Department of Biochemistry and Biophysics, Texas A&M University and Texas AgriLife Research, College Station, Texas 77843-2128, USA.
Biochemistry. 2009 Dec 29;48(51):12323-8. doi: 10.1021/bi901456p.
This study quantifies the contribution of each of the four unique inhibiting heterotropic interactions between the allosteric inhibitor, phosphoenolpyruvate (PEP), and the substrate, fructose 6-phosphate (Fru-6-P), in phosphofructokinase from Escherichia coli (EcPFK). The unique heterotropic interactions, previously labeled by the distances between ligand binding sites, were isolated independently by constructing hybrid tetramers. Of the four unique heterotropic PEP-Fru-6-P interactions, the 45 A interaction contributed 25%, the 30 A interaction contributed 31%, and the 23 A interaction contributed 42% of the total PEP inhibition. The 33 A interaction actually causes a small activation of Fru-6-P binding by PEP and therefore contributed -8% of the total observed PEP inhibition. The pattern of relative contribution to PEP inhibition from each interaction in EcPFK does not follow the same pattern seen in MgADP activation of EcPFK. This observation supports the conclusion that although PEP and MgADP bind to the same site, they do not use the same communication pathways to influence the active site. The pattern of relative contribution describing PEP inhibition observed in this study also does not follow the pattern determined for PEP inhibition in phosphofructokinase from Bacillus stearothermophilus, suggesting that these two highly homologous isoforms are not inhibited in the same manner by PEP.
本研究定量了变构抑制剂磷酸烯醇丙酮酸(PEP)与底物果糖 6-磷酸(Fru-6-P)之间的四种独特的抑制变构相互作用中每一种的贡献,这四种独特的变构相互作用之前通过配体结合位点之间的距离进行了标记,并通过构建杂交四聚体来独立分离。在大肠杆菌(EcPFK)的磷酸果糖激酶中,这四种独特的变构 PEP-Fru-6-P 相互作用中,45 A 相互作用贡献了 25%,30 A 相互作用贡献了 31%,23 A 相互作用贡献了 42%的总 PEP 抑制作用。33 A 相互作用实际上导致 PEP 对 Fru-6-P 结合的轻微激活,因此对总观察到的 PEP 抑制作用贡献了-8%。在 EcPFK 中,每种相互作用对 PEP 抑制作用的相对贡献模式与 MgADP 对 EcPFK 的激活模式不同。这一观察结果支持了这样的结论,即尽管 PEP 和 MgADP 结合到相同的位点,但它们不使用相同的通讯途径来影响活性位点。本研究中观察到的描述 PEP 抑制作用的相对贡献模式也不符合 Bacillus stearothermophilus 磷酸果糖激酶中 PEP 抑制作用模式的确定,这表明这两种高度同源的同工酶不是以相同的方式被 PEP 抑制的。