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“市售产品即可”:使用定制脉冲进行 Cu(II)标记的 DEER 测量时的灵敏度考虑因素。

"Store-bought is fine": Sensitivity considerations using shaped pulses for DEER measurements on Cu(II) labels.

机构信息

Department of Chemistry, University of Pittsburgh, Pittsburgh, PA 15260, United States.

Department of Chemistry, University of Pittsburgh, Pittsburgh, PA 15260, United States.

出版信息

J Magn Reson. 2023 Apr;349:107413. doi: 10.1016/j.jmr.2023.107413. Epub 2023 Feb 26.

Abstract

The narrow excitation bandwidth of monochromic pulses is a sensitivity limitation for pulsed dipolar spectroscopy on Cu(II)-based measurements. In response, frequency-swept pulses with large excitation bandwidths have been adopted to probe a greater range of the EPR spectrum. However, much of the work utilizing frequency-swept pulses in Cu(II) distance measurements has been carried out on home-built spectrometers and equipment. Herein, we carry out systematic Cu(II) based distance measurements to demonstrate the capability of chirp pulses on commercial instrumentation. More importantly we delineate sensitivity considerations under acquisition schemes that are necessary for robust distance measurements using Cu(II) labels for proteins. We show that a 200 MHz sweeping bandwidth chirp pulse can improve the sensitivity of long-range distance measurements by factors of three to four. The sensitivity of short-range distances only increases slightly due to special considerations for the chirp pulse duration relative to the period length of the modulated dipolar signal. Enhancements in sensitivity also dramatically reduce measurement collection times enabling rapid collection of orientationally averaged Cu(II) distance measurements in under two hours.

摘要

单色脉冲的窄激发带宽是脉冲偶极子光谱法在基于 Cu(II) 的测量中的灵敏度限制。为了解决这个问题,已经采用了具有大激发带宽的频率扫描脉冲来探测更大范围的 EPR 谱。然而,在基于 Cu(II) 的距离测量中利用频率扫描脉冲的大部分工作都是在自制的光谱仪和设备上进行的。在此,我们进行了系统的基于 Cu(II) 的距离测量,以证明啁啾脉冲在商业仪器上的性能。更重要的是,我们阐述了在获取方案下的灵敏度考虑因素,这些因素对于使用 Cu(II) 标记物进行蛋白质的稳健距离测量是必要的。我们表明,200 MHz 扫频带宽啁啾脉冲可以将长程距离测量的灵敏度提高三到四倍。由于啁啾脉冲持续时间相对于调制偶极子信号的周期长度的特殊考虑,短程距离的灵敏度仅略有增加。灵敏度的提高也极大地缩短了测量采集时间,使得在不到两个小时的时间内快速采集各向同性平均 Cu(II)距离测量值成为可能。

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