Imoto T, Ueda T, Tamura T, Isakari Y, Abe Y, Inoue M, Miki T, Kawano K, Yamada H
Faculty of Pharmaceutical Sciences, Kyushu University, Fukuoka, Japan.
Protein Eng. 1994 Jun;7(6):743-8. doi: 10.1093/protein/7.6.743.
Mutations around His15 which lie far away from the active site, stimulated glycol chitin activity of lysozyme at physiological temperature. Del-Arg14His15 lysozyme, a mutant lysozyme whose Arg14 and His15 were deleted together, and has the highest activity among these mutant lysozymes, had a similar binding ability to a trimer of N-acetyl-glucosamine, a substrate analogue, relative to native lysozyme. This suggests that the increased activity was due to an increased kcat in the catalysis reaction. The H-D exchange rate of the N-1 proton in the Trp63 which is located in the active site cleft, was enhanced in the Del-Arg14His15 lysozyme, while 2-D proton NMR analysis revealed no conformational change around Trp63. We conclude that some sort of fluctuation at the active site might be required for the manifestation of activity. This theory is supported by the finding that the Del-Arg14His15 lysozyme showed a shift in temperature dependency of activity to lower temperatures compared with that of native lysozyme.
位于远离活性位点的组氨酸15周围的突变,在生理温度下刺激了溶菌酶的糖基几丁质活性。缺失精氨酸14和组氨酸15的溶菌酶(Del-Arg14His15溶菌酶)是一种突变溶菌酶,在这些突变溶菌酶中活性最高,相对于天然溶菌酶,它对底物类似物N-乙酰葡糖胺三聚体具有相似的结合能力。这表明活性增加是由于催化反应中催化常数(kcat)增加所致。位于活性位点裂隙中的色氨酸63的N-1质子的氢氘交换率在Del-Arg14His15溶菌酶中有所提高,但二维质子核磁共振分析显示色氨酸63周围没有构象变化。我们得出结论,活性的表现可能需要活性位点处某种程度的波动。这一理论得到了以下发现的支持:与天然溶菌酶相比,Del-Arg14His15溶菌酶的活性温度依赖性向更低温度偏移。