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用于核酸结构预测的定点旋转标记距离测量方案指南。

A guideline for the distance measurement plans of site-directed spin labels for structural prediction of nucleic acids.

机构信息

Department of Biomedical Engineering, Faculty of Engineering, The Hashemite University, P.O. Box 330127, Zarqa, 13133, Jordan.

Department of Industrial Engineering, Faculty of Engineering, The Hashemite University, P.O. Box 330127, Zarqa, 13133, Jordan.

出版信息

J Mol Model. 2023 Dec 29;30(1):16. doi: 10.1007/s00894-023-05808-w.

Abstract

CONTEXT AND RESULTS

Site-directed spin labeling (SDSL) combined with electron paramagnetic resonance spectroscopy methods has been successfully used to predict the structures of nucleic acids. These methods measure the distances between spin labels yielding distance equations that are solved using numerical algorithms to provide one or several structural predictions. In this work, the minimum number of SDSL distance measurements and distance measurement types required to predict a unique nucleic acid structure were investigated. Our results indicate that at least six distance measurements should be obtained given that the distance measurements do not connect one SDSL on one arm with more than three SDSLs on the other arm. Moreover, there may be a preference for 1-to-1 SLs distance measurements rather than 1-to-many SLs as the latter was linked to undefined structures discussed in this study.

METHODS

Pairs of double-helical arms of nucleic acid were simulated using the finite element software Pro/ENGINEER (PTC Inc., Boston, MA). In each simulation, a specific SDSL distance measurement plan was adopted and the resulting structure was tested for movability. Immovable structures indicate that this plan will potentially result in a unique structural prediction of the nucleic acid. All the possible plans for SDSL distance measurements were investigated either by direct measurement or by extrapolation.

摘要

背景与结果

定点自旋标记(SDSL)与电子顺磁共振波谱学方法相结合,已成功用于预测核酸结构。这些方法测量自旋标记之间的距离,得出距离方程,然后使用数值算法求解这些方程,提供一个或多个结构预测。在这项工作中,研究了预测独特核酸结构所需的最少 SDSL 距离测量数和距离测量类型。我们的结果表明,至少应进行六次距离测量,前提是这些距离测量不将一个臂上的一个 SDSL 与另一个臂上的三个以上 SDSL 连接起来。此外,可能更倾向于 1 对 1 的 SLs 距离测量,而不是 1 对多的 SLs,因为后者与本研究中讨论的未定义结构有关。

方法

使用有限元软件 Pro/ENGINEER(PTC Inc.,波士顿,MA)模拟核酸的双链臂对。在每次模拟中,采用特定的 SDSL 距离测量方案,并测试得到的结构的可移动性。不可移动的结构表明,该方案将有可能对核酸进行独特的结构预测。通过直接测量或外推,研究了 SDSL 距离测量的所有可能方案。

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