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Crystal structure of the archaeal Holliday Junction resolvase Hjc and implications for DNA recognition

机译:古细菌霍利迪结交解酶Hjc的晶体结构及其对DNA识别的影响

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Background: Homologous recombination is a crucial mechanism in determining genetic diversity and repairing damaged chromosomes. Holliday junction is the universal DNA intermediate whose interaction with proteins is one of the major events in the recombinational process. Hjc is an archaeal endonuclease, which specifically resolves the junction DNA to produce two separate recombinant DNA duplexes. The atomic structure of Hjc should clarify the mechanisms of the specific recognition with Holliday junction and the catalytic reaction. Results: The crystal structure of Hjc from the hyperthermophilic archaeon Pyrococcus furiosus has been determined at 2.0 Angstrom resolution. The active Hjc molecule forms a homodimer, where an extensive hydrophobic interface tightly assembles two subunits of a single compact domain. The folding of the Hjc subunit is clearly different from any other Holliday junction resolvases thus far known. Instead, it resembles those of type II restriction endonucleases, including the configurations of the active site residues, which constitute the canonical catalytic motifs. The dimeric Hjc molecule displays an extensive basic surface on one side, which contains many conserved amino acids, including those in the active site. Conclusions: The architectural similarity of Hjc to restriction endonucleases allowed us to construct a putative model of the complex with Holliday junction. This model accounts for how Hjc recognizes and resolves the junction DNA in a specific manner. Mutational and biochemical analyses highlight the importance of some loops and the amino terminal region in interaction with DNA. [References: 42]
机译:背景:同源重组是决定遗传多样性和修复受损染色体的重要机制。霍利迪接头是通用的DNA中间体,其与蛋白质的相互作用是重组过程中的主要事件之一。 Hjc是一种古细菌内切核酸酶,可特异性分解连接DNA以产生两个单独的重组DNA双链体。 Hjc的原子结构应阐明与霍利迪结和催化反应的特异性识别机理。结果:在2.0埃分辨率下,已确定了来自超嗜热古生热球菌的Hjc的晶体结构。活性Hjc分子形成同型二聚体,其中广泛的疏水性界面紧密组装单个紧凑域的两个亚基。 Hjc亚基的折叠明显不同于迄今已知的任何其他霍利迪交界点。相反,它类似于II型限制性核酸内切酶,包括构成标准催化基序的活性位点残基的构型。二聚体Hjc分子在一侧显示广泛的碱性表面,其中包含许多保守的氨基酸,包括活性位点中的氨基酸。结论:Hjc与限制性核酸内切酶在结构上的相似性使我们能够构建具有Holliday连接的复合物的推定模型。该模型说明了Hjc如何以特定方式识别和解析连接DNA。突变和生化分析突出了某些环和与DNA相互作用的氨基末端区域的重要性。 [参考:42]

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