Martin-Pastor M, Bush C A
Department of Chemistry and Biochemistry, University of Maryland-Baltimore County, Baltimore 21250, USA.
Biochemistry. 1999 Jun 22;38(25):8045-55. doi: 10.1021/bi9904205.
For complex oligosaccharides, which are relatively rigid with modest excursions from a single minimum energy conformation, it is straightforward to build conformational models from NOE data. Other oligosaccharides are more flexible with transitions between distinct minima separated by substantial energy barriers. We show that modeling based on scalar coupling data is superior to NOE-based modeling for the latter case. Long range 13C-13C and 13C-1H coupling constants measured for the heptasaccharide repeating subunit of the cell wall polysaccharide from Streptococcus mitis J22 are correlated with individual glycosidic dihedral angles, effectively uncoupling the degrees of freedom of the oligosaccharide and allowing a search for combinations of dihedral angles which are energetically reasonable, i.e., with no bad van der Waals contacts, and which can be combined to satisfy all the measured J values. Allowed values of the individual angles can then be combined to search for overall oligosaccharide conformations which contribute to the ensemble. We show that while the polysaccharide from S. mitis J22 is flexible, requiring multiple conformations, most of the flexibility is localized to a few bonds and only a rather small number of conformations is required to reproduce the experimental NOE and scalar coupling data.
对于复杂寡糖而言,它们相对刚性,仅略微偏离单一最低能量构象,因此根据核Overhauser效应(NOE)数据构建构象模型很简单。其他寡糖则更具柔性,在由相当大的能量势垒分隔的不同最低能量构象之间发生转变。我们表明,对于后一种情况,基于标量耦合数据的建模优于基于NOE的建模。对缓症链球菌J22细胞壁多糖七糖重复亚基测量的远程¹³C-¹³C和¹³C-¹H耦合常数与各个糖苷二面角相关,有效地解耦了寡糖的自由度,并允许搜索能量上合理的二面角组合,即不存在不良范德华接触,并且可以组合以满足所有测量的耦合常数(J值)。然后可以将各个角度的允许值组合起来,以搜索对整体有贡献的寡糖整体构象。我们表明,虽然缓症链球菌J22的多糖具有柔性,需要多种构象,但大部分柔性局限于少数几个键,并且仅需要相当少的构象就能重现实验性NOE和标量耦合数据。