Clarke A R, Wigley D B, Barstow D A, Chia W N, Atkinson T, Holbrook J J
Biochim Biophys Acta. 1987 May 27;913(1):72-80. doi: 10.1016/0167-4838(87)90234-2.
We have engineered a variant of the lactate dehydrogenase enzyme from Bacillus stearothermophilus in which arginine-173 at the proposed regulatory site has been replaced by glutamine. Like the wild-type enzyme, this mutant undergoes a reversible, protein-concentration-dependent subunit assembly, from dimer to tetramer. However, the mutant tetramer is much more stable (by a factor of 400) than the wild type and is destabilized rather than stabilized by binding the allosteric regulator, fructose 1,6-biphosphate (Fru-1,6-P2). The mutation has not significantly changed the catalytic properties of the dimer (Kd NADH, Km pyruvate, Ki oxamate and kcat), but has weakened the binding of Fru-1,6-P2 to both the dimeric and tetrameric forms of the enzyme and has almost abolished any stimulatory effect. We conclude that the Arg-173 residue in the wild-type enzyme is directly involved in the binding of Fru-1,6-P2, is important for allosteric communication with the active site, and, in part, regulates the state of quaternary structure through a charge-repulsion mechanism.
我们构建了嗜热脂肪芽孢杆菌乳酸脱氢酶的一个变体,其中位于假定调控位点的精氨酸-173被谷氨酰胺取代。与野生型酶一样,该突变体经历从二聚体到四聚体的可逆的、蛋白质浓度依赖性亚基组装。然而,突变体四聚体比野生型稳定得多(稳定系数为400),并且通过结合变构调节剂1,6-二磷酸果糖(Fru-1,6-P2)会去稳定化而非稳定化。该突变并未显著改变二聚体的催化特性(NADH解离常数、丙酮酸米氏常数、草氨酸抑制常数和催化常数),但减弱了Fru-1,6-P2与酶的二聚体和四聚体形式的结合,并且几乎消除了任何刺激作用。我们得出结论,野生型酶中的精氨酸-173残基直接参与Fru-1,6-P2的结合,对与活性位点的变构通讯很重要,并且部分地通过电荷排斥机制调节四级结构状态。