Departamento de Biología, Facultad de Ciencias, Universidad de Chile, Santiago, Chile.
J Biol Chem. 2011 Feb 18;286(7):5774-83. doi: 10.1074/jbc.M110.163162. Epub 2010 Dec 8.
Substrate inhibition by ATP is a regulatory feature of the phosphofructokinases isoenzymes from Escherichia coli (Pfk-1 and Pfk-2). Under gluconeogenic conditions, the loss of this regulation in Pfk-2 causes substrate cycling of fructose-6-phosphate (fructose-6-P) and futile consumption of ATP delaying growth. In the present work, we have broached the mechanism of ATP-induced inhibition of Pfk-2 from both structural and kinetic perspectives. The crystal structure of Pfk-2 in complex with fructose-6-P is reported to a resolution of 2 Å. The comparison of this structure with the previously reported inhibited form of the enzyme suggests a negative interplay between fructose-6-P binding and allosteric binding of MgATP. Initial velocity experiments show a linear increase of the apparent K(0.5) for fructose-6-P and a decrease in the apparent k(cat) as a function of MgATP concentration. These effects occur simultaneously with the induction of a sigmoidal kinetic behavior (n(H) of approximately 2). Differences and resemblances in the patterns of fructose-6-P binding and the mechanism of inhibition are discussed for Pfk-1 and Pfk-2, as an example of evolutionary convergence, because these enzymes do not share a common ancestor.
ATP 对底物的抑制作用是大肠杆菌磷酸果糖激酶同工酶(Pfk-1 和 Pfk-2)的一种调节特征。在糖异生条件下,Pfk-2 失去这种调节作用会导致果糖-6-磷酸(fructose-6-P)的底物循环和 ATP 的无效消耗,从而延迟生长。在本工作中,我们从结构和动力学角度探讨了 ATP 诱导 Pfk-2 抑制的机制。报道了 Pfk-2 与果糖-6-P 复合物的晶体结构,分辨率为 2 Å。将该结构与先前报道的酶抑制形式进行比较表明,果糖-6-P 结合与 MgATP 变构结合之间存在负相互作用。初始速度实验表明,果糖-6-P 的表观 K(0.5)呈线性增加,而表观 k(cat)随 MgATP 浓度的降低而降低。这些效应与诱导的 S 形动力学行为(n(H)约为 2)同时发生。讨论了 Pfk-1 和 Pfk-2 中果糖-6-P 结合模式和抑制机制的差异和相似之处,这是进化趋同的一个例子,因为这些酶没有共同的祖先。