Pompeo Frédérique, Granet Yohann, Lavergne Jean-Pierre, Grangeasse Christophe, Nessler Sylvie, Jault Jean-Michel, Galinier Anne
Laboratoire de Chimie Bactérienne, UPR 9043, IBSM-CNRS, 31 chemin Joseph Aiguier, 13402 Marseille, France.
Biochemistry. 2003 Jun 10;42(22):6762-71. doi: 10.1021/bi034405i.
In most Gram-positive bacteria, catabolite repression is mediated by a bifunctional enzyme, the HPr kinase/phosphorylase (HprK/P). It has recently been shown that HprK/P could catalyze the phosphorylation of the protein HPr by using pyrophosphate (PP(i)) as a phosphate donor instead of ATP. Here we showed that, as for ATP, PP(i) binds to the enzyme with strong positive cooperativity. However, in contrast to ATP, PP(i) binding does not modify the fluorescence properties of the unique Trp residue of Bacillus subtilis HprK/P. In addition, to understand how two conserved motifs, namely, the P-loop and the specific signature of this family, participate in the three enzymatic activities of HprK/Ps (ATP-kinase, PP(i)-kinase, and phosphorylase), several site-directed mutants were generated. Whereas the three activities are mediated by the P-loop which is directly involved in the binding of ATP, PP(i), or Pi, the signature motif seems to be involved preferentially in the dephosphorylation reaction. On the basis of these results, we propose a model in which the binding of the allosteric activator FBP induces a conformational change of a central loop located above the active site of HprK/P, thereby allowing the ATP binding. However, this conformational change is not required for the binding of PP(i).
在大多数革兰氏阳性菌中,分解代谢物阻遏由一种双功能酶——HPr激酶/磷酸酶(HprK/P)介导。最近研究表明,HprK/P能够利用焦磷酸(PP(i))而非ATP作为磷酸供体,催化蛋白质HPr的磷酸化反应。在此我们发现,与ATP一样,PP(i)以强正协同性结合到该酶上。然而,与ATP不同的是,PP(i)的结合不会改变枯草芽孢杆菌HprK/P中唯一色氨酸残基的荧光特性。此外,为了了解两个保守基序,即P环和该家族的特定特征基序,如何参与HprK/P的三种酶活性(ATP激酶、PP(i)激酶和磷酸酶),我们构建了多个定点突变体。三种活性均由直接参与ATP、PP(i)或Pi结合的P环介导,而特征基序似乎优先参与去磷酸化反应。基于这些结果,我们提出了一个模型,其中变构激活剂FBP的结合诱导了位于HprK/P活性位点上方的中心环的构象变化,从而使得ATP能够结合。然而,这种构象变化对于PP(i)的结合并非必需。