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NOESY 的非均匀采样?螺旋霉素的案例研究。

Non-uniform sampling for NOESY? A case study on spiramycin.

机构信息

Department of Chemistry-BMC, Uppsala University, Uppsala, Sweden.

出版信息

Magn Reson Chem. 2021 Jul;59(7):723-737. doi: 10.1002/mrc.5133. Epub 2021 Feb 2.

Abstract

To date, most nuclear magnetic resonance (NMR)-based 3-D structure determinations of both small molecules and of biopolymers utilize the nuclear Overhauser effect (NOE) via NOESY spectra. The acquisition of high-quality NOESY spectra is a prerequisite for quantitative analysis providing accurate interatomic distances. As the acquisition of NOE build-ups is time-consuming, acceleration of the process by the use of non-uniform sampling (NUS) may seem beneficial; however, the quantitativity of NOESY spectra acquired with NUS has not yet been validated. Herein, NOESY spectra with various extents of NUS have been recorded, artificial NUS spectra with two different sampling schemes created, and by using two different NUS reconstruction algorithms the influence of NUS on the data quality was evaluated. Using statistical analyses, NUS is demonstrated to influence the accuracy of quantitative NOE experiments. The NOE-based distances show an increased error as the sampling density decreases. Weak NOE signals are affected more severely by NUS than more intense ones. The application of NUS with NOESY comes at two major costs: the interatomic distances are determined with lower accuracy and long-range correlations are lost.

摘要

迄今为止,小分子和生物聚合物的大多数基于核磁共振(NMR)的 3D 结构测定都利用通过 NOESY 谱的核 Overhauser 效应(NOE)。高质量 NOESY 谱的获取是提供准确原子间距离的定量分析的前提条件。由于 NOE 堆积的获取很耗时,因此使用非均匀采样(NUS)来加速该过程似乎是有益的;然而,NUS 采集的 NOESY 谱的定量性质尚未得到验证。在此,记录了具有不同程度 NUS 的 NOESY 谱,创建了具有两种不同采样方案的人工 NUS 谱,并使用两种不同的 NUS 重建算法评估了 NUS 对数据质量的影响。通过统计分析,证明 NUS 会影响定量 NOE 实验的准确性。随着采样密度的降低,基于 NOE 的距离的准确性会增加。弱的 NOE 信号比强的信号受 NUS 的影响更大。使用带 NOESY 的 NUS 有两个主要代价:原子间距离的确定精度降低,长程相关性丢失。

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