Helmholtz-Zentrum München (HMGU), Deutsches Forschungszentrum für Gesundheit und Umwelt, Ingolstädter Landstr. 1, 85764, Neuherberg, Germany.
Max Planck Institute for Biophysical Chemistry, Göttingen, Germany.
Angew Chem Int Ed Engl. 2019 Mar 22;58(13):4286-4290. doi: 10.1002/anie.201814314. Epub 2019 Feb 27.
Magic-angle spinning (MAS) is an essential ingredient in a wide variety of solid-state NMR experiments. The standard procedures to adjust the rotor angle are not highly accurate, resulting in a slight misadjustment of the rotor from the magic angle ( ) on the order of a few millidegrees. This small missetting has no significant impact on the overall spectral resolution, but is sufficient to reintroduce anisotropic interactions. Shown here is that site-specific H- N dipolar couplings can be accurately measured in a heavily deuterated protein. This method can be applied at arbitrarily high MAS frequencies, since neither rotor synchronization nor particularly high radiofrequency field strengths are required. The off-MAS method allows the quantification of order parameters for very dynamic residues, which often escape an analysis using existing methods.
魔角旋转(MAS)是各种固态 NMR 实验的基本要素。调整转子角度的标准程序并不十分精确,导致转子相对于魔角( )稍有微调到几度。这种小的失调对整体光谱分辨率没有重大影响,但足以重新引入各向异性相互作用。这里显示的是在高度氘代的蛋白质中可以精确测量特定位置的 H-N 偶极耦合。该方法可以在任意高的 MAS 频率下应用,因为既不需要转子同步,也不需要特别高的射频场强度。离频 MAS 方法允许对非常动态的残基的序参数进行定量分析,这通常是使用现有方法无法实现的。