Lazo N D, Hu W, Lee K C, Cross T A
Department of Chemistry, Florida State University, Tallahassee 32306-3006.
Biochem Biophys Res Commun. 1993 Dec 15;197(2):904-9. doi: 10.1006/bbrc.1993.2564.
A method is described for defining anisotropic local dynamics in polypeptides by solid-state NMR. To avoid conformational heterogeneity introduced by large hexagonal ice crystals in low temperature hydrated samples, a fast-freezing technique is used for sample preparation. For a demonstration of this approach, the backbone librational motions of the gramicidin A channel conformation are studied in hydrated DMPC bilayers. The static 15N chemical shift tensor is characterized at 123 K for the Ala3 site. The temperature dependence of this tensor yields a determination of the librational amplitude and anisotropy of the motionally sampled space. This amplitude represents the sum of nanosecond and picosecond time-frame motions, both of which have a significant amplitude.
描述了一种通过固态核磁共振定义多肽中各向异性局部动力学的方法。为避免低温水合样品中由大的六方冰晶引入的构象异质性,采用快速冷冻技术进行样品制备。为证明该方法,在水合二肉豆蔻酰磷脂酰胆碱(DMPC)双层膜中研究了短杆菌肽A通道构象的主链摆动运动。在123K下对Ala3位点的静态15N化学位移张量进行了表征。该张量的温度依赖性确定了运动采样空间的摆动幅度和各向异性。此幅度代表了纳秒和皮秒时间尺度运动的总和,二者均具有显著幅度。