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首页> 外文期刊>Journal of magnetic resonance >The determination of pair-distance distribution by double electron electron resonance: regularization by the length of distance discretization with Monte Carlo calculations
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The determination of pair-distance distribution by double electron electron resonance: regularization by the length of distance discretization with Monte Carlo calculations

机译:通过双电子电子共振确定对距分布:通过距离离散化长度的正则化和蒙特卡洛计算

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摘要

Pulsed double electron-electron resonance technique (DEER, or PELDOR) is applied to study conformations and aggregation of peptides, proteins, nucleic acids, and other macromolecules. For a pair of spin labels, experimental data allows for the determination of their distance distribution function, P(r). P(r) is derived as a solution of a first-kind Fredholm integral equation, which is an ill-posed problem. Here, we suggest regularization by increasing the distance discretization length to its upper limit where numerical integration still provides agreement with experiment. This upper limit is found to be well above the lower limit for which the solution instability appears because of the ill-posed nature of the problem. For solving the integral equation, Monte Carlo trials of P(r) functions are employed; this method has an obvious advantage of the fulfillment of the non-negativity constraint for P(r). The regularization by the increasing of distance discretization length for the case of overlapping broad and narrow distributions may be employed selectively, with this length being different for different distance ranges. The approach is checked for model distance distributions and for experimental data taken from literature for doubly spin-labeled DNA and peptide antibiotics. (C) 2016 Elsevier Inc. All rights reserved.
机译:脉冲双电子电子共振技术(DEER或PELDOR)用于研究肽,蛋白质,核酸和其他大分子的构象和聚集。对于一对旋转标记,实验数据可以确定其距离分布函数P(r)。派生P(r)作为第一类Fredholm积分方程的解,这是一个不适定的问题。在这里,我们建议通过将距离离散长度增加到其上限来进行正则化,而数值积分仍可以与实验保持一致。由于该问题的不适定性,发现该上限远高于溶液不稳定性出现的下限。为了求解积分方程,采用了P(r)函数的蒙特卡罗试验;该方法具有满足P(r)的非负约束的明显优势。对于宽分布和窄分布重叠的情况,可以通过增加距离离散长度来进行正则化,对于不同的距离范围,该长度是不同的。检查该方法的模型距离分布以及从文献中获得的自旋标记的DNA和肽抗生素的实验数据。 (C)2016 Elsevier Inc.保留所有权利。

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