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Structural insights into dynamics of RecU–HJ complex formation elucidates key role of NTR and stalk region toward formation of reactive state

机译:对RecU-HJ复合物形成动力学的结构洞察阐明了NTR和茎区域对反应态形成的关键作用

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摘要

Holliday junction (HJ) resolving enzyme RecU is involved in DNA repair and recombination. We have determined the crystal structure of inactive mutant (D88N) of RecU from Bacillus subtilis in complex with a 12 base palindromic DNA fragment at a resolution of 3.2 Å. This structure shows the stalk region and the essential N-terminal region (NTR) previously unseen in our DNA unbound structure. The flexible nature of the NTR in solution was confirmed using SAXS. Thermofluor studies performed to assess the stability of RecU in complex with the arms of an HJ indicate that it confers stability. Further, we performed molecular dynamics (MD) simulations of wild type and an NTR deletion variant of RecU, with and without HJ. The NTR is observed to be highly flexible in simulations of the unbound RecU, in agreement with SAXS observations. These simulations revealed domain dynamics of RecU and their role in the formation of complex with HJ. The MD simulations also elucidate key roles of the NTR, stalk region, and breathing motion of RecU in the formation of the reactive state.
机译:霍利迪结(HJ)解析酶RecU参与DNA修复和重组。我们已经确定了枯草芽孢杆菌RecU的无活性突变体(D88N)的晶体结构,其复合物具有12个碱基的回文DNA片段,分辨率为3.2。这种结构显示了在我们的DNA未结合结构中以前看不见的茎区域和必需的N末端区域(NTR)。使用SAXS证实了溶液中NTR的柔韧性。进行热荧光研究以评估RecU与HJ臂配合时的稳定性,表明RecU具有稳定性。此外,我们进行了带有和不带有HJ的RecU的野生型和NTR缺失变体的分子动力学(MD)模拟。与SAXS观察结果一致,观察到NTR在模拟未绑定RecU时具有很高的灵活性。这些模拟揭示了RecU的域动力学及其在与HJ形成复合物中的作用。 MD模拟还阐明了NTR,茎区域和RecU在反应状态形成中的呼吸运动的关键作用。

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