Mesleh Michael F, Veglia Gianluigi, DeSilva Tara M, Marassi Francesca M, Opella Stanley J
Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, USA.
J Am Chem Soc. 2002 Apr 24;124(16):4206-7. doi: 10.1021/ja0178665.
The anisotropy of nuclear spin interactions results in a unique mapping of structure to the resonance frequencies and split tings observed in NMR spectra, however, the determination of molecular structure from experimentally measured spectral parameters is complicated by angular ambiguities resulting from the symmetry properties of dipole-dipole and chemical shift interactions. This issue can be addressed through the periodicity inherent in secondary structure elements, which can be used as an index of topology. Distinctive wheel-like patterns are observed in two-dimensional 1H-15N heteronuclear dipolar/15N chemical shift PISEMA (polarization inversion spin-exchange at the magic angle) spectra of helical membrane proteins in highly aligned lipid bilayer samples. One-dimensional dipolar waves are an extension of two-dimensional PISA (polarity index slant angle) wheels to map protein structure in NMR spectra of both highly and weakly aligned samples. Dipolar waves describe the periodic wavelike variations of the magnitudes of the static heteronuclear dipolar couplings as a function of residue number in the absence of chemical shift effects. Weakly aligned samples of proteins display these same effects, primarily as residual dipolar couplings (RDCs), in solution NMR spectra. The corresponding properties of the RDCs in solution NMR spectra of weakly aligned helices represent a convergence of solid-state and solution NMR approaches to structure determination.
核自旋相互作用的各向异性导致结构与核磁共振谱中观测到的共振频率和分裂之间存在独特的映射关系。然而,从实验测量的光谱参数确定分子结构会因偶极-偶极相互作用和化学位移相互作用的对称性质所导致的角度模糊性而变得复杂。这个问题可以通过二级结构元件中固有的周期性来解决,这种周期性可作为拓扑结构的一个指标。在高度取向的脂质双层样品中螺旋膜蛋白的二维¹H-¹⁵N异核偶极/¹⁵N化学位移PISEMA(魔角极化反转自旋交换)谱中可观察到独特的轮状图案。一维偶极波是二维PISA(极性指数倾斜角)轮的扩展,用于在高度取向和弱取向样品的核磁共振谱中绘制蛋白质结构。偶极波描述了在不存在化学位移效应时,静态异核偶极耦合大小随残基序号的周期性波动变化。蛋白质的弱取向样品在溶液核磁共振谱中也显示出这些相同的效应,主要表现为残余偶极耦合(RDC)。弱取向螺旋的溶液核磁共振谱中RDC的相应特性代表了固态和溶液核磁共振结构测定方法的融合。