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Rapid One-step Enzymatic Synthesis and All-aqueous Purification of Trehalose Analogues

机译:海藻糖类似物的快速一步酶促合成和全水纯化

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摘要

Chemically modified versions of trehalose, or trehalose analogues, have applications in biology, biotechnology, and pharmaceutical science, among other fields. For instance, trehalose analogues bearing detectable tags have been used to detect Mycobacterium tuberculosis and may have applications as tuberculosis diagnostic imaging agents. Hydrolytically stable versions of trehalose are also being pursued due to their potential for use as non-caloric sweeteners and bioprotective agents. Despite the appeal of this class of compounds for various applications, their potential remains unfulfilled due to the lack of a robust route for their production. Here, we report a detailed protocol for the rapid and efficient one-step biocatalytic synthesis of trehalose analogues that bypasses the problems associated with chemical synthesis. By utilizing the thermostable trehalose synthase (TreT) enzyme from Thermoproteus tenax, trehalose analogues can be generated in a single step from glucose analogues and uridine diphosphate glucose in high yield (up to quantitative conversion) in 15-60 min. A simple and rapid non-chromatographic purification protocol, which consists of spin dialysis and ion exchange, can deliver many trehalose analogues of known concentration in aqueous solution in as little as 45 min. In cases where unreacted glucose analogue still remains, chromatographic purification of the trehalose analogue product can be performed. Overall, this method provides a "green" biocatalytic platform for the expedited synthesis and purification of trehalose analogues that is efficient and accessible to non-chemists. To exemplify the applicability of this method, we describe a protocol for the synthesis, all-aqueous purification, and administration of a trehalose-based click chemistry probe to mycobacteria, all of which took less than 1 hour and enabled fluorescence detection of mycobacteria. In the future, we envision that, among other applications, this protocol may be applied to the rapid synthesis of trehalose-based probes for tuberculosis diagnostics. For instance, short-lived radionuclide-modified trehalose analogues (e.g., F-modified trehalose) could be used for advanced clinical imaging modalities such as positron emission tomography-computed tomography (PET-CT).
机译:海藻糖或海藻糖类似物的化学修饰形式在生物学,生物技术和制药科学等领域中都有应用。例如,带有可检测标签的海藻糖类似物已被用于检测结核分枝杆菌,并可作为结核诊断成像剂应用。由于海藻糖具有用作无热量甜味剂和生物保护剂的潜力,因此也正在寻求海藻糖的水解稳定形式。尽管这类化合物对于各种应用具有吸引力,但由于缺乏可靠的生产途径,其潜力仍未实现。在这里,我们报告了海藻糖类似物快速有效的一步生物催化合成的详细协议,绕过了与化学合成相关的问题。通过利用得自Thermoproteus tenax的热稳定海藻糖合酶(TreT)酶,可以在15至60分钟内从葡萄糖类似物和尿苷二磷酸葡萄糖以高产率(高达定量转化)一步生成海藻糖类似物。由旋转透析和离子交换组成的简单,快速的非色谱纯化方案可以在短短45分钟内将许多已知浓度的海藻糖类似物递送到水溶液中。在仍存在未反应的葡萄糖类似物的情况下,可以进行海藻糖类似物产物的色谱纯化。总的来说,该方法为海藻糖类似物的快速合成和纯化提供了一个“绿色”生物催化平台,该平台对非化学家而言是高效且容易获得的。为了举例说明该方法的适用性,我们描述了一种用于分枝杆菌的合成,全水纯化和基于海藻糖的点击化学探针的给药方案,所有这些操作均耗时不到1小时,并且能够进行分枝杆菌的荧光检测。在未来,我们设想,除其他应用外,该协议可能会应用于基于海藻糖的探针的快速合成,以进行结核病诊断。例如,短寿命放射性核素修饰的海藻糖类似物(例如F修饰的海藻糖)可用于高级临床成像模式,例如正电子发射断层扫描计算机断层扫描(PET-CT)。

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