Terada K, Murata T, Izui K
Department of Chemistry, Faculty of Science, Kyoto University.
J Biochem. 1991 Jan;109(1):49-54.
Phosphoenolpyruvate carboxylases (PEPC) [EC 4.1.1.31] from a wide variety of organisms contain a unique and highly conserved sequence, 578FHGRGGSIGRGGAP591 (coordinates for the Escherichia coli enzyme), which has been presumed to participate in the binding of phosphoenolpyruvate (PEP). Since previous chemical modification studies had suggested the importance of His for the catalytic activity, the role of His579 was investigated by constructing variants of E. coli PEPC, in which this residue was substituted to Asn (H579N) or Pro (H579P). Kinetic studies with partially purified enzymes revealed the following: (1) The apparent maximal velocities in the presence of acetyl-CoA (CoASAc, one of the allosteric activators) were 29% and 5.4% of the wild-type enzyme, for H579N and H579P, respectively. (2) The half-saturation concentration for PEP was increased about 40-fold by the substitutions, while those for another substrate (HCO3-) and the metal cofactor (Mg2+) were increased only 2- to 4-fold. (3) The half-saturation concentrations of four kinds of allosteric activators and of dioxane, an artificial activator, were also changed to various extents. Among them the most remarkable increase was observed for CoASAc (28-fold). (4) The concentration of an allosteric inhibitor, aspartate, required for 50% inhibition remained substantially unchanged. It was concluded that the imidazole group of His579 is not obligatory for the enzyme catalysis, but plays important roles in catalytic and regulatory functions.
来自多种生物体的磷酸烯醇丙酮酸羧化酶(PEPC)[EC 4.1.1.31]含有一个独特且高度保守的序列,578FHGRGGSIGRGGAP591(大肠杆菌酶的坐标),据推测该序列参与磷酸烯醇丙酮酸(PEP)的结合。由于先前的化学修饰研究表明组氨酸对催化活性很重要,因此通过构建大肠杆菌PEPC的变体来研究His579的作用,其中该残基被替换为天冬酰胺(H579N)或脯氨酸(H579P)。对部分纯化的酶进行的动力学研究揭示了以下几点:(1)在存在别构激活剂乙酰辅酶A(CoASAc)的情况下,H579N和H579P的表观最大速度分别为野生型酶的29%和5.4%。(2)这些替换使PEP的半饱和浓度增加了约40倍,而另一种底物(HCO3-)和金属辅因子(Mg2+)的半饱和浓度仅增加了2至4倍。(3)四种别构激活剂和人工激活剂二氧六环的半饱和浓度也有不同程度的变化。其中CoASAc的增加最为显著(28倍)。(4)50%抑制所需的别构抑制剂天冬氨酸的浓度基本保持不变。得出的结论是,His579的咪唑基团对酶催化不是必需的,但在催化和调节功能中起重要作用。