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A New Subfamily of Polyphosphate Kinase 2 (Class III PPK2) Catalyzes both Nucleoside Monophosphate Phosphorylation and Nucleoside Diphosphate Phosphorylation

机译:聚磷酸激酶2(III PPK2类)的一个新的亚家族催化核苷单磷酸磷酸化和核苷二磷酸磷酸化。

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Inorganic polyphosphate (polyP) is a linear polymer of tens to hundreds of phosphate (P_(i)) residues linked by “high-energy” phosphoanhydride bonds as in ATP. PolyP kinases, responsible for the synthesis and utilization of polyP, are divided into two families (PPK1 and PPK2) due to differences in amino acid sequence and kinetic properties. PPK2 catalyzes preferentially polyP-driven nucleotide phosphorylation (utilization of polyP), which is important for the survival of microbial cells under conditions of stress or pathogenesis. Phylogenetic analysis suggested that the PPK2 family could be divided into three subfamilies (classes I, II, and III). Class I and II PPK2s catalyze nucleoside diphosphate and nucleoside monophosphate phosphorylation, respectively. Here, we demonstrated that class III PPK2 catalyzes both nucleoside monophosphate and nucleoside diphosphate phosphorylation, thereby enabling us to synthesize ATP from AMP by a single enzyme. Moreover, class III PPK2 showed broad substrate specificity over purine and pyrimidine bases. This is the first demonstration that class III PPK2 possesses both class I and II activities.
机译:无机多磷酸酯(polyP)是一种线性聚合物,由数十到数百个磷酸酯(P_(i))残基通过ATP中的“高能”磷酸酐键连接而成。由于氨基酸序列和动力学特性的差异,负责polyP合成和利用的PolyP激酶分为两个家族(PPK1和PPK2)。 PPK2优先催化由polyP驱动的核苷酸磷酸化(利用polyP),这对于在压力或致病条件下微生物细胞的存活很重要。系统发育分析表明,PPK2家族可分为三个亚家族(I,II和III类)。 I类和II类PPK2分别催化核苷二磷酸和核苷单磷酸磷酸化。在这里,我们证明了III类PPK2催化核苷单磷酸和核苷二磷酸的磷酸化,从而使我们能够通过单一酶从AMP合成ATP。此外,III类PPK2在嘌呤和嘧啶碱基上显示出广泛的底物特异性。这是第III类PPK2同时具有I和II类活动的证明。

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