Department of Biological Science and Technology, National Chiao Tung University, 30068, Hsin-Chu, Taiwan, Republic of China.
Int J Biol Sci. 2011 Mar 31;7(3):333-46. doi: 10.7150/ijbs.7.333.
Recombinant thermostable direct hemolysin from Grimontia hollisae (Gh-rTDH) exhibits paradoxical Arrhenius effect, where the hemolytic activity is inactivated by heating at 60 °C but is reactivated by additional heating above 80 °C. This study investigated individual or collective mutational effect of Tyr53, Thr59, and Ser63 positions of Gh-rTDH on hemolytic activity, Arrhenius effect, and biophysical properties. In contrast to the Gh-rTDH wild-type (Gh-rTDH(WT)) protein, a 2-fold decrease of hemolytic activity and alteration of Arrhenius effect could be detected from the Gh-rTDH(Y53H/T59I) and Gh-rTDH(T59I/S63T) double-mutants and the Gh-rTDH(Y53H/T59I/S63T) triple-mutant. Differential scanning calorimetry results showed that the Arrhenius effect-loss and -retaining mutants consistently exhibited higher and lower endothermic transition temperatures, respectively, than that of the Gh-rTDH(WT). Circular dichroism measurements of Gh-rTDH(WT) and Gh-rTDH(mut) showed a conspicuous change from a β-sheet to α-helix structure around the endothermic transition temperature. Consistent with the observation is the conformational change of the proteins from native globular form into fibrillar form, as determined by Congo red experiments and transmission electron microscopy.
来自格里蒙氏李斯特菌(Grimontia hollisae)的重组耐热直接溶血素(Gh-rTDH)表现出反常 Arrhenius 效应,即在 60°C 加热时溶血活性失活,但在 80°C 以上加热时重新激活。本研究研究了 Gh-rTDH 中 Tyr53、Thr59 和 Ser63 位置的单个或集体突变对溶血活性、Arrhenius 效应和生物物理性质的影响。与 Gh-rTDH 野生型(Gh-rTDH(WT))蛋白相比,Gh-rTDH(Y53H/T59I)和 Gh-rTDH(T59I/S63T)双突变体以及 Gh-rTDH(Y53H/T59I/S63T)三突变体的溶血活性降低了 2 倍,Arrhenius 效应发生了变化。差示扫描量热法结果表明,Arrhenius 效应丧失和保留突变体的内温转变温度分别明显高于 Gh-rTDH(WT)。Gh-rTDH(WT)和 Gh-rTDH(mut)的圆二色谱测量显示,在吸热转变温度附近,从β-折叠结构到α-螺旋结构发生了明显变化。与观察结果一致的是,刚果红实验和透射电子显微镜表明,蛋白质从天然球形构象转变为纤维状构象。