Kaletha K, Bogdanowicz S, Raffin J P
Biochimie. 1987 Feb;69(2):117-23. doi: 10.1016/0300-9084(87)90243-4.
The kinetic and regulatory properties of purified pigeon heart muscle AMP deaminase were investigated. In the presence of 100 mM potassium chloride, the enzyme exhibited a slightly sigmoidal type of kinetics. Addition of ATP to the incubation medium changed the reaction rate versus substrate concentration plot into a hyperbolic one, and caused a decrease of the half-saturation constant (S0.5). ADP presence caused the change of both the S0.5 and Vmax parameters, exerting either an activating or inhibitory effect, depending upon the substrate concentration. Orthophosphate inhibited the enzyme at all substrate concentrations, increasing the value of the S0.5 parameter. In the presence of ATP, ADP and orthophosphate, added to the incubation medium at approximately physiological concentrations, pigeon heart AMP deaminase still seems to preserve its activated form. Active long chain fatty acids clearly inhibited enzyme activity even at micromolar concentrations. Interpretation of the kinetic data in terms of the allosteric theory of Monod et al. (1965, J. Mol. Biol. 12, 88-118) indicates that heart muscle AMP deaminase may operate as a functionally active dimer.
对纯化的鸽心肌AMP脱氨酶的动力学和调节特性进行了研究。在100 mM氯化钾存在下,该酶表现出轻微的S形动力学类型。向孵育介质中添加ATP会使反应速率与底物浓度的关系图变为双曲线,并导致半饱和常数(S0.5)降低。ADP的存在会导致S0.5和Vmax参数都发生变化,根据底物浓度产生激活或抑制作用。正磷酸盐在所有底物浓度下均抑制该酶,增加S0.5参数的值。在以大约生理浓度添加到孵育介质中的ATP、ADP和正磷酸盐存在下,鸽心肌AMP脱氨酶似乎仍保持其活化形式。即使在微摩尔浓度下,活性长链脂肪酸也明显抑制酶活性。根据莫诺等人(1965年,《分子生物学杂志》12卷,88 - 118页)的别构理论对动力学数据进行解释表明,心肌AMP脱氨酶可能作为一种功能活跃的二聚体发挥作用。