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首页> 外文期刊>Analytical chemistry >Further Insights into the Catalytical Properties of Deglycosylated Pyranose Dehydrogenase from Agaricus meleagris Recombinantly Expressed in Pichia pastoris
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Further Insights into the Catalytical Properties of Deglycosylated Pyranose Dehydrogenase from Agaricus meleagris Recombinantly Expressed in Pichia pastoris

机译:巴斯德毕赤酵母中重组表达的姬松茸去糖基化吡喃糖脱氢酶催化性能的进一步研究

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摘要

The present study focuses on fragmented deglycosylated pyranose dehydrogenase (fdgPDH) from Agaricus meleagris recombinantly expressed in Pichia pastoris. Fragmented deglycosylated PDH is formed from the deglycosylated enzyme (dgPDH) when it spontaneously loses a C-terminal fragment when stored in a buffer solution at 4℃. The remaining larger fragment has a molecular weight of ~46 kDa and exhibits higher volumetric activity for glucose oxidation compared with the deglycosylated and glycosylated (gPDH) forms of PDH. Flow injection amperometry and cyclic voltammetry were used to assess and compare the catalytic activity of the three investigated forms of PDH, "wired" to graphite electrodes with two different osmium redox polymers: [Os(4,4'-dimethyl-2,2'-bipyridine)_2(poly-(vinylimidazole))_(10)Cl]~+ [Os(dmbpy)PVI] and [Os(4,4'-dimethoxy-2,2'-bipyridine)_2(poly-(vinylimidazole))_(10)Cl]~+ [Os(dmobpy)PVI]. When "wired" with Os(dmbpy)PVI, the graphite electrodes modified with fdgPDH showed a pronounced increase in the current density with J_(max) 13- and 6-fold higher than that observed for gPDH- and dgPDH-modified electrodes, making the fragmented enzyme extraordinarily attractive for further biotechnological applications. An easier access of the substrate to the active site and improved communication between the enzyme and mediator matrix are suggested as the two main reasons for the excellent performance of the fdgPDH when compared with that of gPDH and dgPDH. Three of the four glycosites in PDH: N~(75), N~(175), and N~(252) were assigned using mass spectrometry in conjunction with endoglycosidase treatment and tryptic digestion. Determination of the asparagine residues carrying carbohydrate moieties in PDH can serve as a solid background for production of recombinant enzyme lacking glycosylation.
机译:本研究的重点是重组表达于巴斯德毕赤酵母中的姬松茸的片段化的去糖基化的吡喃糖脱氢酶(fdgPDH)。当在4℃的缓冲溶液中储存时,去糖基化酶(dgPDH)自发丢失C端片段时,会形成碎片化的去糖基化PDH。与PDH的去糖基化和糖基化(gPDH)形式相比,剩余的较大片段的分子量约为46 kDa,对葡萄糖氧化表现出更高的体积活性。流动注射安培法和循环伏安法用于评估和比较三种研究形式的PDH的催化活性,PDH“连接”到具有两种不同red氧化还原聚合物的石墨电极:[Os(4,4'-dimethyl-2,2' -联吡啶)_2(聚(乙烯基咪唑))_(10)Cl]〜+ [Os(dmbpy)PVI]和[Os(4,4'-二甲氧基-2,2'-联吡啶)_2(聚-(乙烯基咪唑) ))_(10)Cl]〜+ [Os(dmobpy)PVI]。当与Os(dmbpy)PVI“连接”时,用fdgPDH修饰的石墨电极显示出明显的电流密度增加,J_(max)比gPDH和dgPDH修饰的电极高13倍和6倍,从而片段化酶对于进一步的生物技术应用极为有吸引力。与gPDH和dgPDH相比,fdgPDH具有优异的性能的两个主要原因是,底物更容易接近活性位点,并且酶与介体基质之间的连通性得到了改善。使用质谱结合内切糖苷酶处理和胰蛋白酶消化,将PDH中的四个糖位中的三个定位为N〜(75),N〜(175)和N〜(252)。测定PDH中携带碳水化合物部分的天冬酰胺残基可作为生产缺乏糖基化的重组酶的坚实背景。

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