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消除ATP影响后具有异促负协同性的猪蛔虫磷酸果糖激酶T态的动力学表征

Kinetic characterization of a T-state of Ascaris suum phosphofructokinase with heterotropic negative cooperativity by ATP eliminated.

作者信息

Jagannatha Rao G S, Cook P F, Harris B G

机构信息

Department of Molecular Biology and Immunology, University of North Texas Health Science Center at Fort Worth, 3500 Camp Bowie Boulevard, Fort Worth, Texas, 76107, USA.

出版信息

Arch Biochem Biophys. 1999 May 15;365(2):335-43. doi: 10.1006/abbi.1999.1183.

DOI:10.1006/abbi.1999.1183
PMID:10328829
Abstract

The affinity analogue, 2',3'-dialdehyde ATP has been used to chemically modify the ATP-inhibitory site of Ascaris suum phosphofructokinase, thereby locking the enzyme into a less active T-state. This enzyme form has a maximum velocity that is 10% that of the native enzyme in the direction of fructose 6-phosphate (F6P) phosphorylation. The enzyme displays sigmoid saturation for the substrate fructose 6-phosphate (S0.5 (F6P) = 19 mM and nH = 2.2) at pH 6.8 and a hyperbolic saturation curve for MgATP with a Km identical to that for the native enzyme. The allosteric effectors, fructose 2,6-bisphosphate and AMP, do not affect the S0.5 for F6P but produce a slight (1.5- and 2-fold, respectively) V-type activation with Ka values (effector concentration required for half-maximal activation) of 0.40 and 0.24 mM, respectively. Their activating effects are additive and not synergistic. The kinetic mechanism for the modified enzyme is steady-state-ordered with MgATP as the first substrate and MgADP as the last product to be released from the enzyme surface. The decrease in V and V/K values for the reactants likely results from a decrease in the equilibrium constant for the isomerization of the E:MgATP binary complex, thus favoring an unisomerized form. The V and V/KF6P are pH dependent with similar pK values of about 7 on the acid side and 9.8 on the basic side. The microenvironment of the active site appears to be affected minimally as evidenced by the similarity of the pK values for the groups involved in the binding site for F6P in the modified and native enzymes.

摘要

亲和类似物2',3'-二醛ATP已被用于化学修饰猪蛔虫磷酸果糖激酶的ATP抑制位点,从而将该酶锁定为活性较低的T态。这种酶形式在果糖6-磷酸(F6P)磷酸化方向上的最大速度是天然酶的10%。在pH 6.8时,该酶对底物果糖6-磷酸呈现S形饱和曲线(S0.5(F6P)=19 mM,nH = 2.2),而对MgATP呈现双曲线饱和曲线,其Km与天然酶相同。变构效应剂果糖2,6-二磷酸和AMP不影响F6P的S0.5,但分别产生轻微的(分别为1.5倍和2倍)V型激活,其Ka值(半最大激活所需的效应剂浓度)分别为0.40和0.24 mM。它们的激活作用是相加的而非协同的。修饰酶的动力学机制是稳态有序的,MgATP作为第一个底物,MgADP作为最后一个从酶表面释放的产物。反应物的V和V/K值降低可能是由于E:MgATP二元复合物异构化平衡常数的降低,从而有利于未异构化形式。V和V/KF6P依赖于pH,在酸性侧和碱性侧的pK值相似,分别约为7和9.8。活性位点的微环境似乎受到的影响最小,这从修饰酶和天然酶中F6P结合位点相关基团的pK值相似可以看出

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