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首页> 外文期刊>Applied Microbiology and Biotechnology >2 '-Deoxyribosyltransferase from Leishmania mexicana, an efficient biocatalyst for one-pot, one-step synthesis of nucleosides from poorly soluble purine bases
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2 '-Deoxyribosyltransferase from Leishmania mexicana, an efficient biocatalyst for one-pot, one-step synthesis of nucleosides from poorly soluble purine bases

机译:2'-氧氧吡菊糖基转移酶来自Leishmania墨西哥,一种有效的生物催化剂,用于单罐,核苷酸的一步合成来自可溶性嘌呤碱的核苷

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摘要

Processes catalyzed by enzymes offer numerous advantages over chemical methods although in many occasions the stability of the biocatalysts becomes a serious concern. Traditionally, synthesis of nucleosides using poorly water-soluble purine bases, such as guanine, xanthine, or hypoxanthine, requires alkaline pH and/or high temperatures in order to solubilize the substrate. In this work, we demonstrate that the 2'-deoxyribosyltransferase from Leishmania mexicana (LmPDT) exhibits an unusually high activity and stability under alkaline conditions (pH 8-10) across a broad range of temperatures (30-70 degrees C) and ionic strengths (0-500 mM NaCl). Conversely, analysis of the crystal structure of LmPDT together with comparisons with hexameric, bacterial homologues revealed the importance of the relationships between the oligomeric state and the active site architecture within this family of enzymes. Moreover, molecular dynamics and docking approaches provided structural insights into the substrate-binding mode. Biochemical characterization of LmPDT identifies the enzyme as a type I NDT (PDT), exhibiting excellent activity, with specific activity values 100-and 4000-fold higher than the ones reported for other PDTs. Interestingly, LmPDT remained stable during 36 h at different pH values at 40 degrees C. In order to explore the potential of LmPDT as an industrial biocatalyst, enzymatic production of several natural and non-natural therapeutic nucleosides, such as vidarabine (ara A), didanosine (ddI), ddG, or 2'-fluoro-2'-deoxyguanosine, was carried out using poorly water-soluble purines. Noteworthy, this is the first time that the enzymatic synthesis of 2'-fluoro-2'-deoxyguanosine, ara G, and ara H by a 2'-deoxyribosyltransferase is reported.
机译:酶催化的方法提供了与化学方法相比的许多优点,尽管许多情况下,生物催化剂的稳定性变得严重关注。传统上,使用不良水溶性嘌呤碱基的核苷的合成,例如鸟嘌呤,黄嘌呤或缺氧碱,需要碱性pH和/或高温以溶解基材。在这项工作中,我们证明来自Leishmania墨西哥(LMPDT)的2'-脱氧糖基转移酶在碱性温度(30-70℃)和离子强度下,碱性条件(pH 8-10)在碱性条件下具有异常高的活性和稳定性(0-500 mm NaCl)。相反,将LMPDT的晶体结构与六聚体同源物的比较分析,揭示了该酶系列中低聚状态与活性位点建筑之间的关系的重要性。此外,分子动力学和对接方法为基板结合模式提供了结构洞察。 LMPDT的生化表征将酶鉴定为I型NDT(PDT),表现出优异的活性,特定的活性值100-和4000倍高于所报道的其他PDT的活性值。有趣的是,LMPDT在40摄氏度的不同pH值期间仍然稳定。为了探讨LMPDT作为工业生物催化剂的潜力,酶促产生几种天然和非天然治疗核苷,如vidarabine(ARA a),脱蛋白(DDI),DDG或2'-氟-2'-脱氧胍,采用差水溶性嘌呤进行。值得注意的是,据报道,这是第一次鉴定2'-氟-2'-脱氧桂苷,ARA G和ARA H的酶合成,通过2'-脱氧糖基转移酶。

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