Carlomagno T, Peti W, Griesinger C
lnstitut für Organische Chemie, Universität Frankfurt, Germany.
J Biomol NMR. 2000 Jun;17(2):99-109. doi: 10.1023/a:1008346902500.
Heteronuclear dipolar couplings of the protein backbone have proven to have a big impact on the accuracy of protein NMR structures. H,H dipolar couplings might have the same impact on side chains. Here we present a method that combines both heteronuclear and homonuclear dipolar couplings to investigate the local conformation of methylene groups. A new pulse sequence (SPITZE-HSQC) is presented, that allows to measure the two C,H and the H,H dipolar couplings at the same time, using spin state selective transfers. The new method has been applied to the methylene groups of glycines in the protein ubiquitin. The C,H and the H,H dipolar couplings might have a key role in fast stereospecific assignment of protons in CH2 groups.
蛋白质主链的异核偶极耦合已被证明对蛋白质核磁共振结构的准确性有很大影响。H,H偶极耦合可能对侧链也有同样的影响。在此,我们提出一种结合异核和同核偶极耦合来研究亚甲基局部构象的方法。提出了一种新的脉冲序列(SPITZE-HSQC),它允许利用自旋态选择性转移同时测量两个C,H和H,H偶极耦合。该新方法已应用于蛋白质泛素中甘氨酸的亚甲基。C,H和H,H偶极耦合可能在CH2基团中质子的快速立体专一性归属中起关键作用。