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首页> 外文期刊>Bioorganic and Medicinal Chemistry >Optimized design and synthesis of chemical dimerizer substrates for detection of glycosynthase activity via chemical complementation.
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Optimized design and synthesis of chemical dimerizer substrates for detection of glycosynthase activity via chemical complementation.

机译:化学二聚体底物的优化设计和合成,用于通过化学互补检测糖合酶活性。

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摘要

Glycosynthases catalyze the formation of a glycosidic bond between a glycosyl fluoride donor substrate and a glycosyl acceptor substrate with high yield, thus providing a valuable approach for the synthesis of carbohydrates and glycoconjugates. Chemical complementation can be used to link glycosynthase activity to the transcription of a reporter gene in vivo, providing a selection for the directed evolution of glycosynthase enzymes with improved properties. In this approach, glycosynthase activity is detected as covalent coupling between a small molecule disaccharide acceptor substrate and a small molecule disaccharide alpha-fluoro donor substrate. Here we report the optimized design and synthesis of these small molecule substrates. These optimized substrates are shown to give a robust, glycosynthase-dependent transcriptional read-out in the chemical complementation assay. The full synthesis and characterization of these substrates are reported for the first time. These optimized chemical dimerizer substrates should allow the potential of chemical complementation for the directed evolution of glycosynthases with diverse substrate specificities and improved properties to be fully realized.
机译:糖苷酸合酶以高产率催化糖基氟化物供体底物和糖基受体底物之间的糖苷键的形成,从而为合成碳水化合物和糖结合物提供了有价值的方法。化学补体可用于将糖合酶活性与体内报道基因的转录联系起来,为糖合酶的定向进化提供了选择,并具有改善的特性。在这种方法中,糖合酶活性被检测为小分子二糖受体底物与小分子二糖α-氟供体底物之间的共价偶联。在这里,我们报告了这些小分子底物的优化设计和合成。这些优化的底物在化学互补分析中显示出可靠的,依赖糖合酶的转录读数。首次报道了这些底物的完整合成和表征。这些优化的化学二聚体底物应具有化学互补的潜力,以实现具有各种底物特异性和改进特性的糖合酶的定向进化。

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