Möglich Andreas, Wenzler Michael, Kramer Frank, Glaser Steffen J, Brunner Eike
University of Regensburg, Institute of Biophysics and Physical Biochemistry, Germany.
J Biomol NMR. 2002 Jul;23(3):211-9. doi: 10.1023/a:1019841602348.
In solutions with partial molecular alignment, anisotropic magnetic interactions such as the chemical shift anisotropy, the electric quadrupole interaction, and the magnetic dipole-dipole interaction are no longer averaged out to zero in contrast to isotropic solutions. The resulting residual anisotropic magnetic interactions are increasingly used in biological NMR studies for the determination of 3D structures of proteins and other biomolecules. In the present paper we propose a new approach allowing the measurement of residual HN-H(alpha) dipolar couplings of non-isotope enriched proteins based on the application of the MOCCA-SIAM experiment. This experiment allows the measurement of homonuclear coupling constants with an accuracy of ca. +/- 0.2 Hz and is therefore particularly well suited to determine residual dipolar couplings at relatively low degrees of molecular orientation. The agreement between experimentally determined residual HN-H(alpha) couplings and calculated values is demonstrated for BPTI.
在具有部分分子排列的溶液中,与各向同性溶液不同,诸如化学位移各向异性、电四极相互作用和磁偶极-偶极相互作用等各向异性磁相互作用不再平均为零。由此产生的残余各向异性磁相互作用越来越多地用于生物核磁共振研究中,以确定蛋白质和其他生物分子的三维结构。在本文中,我们提出了一种基于MOCCA-SIAM实验的新方法,用于测量非同位素富集蛋白质的残余HN-H(α)偶极耦合。该实验能够以约±0.2 Hz的精度测量同核耦合常数,因此特别适合于在相对较低的分子取向度下确定残余偶极耦合。文中展示了BPTI实验测定的残余HN-H(α)耦合与计算值之间的一致性。