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Structure Determination by Restrained Molecular Dynamics Using NMR Pseudocontact Shifts as Experimentally Determined Constraints

机译:通过使用NMR伪接触位移作为实验确定的约束的受限分子动力学确定结构。

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摘要

The structure of a DNA octamer d(TTGGCCAA)2 complexed to chromomycin-A3 and a single divalent cobalt ion has been solved by using the pseudocontact shifts due to the unpaired electrons on the cobalt. A protocol was developed and critically evaluated for using the pseudocontact shifts in structure determination. The pseudocontact shifts were input as experimental restraints in molecular dynamics simulations with or without NOE constraints. Both the magnitude and orientation of the susceptibility anisotropy tensor required for the shift calculations were determined during the simulations by iterative refinement. The pseudocontact shifts could be used to define the structure to a very high precision and accuracy compared with a corresponding NOE-determined structure. Convergence was obtained from different starting structures and tensors. A structure determination using both NOE’s and pseudocontact shifts revealed a general agreement between the two data sets. However, some evidence for a discrepancy between NOE’s and pseudocontact shifts was observed in the backbone and terminal base pairs of the DNA. Violations in shift or NOE restraints remaining in the final structures were examined and may be a reflection of motional averaging of the constraints and evidence for flexibility. This work demonstrates that pseudocontact shifts are a powerful tool for NMR structure determination.
机译:与钴霉素-A3和单个二价钴离子络合的DNA八聚体d(TTGGCCAA)2的结构已通过使用由于钴上未成对电子而产生的伪接触位移来解决。已开发出协议并对其进行了严格评估,以在结构确定中使用伪接触位移。在有或没有NOE约束的分子动力学模拟中,将伪接触位移作为实验约束输入。在模拟过程中,通过迭代细化确定了偏移计算所需的磁化率各向异性张量的大小和方向。与相应的NOE确定的结构相比,伪接触位移可用于将结构定义为非常高的精度和准确性。从不同的起始结构和张量获得收敛。使用NOE和伪接触位移的结构确定揭示了两个数据集之间的总体一致性。但是,在DNA的主链和末端碱基对中发现了一些NOE和假接触转移之间差异的证据。检查了保留在最终结构中的偏移或NOE约束违规情况,这可能反映了约束条件的运动平均和灵活性的证据。这项工作表明伪接触位移是确定NMR结构的有力工具。

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    Kechuan Tu; Miriam Gochin;

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  • 年(卷),期 -1(121),40
  • 年度 -1
  • 页码 9276–9285
  • 总页数 23
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