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Alternate HMQC experiments for recording HN and HC-correlation spectra in proteins at high throughput

机译:交替HMQC实验以高通量记录蛋白质中的HN和HC相关光谱

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Alternate implementations of the SOFAST-HMQC experiment are described. In these alternate SOFAST-HMQC experiments (ALSOFAST-HMQC) excitation of the magnetization of interest is achieved by non-selective rf pulses while preserving the equilibrium polarization of passive spins. This alternate excitation scheme also allows the incorporation of a novel sensitivity enhancement protocol which has been most recently developed by Brutscher and coworkers and which permits simultaneous detection of both the x- and y-components of the indirectly detected t1-interferograms without the need to introduce additional rf pulses and delays. We show that the ALSOFAST HC-HMQC experiment, which implements an alternate means of frequency selection, enables the detection of methyl resonances with large secondary proton chemical shifts. This is achieved by selecting coherences of interest via a frequency selective carbon inversion pulse. Detailed comparisons between SOFAST- and the presented ALSOFAST-HMQC experiment reveals a considerable degree of mutual complementarity.
机译:描述了SOFAST-HMQC实验的替代实现。在这些替代的SOFAST-HMQC实验(ALSOFAST-HMQC)中,感兴趣的磁化强度的激发是通过非选择性rf脉冲实现的,同时保留了无源自旋的平衡极化。这种替代的激励方案还允许采用Brutscher及其同事最近开发的新颖的灵敏度增强协议,该协议可以同时检测间接检测到的t1干涉图的x和y分量,而无需需要引入额外的射频脉冲和延迟。我们表明,ALSOFAST HC-HMQC实验实现了频率选择的一种替代手段,使得能够检测具有大的次级质子化学位移的甲基共振。这是通过频率选择性碳反转脉冲选择感兴趣的相干来实现的。 SOFAST-和提出的ALSOFAST-HMQC实验之间的详细比较揭示了相当程度的相互补充。

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