首页> 外文期刊>Chembiochem: A European journal of chemical biology >Unravelling the Specificity of Laminaribiose Phosphorylase from Paenibacillus sp. YM-1 towards Donor Substrates Glucose/Mannose 1-Phosphate by Using X-ray Crystallography and Saturation Transfer Difference NMR Spectroscopy
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Unravelling the Specificity of Laminaribiose Phosphorylase from Paenibacillus sp. YM-1 towards Donor Substrates Glucose/Mannose 1-Phosphate by Using X-ray Crystallography and Saturation Transfer Difference NMR Spectroscopy

机译:解开来自Paenibacillus sp的层状磷酸化酶的特异性。 通过X射线晶体学和饱和转移差NMR光谱通过X射线晶体学和饱和转移差异致供体基质的YM-1孔葡萄糖/甘露糖1-磷酸酯

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摘要

Glycoside phosphorylases (GPs) carry out a reversible phosphorolysis of carbohydrates into oligosaccharide acceptors and the corresponding sugar 1-phosphates. The reversibility of the reaction enables the use of GPs as biocatalysts for carbohydrate synthesis. Glycosyl hydrolase family 94 (GH94), which only comprises GPs, is one of the most studied GP families that have been used as biocatalysts for carbohydrate synthesis, in academic research and in industrial production. Understanding the mechanism of GH94 enzymes is a crucial step towards enzyme engineering to improve and expand the applications of these enzymes in synthesis. In this work with a GH94 laminaribiose phosphorylase from Paenibacillus sp. YM-1 (PsLBP), we have demonstrated an enzymatic synthesis of disaccharide 1 (beta-d-mannopyranosyl-(1 -> 3)-d-glucopyranose) by using a natural acceptor glucose and noncognate donor substrate alpha-mannose 1-phosphate (Man1P). To investigate how the enzyme recognises different sugar 1-phosphates, the X-ray crystal structures of PsLBP in complex with Glc1P and Man1P have been solved, providing the first molecular detail of the recognition of a noncognate donor substrate by GPs, which revealed the importance of hydrogen bonding between the active site residues and hydroxy groups at C2, C4, and C6 of sugar 1-phosphates. Furthermore, we used saturation transfer difference NMR spectroscopy to support crystallographic studies on the sugar 1-phosphates, as well as to provide further insights into the PsLBP recognition of the acceptors and disaccharide products.
机译:糖苷磷酸酶(GPS)对寡糖受体和相应的糖1-磷酸盐进行可逆磷酸磷酸盐。反应的可逆性使得使用GPS作为碳水化合物合成的生物催化剂。仅包含GPS的糖基水解酶系列94(GH94)是最多研究的GP系列之一,这些家庭被用作碳水化合物合成的生物催化剂,在学术研究和工业生产中。理解GH94酶的机制是致酶工程的关键步骤,以改善和扩展这些酶在合成中的应用。在这项工作中,与Paenibacillus sp的GH94层状磷脂酶磷酸化酶。我们已经通过使用天然受体葡萄糖和非认知供体基质α-甘露糖1-磷酸α-甘露糖1-磷酸α-甘露糖,证明了二糖1(β-D-甘露糖基 - (1-> 3)-D-吡喃葡萄糖)的酶促合成(man1p)。为了研究酶如何识别出不同的糖1-磷酸盐,已经解决了与GLC1P和MAN1P复合物中PSLBP的X射线晶体结构,提供了通过GPS识别非认知供体基材的第一种分子细节,这揭示了重要性C2,C4和C6在糖1-磷酸盐中的活性位点残基和羟基之间的氢键。此外,我们使用饱和转移差异NMR光谱来支持糖1-磷酸盐的晶体研究,以及提供进一步了解PSLBP对受体和二糖产物的识别。

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