首页> 外文期刊>Journal of bacteriology >Identification in Haloferax volcanii of Phosphomevalonate Decarboxylase and Isopentenyl Phosphate Kinase as Catalysts of the Terminal Enzyme Reactions in an Archaeal Alternate Mevalonate Pathway
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Identification in Haloferax volcanii of Phosphomevalonate Decarboxylase and Isopentenyl Phosphate Kinase as Catalysts of the Terminal Enzyme Reactions in an Archaeal Alternate Mevalonate Pathway

机译:鉴定在火山嗜盐菌中的磷酸戊戊二烯酸脱羧酶和异戊烯基磷酸激酶是古细菌替代甲羟戊酸途径中末端酶反应的催化剂。

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Mevalonate (MVA) metabolism provides the isoprenoids used in archaeal lipid biosynthesis. In synthesis of isopentenyl diphosphate, the classical MVA pathway involves decarboxylation of mevalonate diphosphate, while an alternate pathway has been proposed to involve decarboxylation of mevalonate monophosphate. To identify the enzymes responsible for metabolism of mevalonate 5-phosphate to isopentenyl diphosphate in Haloferax volcanii, two open reading frames (HVO_2762 and HVO_1412) were selected for expression and characterization. Characterization of these proteins indicated that one enzyme is an isopentenyl phosphate kinase that forms isopentenyl diphosphate (in a reaction analogous to that of Methanococcus jannaschii MJ0044). The second enzyme exhibits a decarboxylase activity that has never been directly attributed to this protein or any homologous protein. It catalyzes the synthesis of isopentenyl phosphate from mevalonate monophosphate, a reaction that has been proposed but never demonstrated by direct experimental proof, which is provided in this account. This enzyme, phosphomevalonate decarboxylase (PMD), exhibits strong inhibition by 6-fluoromevalonate monophosphate but negligible inhibition by 6-fluoromevalonate diphosphate (a potent inhibitor of the classical mevalonate pathway), reinforcing its selectivity for monophosphorylated ligands. Inhibition by the fluorinated analog also suggests that the PMD utilizes a reaction mechanism similar to that demonstrated for the classical MVA pathway decarboxylase. These observations represent the first experimental demonstration in H. volcanii of both the phosphomevalonate decarboxylase and isopentenyl phosphate kinase reactions that are required for an alternate mevalonate pathway in an archaeon. These results also represent, to our knowledge, the first identification and characterization of any phosphomevalonate decarboxylase.
机译:甲羟戊酸(MVA)代谢提供了古细菌脂质生物合成中使用的类异戊二烯。在异戊烯基二磷酸酯的合成中,经典的MVA途径涉及甲羟戊酸二磷酸酯的脱羧,而已提出了替代途径涉及甲羟戊酸二磷酸酯的脱羧。为了鉴定在Haloferax volcanii中负责将甲羟戊酸5-磷酸代谢为异戊烯基二磷酸的酶,选择了两个开放阅读框(HVO_2762和HVO_1412)进行表达和表征。这些蛋白质的表征表明,一种酶是形成异戊烯基二磷酸的异戊烯基磷酸激酶(在类似于詹氏甲烷球菌MJ0044的反应中)。第二种酶表现出从未被直接归因于该蛋白质或任何同源蛋白质的脱羧酶活性。它催化从甲羟戊酸单磷酸酯合成磷酸异戊烯酯,该反应已被提出,但没有直接的实验证明可以证明。这种酶,磷酸甲羟戊酸脱羧酶(PMD),对6-氟甲羟戊酸单磷酸具有很强的抑制作用,而对6-氟甲羟戊酸二磷酸(经典的甲羟戊酸途径的有效抑制剂)的抑制作用则微不足道,从而增强了其对单磷酸化配体的选择性。氟化类似物的抑制作用还表明,PMD利用了与经典MVA途径脱羧酶所证明的相似的反应机理。这些观察结果是在火山嗜血杆菌中首次进行的实验性证明,证明了古细菌中另一种甲羟戊酸途径需要磷酸甲羟戊酸脱羧酶和异戊烯基磷酸激酶反应。就我们所知,这些结果也代表了任何磷酸甲羟戊酸脱羧酶的首次鉴定和表征。

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