首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Crystallization and preliminary X-ray analysis of the ergothioneine-biosynthetic methyltransferase EgtD
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Crystallization and preliminary X-ray analysis of the ergothioneine-biosynthetic methyltransferase EgtD

机译:麦角硫氨酸-生物合成甲基转移酶EgtD的结晶和初步X射线分析

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摘要

Ergothioneine is an amino-acid betaine derivative of histidine that was discovered more than one century ago. Despite significant research pointing to a function in oxidative stress defence, the exact mechanisms of action of ergothioneine remain elusive. Although both humans and bacterial pathogens such as Mycobacterium tuberculosis seem to depend on ergothioneine, humans are devoid of the corresponding biosynthetic enzymes. Therefore, its biosyn­thesis may emerge as potential drug target in the development of novel therapeutics against tuberculosis. The recent identification of ergothioneine-biosynthetic genes in M. smegmatis enables a more systematic study of its biology. The pathway is initiated by EgtD, a SAM-dependent methyltransferase that catalyzes a trimethylation reaction of histidine to give N(α),N(α),N(α)-trimethylhistidine. Here, the recombinant production, purification and crystallization of EgtD are reported. Crystals of native EgtD diffracted to 2.35 Å resolution at a synchrotron beamline, whereas crystals of seleno-l-methionine-labelled protein diffracted to 1.75 Å resolution and produced a significant anomalous signal to 2.77 Å resolution at the K edge. All of the crystals belonged to space group P212121, with two EgtD monomers in the asymmetric unit.
机译:麦角硫因是一种组氨酸的氨基酸甜菜碱衍生物,已被发现超过一个世纪。尽管有大量研究指出了氧化应激防御的功能,但麦角硫因的确切作用机理仍然难以捉摸。尽管人类和细菌病原体(例如结核分枝杆菌)似乎都依赖于麦角硫因,但人类缺乏相应的生物合成酶。因此,其生物合成可能成为开发抗结核新药的潜在药物靶标。耻垢分枝杆菌中麦角硫因的生物合成基因的最新鉴定使它的生物学研究更加系统化。该途径由EgtD启动,EgtD是SAM依赖的甲基转移酶,催化组氨酸的三甲基化反应,生成N(α),N(α),N(α)-三甲基组氨酸。在此,报道了EgtD的重组生产,纯化和结晶。天然EgtD晶体在同步加速器光束线处衍射至2.35Å分辨率,而硒代1-蛋氨酸标记的蛋白质晶体在K边缘衍射至1.75Å分辨率并产生明显的异常信号,至2.77Å分辨率。所有晶体均属于空间群P212121,在不对称单元中有两个EgtD单体。

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