sc)中的每个蛋白)进行了高置信度结构预测。酵母)。发现这些家族中的每个家族都与PCNA共享相同的蛋白质折叠,后者是将DNA聚合酶连接到其模板的滑动夹蛋白。我们使用以前报道的来自酵母和人类细胞的这些蛋白质的遗传和生化数据,来预测功能性Rad1 / Rad9 / Hus1复合物的异三聚体PCNA样环结构,并确定它们在其中的确切顺序。另外,对于每个单独的蛋白质家族,鉴定了与PCNA样环内的邻居的接触区域。基于Rad17(Sp)的分子模型,我们得出的结论是,该家族的成员与RFC钳装载复合物的亚基相似,能够将ATP结合与将滑动钳装载到DNA所需的构象变化偶联。该模型证实了先前关于Rad17家族蛋白在DNA损伤时以及在装夹蛋白的RFC复合物中的行为的发现。

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