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首页> 外文期刊>Journal of physical chemistry letters >Improved Sensitivity for Long-Distance Measurements in Biomolecules: Five-Pulse Double Electron-Electron Resonance
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Improved Sensitivity for Long-Distance Measurements in Biomolecules: Five-Pulse Double Electron-Electron Resonance

机译:用于生物分子中远距离测量的改进的灵敏度:五脉冲双电子-电子共振

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We describe significantly improved long-distance measurements in biomolecules by use of the new multipulse double electron-electron spin resonance (DEER) illustrated with the example of a five-pulse DEER sequence. In this sequence, an extra pulse at the pump frequency is used compared with standard four-pulse DEER. The position of the extra pulse is fixed relative to the three pulses of the detection sequence. This significantly reduces the effect of nuclear spin-diffusion on the electron-spin phase relaxation, thereby enabling longer dipolar evolution times that are required to measure longer distances. Using spin-labeled T4 lysozyme at a concentration less than 50 μM, as an example, we show that the evolution time increases by a factor of 1.8 in protonated solution and 1.4 in deuterated solution to 8 and 12 μs, respectively, with the potential to increase them further. This enables a significant increase in the measurable distances, improved distance resolution, or both.
机译:我们通过使用新的多脉冲双电子电子自旋共振(DEER)(以五脉冲DEER序列为例)说明了生物分子中远距离测量的显着改善。在此序列中,与标准四脉冲DEER相比,在泵浦频率处使用了一个额外的脉冲。额外脉冲的位置相对于检测序列的三个脉冲是固定的。这显着降低了核自旋扩散对电子自旋相弛豫的影响,从而使测量更长距离所需的更长的偶极子进化时间成为可能。以浓度小于50μM的自旋标记T4溶菌酶为例,我们显示质子化溶液中的进化时间增加了1.8倍,氘代溶液中的进化时间增加了1.4倍,分别达到8和12μs,并有可能进一步增加他们。这可以显着增加可测量的距离,改善的距离分辨率或同时实现这两者。

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