Rojkova A M, Galkin A G, Kulakova L B, Serov A E, Savitsky P A, Fedorchuk V V, Tishkov V I
Department of Chemical Enzymology, Faculty of Chemistry, The M.V. Lomonosov Moscow State University, Russia.
FEBS Lett. 1999 Feb 19;445(1):183-8. doi: 10.1016/s0014-5793(99)00127-1.
NAD+-dependent formate dehydrogenase (EC 1.2.1.2, FDH) from methylotrophic bacterium Pseudomonas sp.101 exhibits the highest stability among the similar type enzymes studied. To obtain further increase in the thermal stability of FDH we used one of general approaches based on hydrophobization of protein alpha-helices. Five serine residues in positions 131, 160, 168, 184 and 228 were selected for mutagenesis on the basis of (i) comparative studies of nine FDH amino acid sequences from different sources and (ii) with the analysis of the ternary structure of the enzyme from Pseudomonas sp.101. Residues Ser-131 and Ser-160 were replaced by Ala, Val and Leu. Residues Ser-168, Ser-184 and Ser-228 were changed into Ala. Only Ser/Ala mutations in positions 131, 160, 184 and 228 resulted in an increase of the FDH stability. Mutant S168A was 1.7 times less stable than the wild-type FDH. Double mutants S(131,160)A and S(184,228)A and the four-point mutant S(131,160,184,228)A were also prepared and studied. All FDH mutants with a positive stabilization effect had the same kinetic parameters as wild-type enzyme. Depending on the position of the replaced residue, the single point mutation Ser/Ala increased the FDH stability by 5-24%. Combination of mutations shows near additive effect of each mutation to the total FDH stabilization. Four-point mutant S(131,160,184,228)A FDH had 1.5 times higher thermal stability compared to the wild-type enzyme.
来自甲基营养型细菌假单胞菌属(Pseudomonas sp.)101的NAD + 依赖性甲酸脱氢酶(EC 1.2.1.2,FDH)在已研究的同类酶中表现出最高的稳定性。为了进一步提高FDH的热稳定性,我们采用了一种基于蛋白质α螺旋疏水化的通用方法。基于(i)对来自不同来源的9种FDH氨基酸序列的比较研究以及(ii)对假单胞菌属101酶的三级结构分析,选择了第131、160、168、184和228位的5个丝氨酸残基进行诱变。Ser-131和Ser-160残基被丙氨酸、缬氨酸和亮氨酸取代。Ser-168、Ser-184和Ser-228残基变为丙氨酸。只有第131、160、184和228位的Ser/Ala突变导致FDH稳定性增加。突变体S168A的稳定性比野生型FDH低1.7倍。还制备并研究了双突变体S(131,160)A和S(184,228)A以及四点突变体S(131,160,184,228)A。所有具有正向稳定作用的FDH突变体与野生型酶具有相同的动力学参数。根据被取代残基的位置,单点突变Ser/Ala使FDH稳定性提高了5-24%。突变的组合显示每个突变对FDH总稳定性的影响接近加和效应。四点突变体S(131,160,184,228)A FDH的热稳定性比野生型酶高1.5倍。