Xing Guangxin, Kirouac Kevin, Shin Yoon Jung, Bell Stephen D, Ling Hong
Department of Biochemistry, University of Western Ontario, London, Ontario, Canada.
Mol Microbiol. 2009 Feb;71(3):678-91. doi: 10.1111/j.1365-2958.2008.06553.x. Epub 2008 Dec 1.
DNA polymerases are co-ordinated by sliding clamps (PCNA/beta-clamp) in translesion synthesis. It is unclear how these enzymes assemble on PCNA with geometric and functional compatibility. We report the crystal structure of a full-length Y-family polymerase, Dpo4, in complex with heterodimeric PCNA1-PCNA2 at 2.05 A resolution. Dpo4 exhibits an extended conformation that differs from the Dpo4 structures in apo- or DNA-bound form. Two hinges have been identified in Dpo4, which render the multidomain polymerase flexible conformations and orientations relative to PCNA. Dpo4 binds specifically to PCNA1 on the conserved ligand binding site. The C-terminal peptide of Dpo4 becomes structured with a 3(10) helix and dominates the specific binding. The Y-family polymerase also contacts PCNA1 with its finger, thumb and little finger domains, which are conformation-dependent protein-protein interactions that diversify the binding mode of Dpo4 on PCNA. The structure reveals a molecular model in which substrate/partner binding-coupled multiple conformations of a Y-family polymerase facilitate its recruitment and co-ordination on the sliding clamp. The conformational flexibility would turn the error-prone Y-family polymerase off when more efficient high-fidelity DNA polymerases work on undamaged DNA and turn it onto DNA templates to perform translesion synthesis when replication forks are stalled by DNA lesions.
在跨损伤合成过程中,DNA聚合酶由滑动夹(增殖细胞核抗原/β夹)协调。目前尚不清楚这些酶如何以几何和功能兼容性组装到增殖细胞核抗原上。我们报道了全长Y家族聚合酶Dpo4与异二聚体增殖细胞核抗原1-增殖细胞核抗原2复合物的晶体结构,分辨率为2.05埃。Dpo4呈现出一种伸展构象,与无配体或结合DNA形式的Dpo4结构不同。在Dpo4中已鉴定出两个铰链,这使得多结构域聚合酶相对于增殖细胞核抗原有灵活的构象和方向。Dpo4在保守的配体结合位点上特异性结合增殖细胞核抗原1。Dpo4的C末端肽形成一个3(10)螺旋结构并主导特异性结合。Y家族聚合酶还通过其手指、拇指和小指结构域与增殖细胞核抗原1接触,这些是构象依赖性的蛋白质-蛋白质相互作用,使Dpo4在增殖细胞核抗原上的结合模式多样化。该结构揭示了一种分子模型,其中Y家族聚合酶底物/伴侣结合耦合的多种构象促进其在滑动夹上的募集和协调。当更高效的高保真DNA聚合酶处理未受损的DNA时,构象灵活性会使易出错的Y家族聚合酶失活;而当复制叉因DNA损伤而停滞时,则会使其作用于DNA模板以进行跨损伤合成。