Keppler Michael, Moser Sandra, Jessen Henning J, Held Christoph, Andexer Jennifer N
Institute of Pharmaceutical Sciences, University of Freiburg, Albertstr. 25, 79104 Freiburg, Germany.
Institute of Organic Chemistry, University of Freiburg, Albertstr. 21, 79104 Freiburg, Germany.
Beilstein J Org Chem. 2022 Sep 20;18:1278-1288. doi: 10.3762/bjoc.18.134. eCollection 2022.
Polyphosphate kinases (PPKs) have become popular biocatalysts for nucleotide 5'-triphosphate (NTP) synthesis and regeneration. Two unrelated families are described: PPK1 and PPK2. They are structurally unrelated and use different catalytic mechanisms. PPK1 enzymes prefer the usage of adenosine 5'-triphosphate (ATP) for polyphosphate (polyP) synthesis while PPK2 enzymes favour the reverse reaction. With the emerging use of PPK enzymes in biosynthesis, a deeper understanding of the enzymes and their thermodynamic reaction course is of need, especially in comparison to other kinases. Here, we tested four PPKs from different organisms under the same conditions without any coupling reactions. In comparison to other kinases using phosphate donors with comparably higher phosphate transfer potentials that are characterised by reaction yields close to full conversion, the PPK-catalysed reaction reaches an equilibrium in which about 30% ADP is left. These results were obtained for PPK1 and PPK2 enzymes, and are supported by theoretical data on the basic reaction. At high concentrations of substrate, the different kinetic preferences of PPK1 and PPK2 can be observed. The implications of these results for the application of PPKs in chemical synthesis and as enzymes for ATP regeneration systems are discussed.
多聚磷酸激酶(PPKs)已成为用于核苷酸5'-三磷酸(NTP)合成与再生的热门生物催化剂。已描述了两个不相关的家族:PPK1和PPK2。它们在结构上不相关且使用不同的催化机制。PPK1酶在合成多聚磷酸(polyP)时更倾向于使用腺苷5'-三磷酸(ATP),而PPK2酶则更倾向于逆反应。随着PPK酶在生物合成中的新兴应用,尤其是与其他激酶相比,更深入地了解这些酶及其热力学反应过程是必要的。在此,我们在相同条件下测试了来自不同生物体的四种PPK,且没有任何偶联反应。与使用具有相对较高磷酸转移电位的磷酸盐供体的其他激酶相比,这些激酶的反应产率接近完全转化,而PPK催化的反应达到一种平衡,其中约30%的ADP会剩余。这些结果是针对PPK1和PPK2酶获得的,并得到了关于基本反应的理论数据的支持。在高底物浓度下,可以观察到PPK1和PPK2不同的动力学偏好。讨论了这些结果对PPK在化学合成中的应用以及作为ATP再生系统的酶的意义。