Mandelman D, Schwarz F P, Li H, Poulos T L
University of California at Irvine, Department of Molecular Biology and Biochemistry, 92697-3900, USA.
Protein Sci. 1998 Oct;7(10):2089-98. doi: 10.1002/pro.5560071005.
Point mutations at the dimer interface of the homodimeric enzyme ascorbate peroxidase (APx) were constructed to assess the role of quaternary interactions in the stability and activity of APx. Analysis of the APx crystal structure shows that Glu112 forms a salt bridge with Lys20 and Arg24 of the opposing subunit near the axis of dyad symmetry between the subunits. Two point mutants, E112A and E112K, were made to determine the effects of a neutral (alanine) and repulsive (lysine) mutation on dimerization, stability, and activity. Gel filtration analysis indicated that the ratio of the monomer to dimer increased as the dimer interface interactions went from attractive to repulsive. Differential scanning calorimetry (DSC) data exhibited a decrease in both the transition temperature (Tm) and enthalpy of unfolding (deltaHc) with Tm = 58.3 +/- 0.5 degrees C, 56.0 +/- 0.8 degrees C, and 53.0 +/- 0.9 degrees C and deltaHc = 245 +/- 29 kcal/mol, 199 +/- 38 kcal/mol, and 170 +/- 25 kcal/mol for wild-type APx, E112A, and E112K, respectively. Similar changes were observed based on thermal melting curves obtained by absorption spectroscopy. No change in enzyme activity was found for the E112A mutant, and only a 25% drop in activity was observed for the E112K mutant which demonstrates that the non-Michaelis Menten kinetics of APx is not due to the APx oligomeric structure. The cryogenic crystal structures of the wild-type and mutant proteins show that mutation induced changes are limited to the dimer interface including an alteration in solvent structure.
构建了同二聚体酶抗坏血酸过氧化物酶(APx)二聚体界面处的点突变,以评估四级相互作用在APx稳定性和活性中的作用。对APx晶体结构的分析表明,Glu112在亚基之间二元对称轴附近与相对亚基的Lys20和Arg24形成盐桥。制备了两个点突变体E112A和E112K,以确定中性(丙氨酸)和排斥性(赖氨酸)突变对二聚化、稳定性和活性的影响。凝胶过滤分析表明,随着二聚体界面相互作用从吸引变为排斥,单体与二聚体的比例增加。差示扫描量热法(DSC)数据显示,野生型APx、E112A和E112K的转变温度(Tm)和展开焓(deltaHc)均降低,野生型APx的Tm = 58.3 +/- 0.5℃,deltaHc = 245 +/- 29 kcal/mol;E112A的Tm = 56.0 +/- 0.8℃,deltaHc = 199 +/- 38 kcal/mol;E112K的Tm = 53.0 +/- 0.9℃,deltaHc = 170 +/- 25 kcal/mol。基于吸收光谱获得的热熔曲线也观察到了类似变化。E112A突变体的酶活性没有变化,E112K突变体仅观察到25%的活性下降,这表明APx的非米氏动力学不是由于APx的寡聚结构。野生型和突变型蛋白质的低温晶体结构表明,突变引起的变化仅限于二聚体界面,包括溶剂结构的改变。