首页> 外文期刊>Journal of Structural Biology >Crystal structure of 1-deoxy-D-xylulose 5-phosphate reductoisomerase from the hyperthermophile Thermotoga maritima for insights into the coordination of conformational changes and an inhibitor binding
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Crystal structure of 1-deoxy-D-xylulose 5-phosphate reductoisomerase from the hyperthermophile Thermotoga maritima for insights into the coordination of conformational changes and an inhibitor binding

机译:嗜热嗜热菌嗜热菌的1-脱氧-D-木酮糖5-磷酸还原异构酶的晶体结构,可用于洞察构象变化与抑制剂结合的机理

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摘要

Isopentenyl diphosphate is a precursor of various isoprenoids and is produced by the 2-C-methyl-D-erythritol 4-phosphate (MEP) pathway in plastids of plants, protozoa and many eubacteria. A key enzyme in the MEP pathway, 1-deoxy-D-xylulose 5-phosphate reductoisomerase (DXR), has been shown to be the target of fosmidomycin, which works as an antimalarial, antibacterial and herbicidal compound. In this paper, we report studies of kinetics and the crystal structures of the thermostable DXR from the hyper-thermophile Thermotoga maritima. Unlike the mesophilic DXRs, Thermotoga DXR (tDXR) showed activity only with Mg2+ at its growth temperature. We solved the crystal structures of tDXR with and without fosmidomycin. The structure without fosmidomycin but unexpectedly bound with 2-methy1-2,4-pentanediol (MPD), revealing a new extra space available for potential drug design. This structure adopted the closed form by rigid domain rotation but without the flexible loop over the active site, which was considered as a novel conformation. Further, the conserved Asp residue responsible for cation binding seemed to play an important role in adjusting the position of fosmidomycin. Taken together, our kinetic and the crystal structures illustrate the binding mode of fosmidomycin that leads to its slow, tight binding according to the conformational changes of DXR.
机译:异戊烯基二磷酸酯是各种类异戊二烯的前体,由2-C-甲基-D-赤藓糖醇4-磷酸(MEP)途径在植物,原生动物和许多真细菌的质体中产生。 MEP途径中的关键酶1-脱氧-D-木酮糖5-磷酸还原异构酶(DXR)已被证明是磷霉素的靶标,它可作为抗疟,抗菌和除草化合物。在本文中,我们报道了来自超嗜热菌马氏嗜热菌的热稳定DXR的动力学和晶体结构的研究。与嗜温DXR不同,Thermotoga DXR(tDXR)在其生长温度下仅对Mg2 +具有活性。我们解决了有和没有磷霉素的tDXR的晶体结构。该结构不含磷霉素,但意外地与2-甲基1-2,4-戊二醇(MPD)结合,从而为潜在的药物设计提供了新的额外空间。这种结构通过刚性域旋转采用闭合形式,但是在活性位点上没有柔性环,这被认为是一种新颖的构象。此外,负责阳离子结合的保守的Asp残基似乎在调节磷霉素的位置中起重要作用。结合起来,我们的动力学和晶体结构说明了磷霉素的结合模式,根据DXR的构象变化,它导致缓慢,紧密的结合。

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