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Molecular modeling of full-length OxyR from Shewanella oneidensis MR-1 and molecular dynamics studies of the activation domain

机译:沙瓦氏假单胞菌MR-1全长OxyR的分子建模和激活域的分子动力学研究

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OxyR is a transcriptional factor, which activates transcription of antioxidant genes. In this study, we constructed a structural model for the full-length OxyR from Shewanella oneidensis MR-1 using threading and comparative modeling techniques. To further study the conformational changes, we also performed molecular dynamics simulations on the activation domain of OxyR. Molecular dynamics simulations were performed using GROMACS force field under periodic boundary conditions. The particle mesh Ewald (PME) method was used to treat long-range electrostatic interactions. The simulation results show that the oxidized form is very stable while the reduced form is quite flexible. Our results suggest that the reduced form provides structural flexibility for disulfide bond formation and which in turn regulates its function.
机译:OxyR是一种转录因子,可激活抗氧化剂基因的转录。在这项研究中,我们使用穿线法和比较建模技术构建了来自Shewanella oneidensis MR-1的全长OxyR的结构模型。为了进一步研究构象变化,我们还对OxyR的激活域进行了分子动力学模拟。在周期性边界条件下,使用GROMACS力场进行了分子动力学模拟。粒子网格Ewald(PME)方法用于处理远距离静电相互作用。模拟结果表明,氧化形式非常稳定,而还原形式则非常灵活。我们的结果表明,还原形式为二硫键的形成提供了结构上的灵活性,进而调节了其功能。

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