Scherer Andreas, Tischlik Sonja, Weickert Sabrina, Wittmann Valentin, Drescher Malte
Department of Chemistry and Konstanz Research School Chemical Biology, University of Konstanz, Konstanz, Germany.
Magn Reson (Gott). 2020 May 12;1(1):59-74. doi: 10.5194/mr-1-59-2020. eCollection 2020.
EPR distance determination in the nanometre region has become an important tool for studying the structure and interaction of macromolecules. Arbitrary waveform generators (AWGs), which have recently become commercially available for EPR spectrometers, have the potential to increase the sensitivity of the most common technique, double electron-electron resonance (DEER, also called PELDOR), as they allow the generation of broadband pulses. There are several families of broadband pulses, which are different in general pulse shape and the parameters that define them. Here, we compare the most common broadband pulses. When broadband pulses lead to a larger modulation depth, they also increase the background decay of the DEER trace. Depending on the dipolar evolution time, this can significantly increase the noise level towards the end of the form factor and limit the potential increase in the modulation-to-noise ratio (MNR). We found asymmetric hyperbolic secant (HS) pulses to perform best for short DEER traces, leading to a MNR improvement of up to 86 % compared to rectangular pulses. For longer traces we found symmetric hyperbolic secant (HS) pulses to perform best; however, the increase compared to rectangular pulses goes down to 43 %.
纳米区域内的电子顺磁共振(EPR)距离测定已成为研究大分子结构和相互作用的重要工具。任意波形发生器(AWG)最近已在市场上用于EPR光谱仪,它有可能提高最常用技术——双电子-电子共振(DEER,也称为脉冲电子双共振)的灵敏度,因为它可以产生宽带脉冲。宽带脉冲有几个系列,它们在一般脉冲形状和定义它们的参数方面有所不同。在这里,我们比较了最常见的宽带脉冲。当宽带脉冲导致更大的调制深度时,它们也会增加DEER信号迹线的背景衰减。根据偶极演化时间,这可能会在形状因子末尾显著增加噪声水平,并限制调制噪声比(MNR)的潜在增加。我们发现非对称双曲正割(HS)脉冲在短DEER信号迹线中表现最佳,与矩形脉冲相比,调制噪声比提高了高达86%。对于较长的信号迹线,我们发现对称双曲正割(HS)脉冲表现最佳;然而,与矩形脉冲相比,增加幅度降至43%。