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A molecular dynamics study of Fe2S2 putidaredoxin: multiple conformations of the C-terminal region.

机译:Fe2S2普达氧还蛋白的分子动力学研究:C末端区域的多种构象。

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摘要

Putidaredoxin (Pdx) plays an essential role as an electron donor and effector in the biochemical cycle involving cytochrome P450cam. Only recently has an NMR-derived structure for this protein been published, but because of the presence of a paramagnetic Fe2S2 center, the NMR assignment could not be completed for residues within a region of 8 A around the active site. That region was modeled by homology with a related protein. The structural refinement for those experiments was done in vacuum, without the use of electrostatic terms in the force field. The present manuscript will describe and discuss a series of long-time, unrestrained, solution molecular dynamic runs for this system. Results will be presented that construct a molecular-level picture that rationalizes experimental results concerning the conformation and mobility of the C-terminal residue Trp106. At least two different conformers are found for this residue during the simulations. The time scale for interconversion between them is found to be in the subnanosecond regime. The results presented here open the possibility for studying binding and electron transfer between Pdx and P450cam, in a framework that allows for dynamical information to be used during the computational process, instead of the single structures deposited on the protein data base.
机译:普达氧还蛋白(Pdx)在涉及细胞色素P450cam的生化循环中作为电子供体和效应子发挥着重要作用。直到最近才公开了该蛋白的NMR衍生结构,但是由于存在顺磁性Fe2S2中心,对于活性位点周围8 A区域内的残基,无法完成NMR分配。该区域通过与相关蛋白的同源性建模。这些实验的结构改进是在真空中完成的,没有在力场中使用静电项。本手稿将描述和讨论该系统的一系列长期,不受约束的溶液分子动力学运行。将提出的结果构成分子水平的图像,使有关C末端残基Trp106的构象和迁移率的实验结果合理化。在模拟过程中,针对该残基发现了至少两个不同的构象异构体。他们之间的相互转换的时间尺度被发现在亚纳秒范围内。此处提出的结果为研究Pdx和P450cam之间的结合和电子转移打开了可能性,该框架允许在计算过程中使用动态信息,而不是沉积在蛋白质数据库中的单个结构。

著录项

  • 作者

    Roitberg, A E;

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  • 年度 1997
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  • 原文格式 PDF
  • 正文语种 en
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