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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Extending the distance range accessed with continuous wave EPR with Gd~(3+) spin probes at high magnetic fields
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Extending the distance range accessed with continuous wave EPR with Gd~(3+) spin probes at high magnetic fields

机译:在强磁场下使用Gd〜(3+)自旋探针扩展连续波EPR的访问距离范围

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摘要

Interspin distances between 0.8 nm and 2.0 nm can be measured through the dipolar broadening of the continuous wave (cw) EPR spectrum of nitroxide spin labels at X-band (9.4 GHz, 0.35 T). We introduce Gd~(3+) as a promising alternative spin label for distance measurements by cw EPR above 7 Tesla, where the |-1/2) to |1/2> transition narrows below 1 mT and becomes extremely sensitive to dipolar broadening. To estimate the distance limits of cw EPR with Gd~(3+), we have measured spectra of frozen solutions of GdCl3 at 8.6 T (240 GHz) and 10 K at concentrations ranging from 50 mM to 0.1 mM, covering a range of average interspin distances. These experiments show substantial dipolar broadening at distances where line broadening cannot be observed with nitroxides at X-band. This data, and its agreement with calculated dipolar-broadened lineshapes, show Gd~(3+) to be sensitive to distances as long as ~3.8 nm. Further, the linewidth of a bis-Gd~(3+) complex with a flexible ~1.6 nm bridge is strongly broadened as compared to the mono-Gd~(3+) complex, demonstrating the potential for application to pairwise distances. Gd-DOTA-based chelates that can be functionalized to protein surfaces display linewidths narrower than aqueous GdCl3, implying they should be even more sensitive to dipolar broadening. Therefore, we suggest that the combination of tailored Gd~(3+) labels and high magnetic fields can extend the longest interspin distances measurable by cw EPR from 2.0 nm to 3.8 nm, cw EPR data at 260 K demonstrate that the line broadening remains clear out to similar average interspin distances, offering Gd~(3+) probes as promising distance rulers at temperatures higher than possible with conventional pulsed EPR distance measurements.
机译:可以通过X波段(9.4 GHz,0.35 T)上的一氧化氮自旋标记物的连续波(cw)EPR谱的偶极展宽来测量0.8 nm和2.0 nm之间的自旋间距离。我们引入Gd〜(3+)作为有前途的自旋标记,用于通过cw EPR在7 Tesla以上进行距离测量,其中| -1/2)到| 1/2>的跃迁变窄到1 mT以下,并且对偶极变宽变得极为敏感。为了估算Cd EPR与Gd〜(3+)的距离极限,我们测量了GdCl3在8.6 T(240 GHz)和10 K浓度为50 mM至0.1 mM范围内的冷冻溶液的光谱,涵盖了平均范围旋转距离。这些实验显示,在X波段的氮氧化物无法观察到线展宽的距离处,偶极展宽。该数据及其与计算出的偶极增宽线形的一致性表明,Gd〜(3+)对约3.8 nm的距离敏感。此外,与单-Gd_(3+)配合物相比,具有柔性〜1.6 nm桥的双-Gd〜(3+)配合物的线宽大大加宽,表明了应用于成对距离的潜力。可以被功能化为蛋白质表面的基于Gd-DOTA的螯合物显示的线宽比含水的GdCl3窄,这意味着它们对偶极子变宽应该更加敏感。因此,我们建议将量身定制的Gd〜(3+)标签和强磁场相结合可以将cw EPR可测量的最长自旋间距离从2.0 nm扩展到3.8 nm,在260 K的cw EPR数据表明线宽保持清晰与类似的平均自旋间距离相比,Gd〜(3+)探针可以在比常规脉冲EPR距离测量更高的温度下作为有希望的距离标尺。

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