Brewer D, Hunter H, Lajoie G
Guelph-Waterloo Centre for Graduate Work Chemistry and Biochemistry, Department of Chemistry, University of Waterloo, ON, Canada.
Biochem Cell Biol. 1998;76(2-3):247-56. doi: 10.1139/bcb-76-2-3-247.
Conformational studies of the salivary peptides histatin 3 (H3) and histatin 5 (H5) were performed by NMR and circular dichroism (CD) in aqueous and nonaqueous solutions. Histatin 5 has no defined structure in H2O but adopts a more helical conformation in dimethyl sulfoxide and aqueous trifluoroethanol. This is in agreement with the CD analysis, which shows no secondary structure in H2O but increasing helical content in the presence of trifluoroethanol. CD analysis shows that H3 has less propensity to form a helical structure than H5 in similar conditions. The NMR analysis of H3 in H2O at pH 7.4 reveals that its conformational mobility is less than that of H5 as indicated by the observation of backbone cross peaks alphaN (i, i + 1) and NN (i, i + 1) and the slow exchanging amide protons in the C-terminus. However, H3 remains essentially unordered as suggested by the lack of longer range nuclear Overhauser effects (NOEs) in the NOESY spectrum. H3 becomes much more ordered in a mixture of 50:50 H2O-dimethyl sulfoxide as indicated by the numerous NOEs, including several side chain to side chain and side chain to backbone connectivities. Our data suggest that in these conditions H3 contains a turn in the region of K13 to K17 and possibly a 3(10) helix at the C-terminus. This study demonstrates that H3 and H5 are both conformationally mobile and that each adopt different types of conformations in aqueous and nonaqueous solutions.
通过核磁共振(NMR)和圆二色性(CD)光谱法,在水溶液和非水溶液中对唾液肽组蛋白3(H3)和组蛋白5(H5)进行了构象研究。组蛋白5在水中没有明确的结构,但在二甲基亚砜和三氟乙醇水溶液中呈现出更多的螺旋构象。这与CD分析结果一致,CD分析表明在水中没有二级结构,但在三氟乙醇存在下螺旋含量增加。CD分析表明,在类似条件下,H3形成螺旋结构的倾向比H5小。在pH 7.4的水中对H3进行的NMR分析表明,其构象流动性小于H5,这可通过观察主链交叉峰αN(i,i + 1)和NN(i,i + 1)以及C端酰胺质子的缓慢交换来表明。然而,正如NOESY谱中缺乏长程核Overhauser效应(NOE)所表明的那样,H3基本上仍处于无序状态。在50:50的水 - 二甲基亚砜混合物中,H3变得更加有序,这由大量的NOE所表明,包括几个侧链到侧链以及侧链到主链的连接。我们的数据表明,在这些条件下,H3在K13至K17区域含有一个转角,并且在C端可能存在一个3(10)螺旋。这项研究表明,H3和H5在构象上都是可移动的,并且它们在水溶液和非水溶液中采用不同类型的构象。