Masumoto K, Ueda T, Motoshima H, Imoto T
Graduate School of Pharmaceutical Sciences, Kyushu University, 62 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.
Protein Eng. 2000 Oct;13(10):691-5. doi: 10.1093/protein/13.10.691.
We prepared five mutant lysozymes in which glycines whose dihedral angles are located in the region of the left-handed helix, Gly49, Gly67, Gly71, Gly102 and Gly117, were mutated to an alanine residue. From analyses of their thermal stabilities using differential scanning calorimetry, most of them were more destabilized than the native lysozyme, except for the G102A mutant, which has a stability similar to that of the native lysozyme at pH 2.7. As for the destabilized mutant lysozymes, their X-ray crystallographic analyses showed that their global structures did not change but that the local structures changed slightly. By examining the dihedral angles at the mutation sites based on X-ray crystallographic results, it was found that the dihedral angles at these mutation sites tended to adopt favorable values in a Ramachandran plot and that the extent and direction of their shifts from the original value had similar tendencies. Therefore, the change in dihedral angles may be the cause of the slight local structural changes around the mutation site. On the other hand, regarding the mutation of G102A, the global structure was almost identical with that of the native structure but the local structure was drastically changed. Therefore, it was suggested that the drastic local conformational change might be effective in releasing the unfavorable interaction of the native state at the mutation site.
我们制备了五种突变溶菌酶,其中二面角位于左手螺旋区域的甘氨酸(Gly49、Gly67、Gly71、Gly102和Gly117)被突变为丙氨酸残基。通过差示扫描量热法分析它们的热稳定性,除了G102A突变体在pH 2.7时具有与天然溶菌酶相似的稳定性外,大多数突变体比天然溶菌酶更不稳定。对于不稳定的突变溶菌酶,其X射线晶体学分析表明它们的整体结构没有改变,但局部结构略有变化。根据X射线晶体学结果检查突变位点的二面角,发现这些突变位点的二面角在拉氏图中倾向于采用有利的值,并且它们从原始值的偏移程度和方向具有相似的趋势。因此,二面角的变化可能是突变位点周围局部结构轻微变化的原因。另一方面,关于G102A突变,其整体结构与天然结构几乎相同,但局部结构发生了剧烈变化。因此,有人认为这种剧烈的局部构象变化可能有效地释放了突变位点处天然状态的不利相互作用。