Taddei N, Chiarugi P, Cirri P, Fiaschi T, Stefani M, Camici G, Raugei G, Ramponi G
Department of Biochemical Sciences, University of Florence, Italy.
FEBS Lett. 1994 Aug 22;350(2-3):328-32. doi: 10.1016/0014-5793(94)00805-1.
The crystal structure of the bovine liver low M(r) phosphotyrosine protein phosphatase suggests the involvement of aspartic acid-129 in enzyme catalysis. The Asp-129 to alanine mutant has been prepared by oligonucleotide-directed mutagenesis of a synthetic gene coding for the enzyme. The purified mutant elicited an highly reduced specific activity (about 0.04% of the activity of the wild-type) and a native-like fold, as judged by 1H NMR spectroscopy. The kinetic analysis revealed that the mutant is able to bind the substrate and a competitive inhibitor, such as inorganic phosphate. Moreover, trapping experiments demonstrated it maintains the ability to form the E-P covalent complex. The Asp-129 to alanine mutant shows extremely reduced enzyme phosphorylation (k2) and dephosphorylation (k3) kinetic constant values as compared to the wild-type enzyme. The data reported indicate that aspartic acid-129 is likely to be involved both in the first step and in the rate-limiting step of the catalytic mechanism, i.e. the nucleophilic attack of the phosphorylated intermediate.
牛肝低分子量磷酸酪氨酸蛋白磷酸酶的晶体结构表明,天冬氨酸-129参与酶催化作用。通过对编码该酶的合成基因进行寡核苷酸定向诱变,制备了天冬氨酸-129突变为丙氨酸的突变体。纯化后的突变体表现出极低的比活性(约为野生型活性的0.04%),且通过1H核磁共振光谱判断具有类似天然蛋白的折叠结构。动力学分析表明,该突变体能够结合底物和竞争性抑制剂,如无机磷酸盐。此外,捕获实验表明它仍保持形成E-P共价复合物的能力。与野生型酶相比,天冬氨酸-129突变为丙氨酸的突变体显示出极低的酶磷酸化(k2)和去磷酸化(k3)动力学常数。所报道的数据表明,天冬氨酸-129可能既参与催化机制的第一步,也参与限速步骤,即磷酸化中间体的亲核攻击。