Mechanistic Studies of 1-Deoxy-D-Xylulose-5-Phosphate Synthase from Deinococcus radiodurans.

Biochemistry & molecular biology journal Pub Date : 2018-01-01 Epub Date: 2018-01-29 DOI:10.21767/2471-8084.100051
Sumit Handa, Daniel R Dempsey, Divya Ramamoorthy, Nanci Cook, Wayne C Guida, Tyler J Spradling, Justin K White, H Lee Woodcock, David J Merkler
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引用次数: 9

Abstract

The non-mevalonate dependent (NMVA) pathway for the biosynthesis of isopentenyl pyrophosphate and dimethylallyl pyrophosphate is the sole source of these terpenoids for the production of isoprenoids in the apicomplexan parasites, in many eubacteria, and in plants. The absence of this pathway in higher organisms has opened a new platform for the development of novel antibiotics and anti-malarials. The enzyme catalyzing the first step of the NMVA pathway is 1-deoxy-D-xylulose-5-phosphate synthase (DXPS). DXPS catalyzes the thiamine pyrophosphate- and Mg (II)-dependent conjugation of pyruvate and D-glyceraldehyde-3-phosphate to form 1-deoxy-D-xylulose-5-phosphate and CO2. The kinetic mechanism of DXPS from Deinococcus radiodurans most consistent with our data is random sequential as shown using a combination of kinetic analysis and product and dead-end inhibition studies. The role of active site amino acids, identified by sequence alignment to other DXPS proteins, was probed by constructing and analyzing the catalytic efficacy of a set of targeted site-directed mutants.

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耐辐射球菌1-脱氧- d -木醛糖-5-磷酸合成酶的机制研究。
在顶复体寄生虫、许多真细菌和植物中,生物合成焦磷酸异戊烯基和焦磷酸二甲基烯基的非甲羟戊酸依赖(NMVA)途径是产生类异戊烯基萜类物质的唯一来源。在高等生物中缺乏这一途径为开发新型抗生素和抗疟疾药物开辟了一个新的平台。催化NMVA途径第一步的酶是1-脱氧-d -木醛糖-5-磷酸合成酶(DXPS)。DXPS催化丙酮酸和d -甘油醛-3-磷酸的硫胺素焦磷酸和Mg (II)依赖性偶联反应生成1-脱氧-d -5-磷酸木酮糖和CO2。从耐辐射球菌中提取的DXPS的动力学机制与我们的数据最一致的是随机序列,这是通过动力学分析和产物和终端抑制研究相结合得出的。通过构建和分析一组靶向位点导向突变体的催化效果,通过序列比对鉴定了活性位点氨基酸与其他DXPS蛋白的作用。
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