Johnson J L, Reinhart G D
Department of Chemistry and Biochemistry, University of Oklahoma, Norman 73019.
Biochemistry. 1992 Nov 24;31(46):11510-8. doi: 10.1021/bi00161a032.
A thermodynamic linked-function analysis is presented of the interactions of MgATP and fructose 6-phosphate (Fru-6-P) with phosphofructokinase (PFK) from Escherichia coli in the absence of allosteric effectors. MgATP and Fru-6-P are shown to bind in random fashion by product inhibition of the back-reaction as well as by the kinetically competent binding of each ligand individually as monitored by the consequent changes in the intrinsic fluorescence of E. coli PFK. When Fru-6-P is saturating, the dissociation of MgATP is sufficiently slow that it cannot achieve a binding equilibrium in the steady state, causing the observed Km (49 microM) to significantly exceed the Kd (1.7 microM) deduced from a thermodynamic linkage analysis. The following features distinguish the interactions of MgATP and Fru-6-P with E. coli PFK: MgATP and Fru-6-P antagonize each other's binding to the enzyme in a saturable manner with an overall apparent coupling free energy equal to +2.5 kcal/mol at 25 degrees C; MgATP induces positive cooperativity in the Fru-6-P binding profile, with the Hill coefficient calculated from the Fru-6-P binding curves reaching a maximum of 3.6 when MgATP is saturating; and MgATP exhibits substrate inhibition at low concentrations of Fru-6-P. Simulations based upon the rate equation pertaining to a two-active-site, two-substrate dimer indicate that these features can all result from two independent couplings: an antagonistic MgATP-Fru-6-P coupling extending at least in part between active sites and a MgATP-induced Fru-6-P-Fru-6-P coupling.(ABSTRACT TRUNCATED AT 250 WORDS)
本文对大肠杆菌磷酸果糖激酶(PFK)在无变构效应剂情况下,MgATP和6-磷酸果糖(Fru-6-P)之间的相互作用进行了热力学关联函数分析。通过逆向反应的产物抑制以及每种配体单独的动力学有效结合(通过大肠杆菌PFK固有荧光的相应变化监测),表明MgATP和Fru-6-P以随机方式结合。当Fru-6-P饱和时,MgATP的解离足够缓慢,以至于在稳态下无法达到结合平衡,导致观察到的Km(49μM)显著超过从热力学关联分析推导的Kd(1.7μM)。MgATP和Fru-6-P与大肠杆菌PFK的相互作用具有以下特点:MgATP和Fru-6-P以可饱和的方式相互拮抗对方与酶的结合,在25℃时总的表观偶联自由能等于+2.5千卡/摩尔;MgATP在Fru-6-P结合曲线中诱导正协同性,当MgATP饱和时,根据Fru-6-P结合曲线计算的希尔系数最大达到3.6;并且MgATP在低浓度Fru-6-P时表现出底物抑制。基于与双活性位点、双底物二聚体相关的速率方程的模拟表明,这些特征都可能源于两种独立的偶联:一种至少部分在活性位点之间延伸的拮抗MgATP-Fru-6-P偶联和一种MgATP诱导的Fru-6-P-Fru-6-P偶联。(摘要截短于250字)