Petkova Aneta T, Baldus Marc, Belenky Marina, Hong Mei, Griffin Robert G, Herzfeld Judith
Department of Chemistry and Keck Institute for Cellular Visualization, Brandeis University, 02454-9110, Waltham, MA, USA.
J Magn Reson. 2003 Jan;160(1):1-12. doi: 10.1016/s1090-7807(02)00137-4.
We demonstrate that the SPECIFIC CP technique can be used to obtain heteronuclear correlation (HETCOR) spectra of peptide backbones with greater efficiency than conventional HETCOR methods. We show that similar design principles can be employed to achieve selective homonuclear polarization transfer mediated through dipolar or scalar couplings. Both approaches are demonstrated in a tripeptide with uniform 15N and 13C labeling, and with uniform 15N labeling and natural abundance 13C. In other applications, the high efficiency of the heteronuclear SPECIFIC CP transfer allows discrimination of single amide signals in the 248-residue membrane protein bacteriorhodopsin (bR). In particular, variations are detected in the ordering of the Ala81-Arg82 peptide bond among the photocycle intermediates of bR and SPECIFIC CP is used to correlate 15N and 13C signals from the three Val-Pro peptide bonds.
我们证明,与传统的异核相关(HETCOR)方法相比,SPECIFIC CP技术可用于更高效地获取肽主链的异核相关光谱。我们表明,可以采用类似的设计原则来实现通过偶极或标量耦合介导的选择性同核极化转移。这两种方法都在具有均匀15N和13C标记以及均匀15N标记和天然丰度13C的三肽中得到了证明。在其他应用中,异核SPECIFIC CP转移的高效率使得能够区分248个残基的膜蛋白细菌视紫红质(bR)中的单个酰胺信号。特别是,在bR的光循环中间体中检测到Ala81-Arg82肽键排序的变化,并且SPECIFIC CP用于关联来自三个Val-Pro肽键的15N和13C信号。