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一种受磷酸吡哆醛抑制的单功能磷酸甲基嘧啶激酶的特性分析

Characterization of an Monofunctional Phosphomethylpyrimidine Kinase That Is Inhibited by Pyridoxal Phosphate.

作者信息

De Vitto Humberto, Belfon Kafi K J, Sharma Nandini, Toay Sarah, Abendroth Jan, Dranow David M, Lukacs Christine M, Choi Ryan, Udell Hannah S, Willis Sydney, Barrera George, Beyer Olive, Li Teng Da, Hicks Katherine A, Torelli Andrew T, French Jarrod B

机构信息

The Hormel Institute, University of Minnesota, Austin, Minnesota 55912, United States.

Department of Biochemistry and Cell Biology, Stony Brook University, Stony Brook, New York 11790, United States.

出版信息

Biochemistry. 2024 Feb 2. doi: 10.1021/acs.biochem.3c00640.

Abstract

Thiamin and its phosphate derivatives are ubiquitous molecules involved as essential cofactors in many cellular processes. The biosynthesis of thiamin employs the parallel synthesis of 4-methyl-5-(2-hydroxyethyl)thiazole (THZ-P) and 4-amino-2-methyl-5(diphosphooxymethyl) pyrimidine (HMP) pyrophosphate (HMP-PP), which are coupled to generate thiamin phosphate. Most organisms that can biosynthesize thiamin employ a kinase (HMPK or ThiD) to generate HMP-PP. In nearly all cases, this enzyme is bifunctional and can also salvage free HMP, producing HMP-P, the monophosphate precursor of HMP-PP. Here we present high-resolution crystal structures of an HMPK from (AbHMPK), both unliganded and with pyridoxal 5-phosphate (PLP) noncovalently bound. Despite the similarity between HMPK and pyridoxal kinase enzymes, our kinetics analysis indicates that AbHMPK accepts HMP exclusively as a substrate and cannot turn over pyridoxal, pyridoxamine, or pyridoxine nor does it display phosphatase activity. PLP does, however, act as a weak inhibitor of AbHMPK with an IC of 768 μM. Surprisingly, unlike other HMPKs, AbHMPK catalyzes only the phosphorylation of HMP and does not generate the diphosphate HMP-PP. This suggests that an additional kinase is present in , or an alternative mechanism is in operation to complete the biosynthesis of thiamin.

摘要

硫胺素及其磷酸衍生物是普遍存在的分子,作为必需的辅因子参与许多细胞过程。硫胺素的生物合成采用4-甲基-5-(2-羟乙基)噻唑(THZ-P)和4-氨基-2-甲基-5-(二磷酸氧甲基)嘧啶(HMP)焦磷酸(HMP-PP)的平行合成,二者偶联生成硫胺素磷酸。大多数能够生物合成硫胺素的生物体利用一种激酶(HMPK或ThiD)来生成HMP-PP。几乎在所有情况下,这种酶都是双功能的,也可以挽救游离的HMP,产生HMP-P,即HMP-PP的单磷酸前体。在此,我们展示了来自[具体来源未给出]的HMPK (AbHMPK)的高分辨率晶体结构,其分别为未结合配体状态以及与磷酸吡哆醛(PLP)非共价结合的状态。尽管HMPK和磷酸吡哆醛激酶之间存在相似性,但我们的动力学分析表明,AbHMPK仅将HMP作为底物接受,不能催化磷酸吡哆醛、磷酸吡哆胺或吡哆醇的转化,也不显示磷酸酶活性。然而,PLP确实作为AbHMPK的一种弱抑制剂,其IC50为768 μM。令人惊讶的是,与其他HMPK不同,AbHMPK仅催化HMP的磷酸化,而不生成二磷酸的HMP-PP。这表明[具体来源未给出]中存在另一种激酶,或者存在一种替代机制来完成硫胺素的生物合成。

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