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甲基赤藓糖醇磷酸类似物的合成及其作为根癌农杆菌IspDF和IspE替代底物的评价。

Synthesis of methylerythritol phosphate analogues and their evaluation as alternate substrates for IspDF and IspE from Agrobacterium tumefaciens.

作者信息

Krasutsky Sergiy G, Urbansky Marek, Davis Chad E, Lherbet Christian, Coates Robert M, Poulter C Dale

机构信息

Department of Chemistry, University of Utah , Salt Lake City, Utah 84112, United States.

出版信息

J Org Chem. 2014 Oct 3;79(19):9170-8. doi: 10.1021/jo501529k. Epub 2014 Sep 23.

Abstract

The methylerythritol phosphate biosynthetic pathway, found in most Bacteria, some parasitic protists, and plant chloroplasts, converts D-glyceraldehyde phosphate and pyruvate to isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP), where it intersects with the mevalonate pathway found in some Bacteria, Archaea, and Eukarya, including the cytosol of plants. D-3-Methylerythritol-4-phosphate (MEP), the first pathway-specific intermediate in the pathway, is converted to IPP and DMAPP by the consecutive action of the IspD-H proteins. We synthesized five D-MEP analogues-D-erythritol-4-phosphate (EP), D-3-methylthrietol-4-phosphate (MTP), D-3-ethylerythritol-4-phosphate (EEP), D-1-amino-3-methylerythritol-4-phosphate (NMEP), and D-3-methylerythritol-4-thiolophosphate (MESP)-and studied their ability to function as alternative substrates for the reactions catalyzed by the IspDF fusion and IspE proteins from Agrobacterium tumefaciens, which covert MEP to the corresponding eight-membered cyclic diphosphate. All of the analogues, except MTP, and their products were substrates for the three consecutive enzymes.

摘要

磷酸甲基赤藓糖醇生物合成途径存在于大多数细菌、一些寄生原生生物和植物叶绿体中,它将磷酸二羟丙酮和丙酮酸转化为异戊烯基二磷酸(IPP)和二甲基烯丙基二磷酸(DMAPP),在此处它与一些细菌、古细菌和真核生物(包括植物的胞质溶胶)中发现的甲羟戊酸途径相交。D-3-甲基赤藓糖醇-4-磷酸(MEP)是该途径中第一个途径特异性中间体,通过IspD-H蛋白的连续作用转化为IPP和DMAPP。我们合成了五种D-MEP类似物——D-赤藓糖醇-4-磷酸(EP)、D-3-甲基硫代赤藓糖醇-4-磷酸(MTP)、D-3-乙基赤藓糖醇-4-磷酸(EEP)、D-1-氨基-3-甲基赤藓糖醇-4-磷酸(NMEP)和D-3-甲基赤藓糖醇-4-硫代磷酸酯(MESP),并研究了它们作为根癌农杆菌IspDF融合蛋白和IspE蛋白催化反应的替代底物的能力,这些反应将MEP转化为相应的八元环状二磷酸。除MTP外,所有类似物及其产物都是这三种连续酶的底物。

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