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Direct experimental evidence for the high chemical reactivity of α- and β-xylopyranosides adopting a 2,5B conformation in glycosyl transfer

机译:直接实验证据表明在糖基转移中采用2,5B构象的α-和β-吡喃吡喃糖苷具有很高的化学反应性

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摘要

The effect of a ~(2,5)B boat conformation on xyloside reactivity has been investigated by studying the hydrolysis and glycosylation of a series of synthetic xyloside analogues based on a 2-oxabicyclo[2.2.2]octane framework, which forces the xylose analogue to adopt a ~(2,5)B conformation. The locked β-xylosides were found to hydrolyze 100-1200 times faster than methyl β-D-xylopyranoside, whereas the locked α-xylosides hydrolyzed up to 2× 10~4 times faster than methyl α-D-xylopyranoside. A significant rate enhancement was also observed for the glycosylation reaction. The high reactivity of these conformers can be related to the imposition of a ~(2,5)B conformation, which approximates a transition state (TS) boat conformation. In this way, the energy penalty required to go from the chair to the TS conformation is already paid. These results parallel and support the observation that the GH-11 xylanase family force their substrate to adopt a ~(2,5)B conformation to achieve highly efficient enzymatic glycosidic bond hydrolysis.
机译:通过研究一系列基于2-氧杂双环[2.2.2]辛烷骨架的合成木糖苷类似物的水解和糖基化反应,研究了〜(2,5)B舟构象对木糖苷反应性的影响,该反应迫使木糖生成木糖。类似物采用〜(2,5)B构象。发现锁定的β-木糖苷的水解速度比甲基β-D-木吡喃糖苷快100-1200倍,而锁定的α-木糖苷的水解速度比甲基α-D-木糖吡喃糖苷快2×10〜4倍。还观察到糖基化反应的速率显着提高。这些构象异构体的高反应性可能与〜(2,5)B构象的强加有关,后者近似于过渡态(TS)船构象。这样,已经支付了从椅子到TS构型所需的能量消耗。这些结果平行并支持以下观察:GH-11木聚糖酶家族迫使其底物采用〜(2,5)B构象以实现高效的酶促糖苷键水解。

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