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两种相容性溶质与枸杞拟层孔菌植酸酶聚糖部分的优先结合。

Preferential binding of two compatible solutes to the glycan moieties of Peniophora lycii phytase.

作者信息

Bagger Heidi L, Fuglsang Claus C, Westh Peter

机构信息

Department of Life Sciences and Chemistry, Roskilde University, Building 18.1, P.O. Box 260, DK-4000 Roskilde, Denmark.

出版信息

Biochemistry. 2003 Sep 2;42(34):10295-300. doi: 10.1021/bi034693i.

Abstract

Regulation of hydration behavior, and the concomitant effects on solubility and other properties, has been suggested as a main function of protein glycosylation. In this work, we have studied the hydration of the heavily glycosylated Peniophora lycii phytase in solutions (0.15-1.1 m) of the two compatible solutes glycerol and sorbitol. Osmometric measurements showed that glycerol preferentially binds to phytase (i.e., glycerol-glycoprotein interactions are more favorable than water-glycoprotein interactions resulting in a preferential accumulation of glycerol near the protein interface), while sorbitol is preferentially excluded from the hydration sphere (water-glycoprotein interactions are the more favorable). To assess contributions from carbohydrate and peptide moieties, respectively, we compared phytase (Phy) and a modified, yet enzymatically active form (dgPhy) in which 90% of the glycans had been removed. This revealed that both polyols showed a pronounced and approximately equal degree of preferential binding to the carbohydrate moiety. This preferential binding of polyols to glycans is in contrast to the exclusion from peptide interfaces observed here (for dgPhy) and in numerous previous reports on nonglycosylated proteins. Despite the distinct differences between peptide and carbohydrate groups, glycosylation had no effect on the stabilizing action provided by glycerol and sorbitol. On the basis of this, it was concluded that the carbohydrate mantle of Phy is equally accessible in the native and thermally denatured states, respectively (most likely fully accessible in both), and thus that its interactions with compatible solutes have little or no effect on conformational equilibria of the glycoprotein. For solubility and aggregation equilibria, on the other hand, the results suggest a polyol-induced stabilization of monomeric forms.

摘要

调节水合行为以及随之对溶解度和其他性质产生的影响,已被认为是蛋白质糖基化的主要功能。在这项工作中,我们研究了在两种相容性溶质甘油和山梨醇的溶液(0.15 - 1.1 m)中,高度糖基化的枸杞拟层孔菌植酸酶的水合作用。渗透压测量表明,甘油优先与植酸酶结合(即甘油 - 糖蛋白相互作用比水 - 糖蛋白相互作用更有利,导致甘油在蛋白质界面附近优先积累),而山梨醇则优先被排除在水合球之外(水 - 糖蛋白相互作用更有利)。为了分别评估碳水化合物和肽部分的贡献,我们比较了植酸酶(Phy)和一种经过修饰但仍具有酶活性的形式(dgPhy),其中90%的聚糖已被去除。这表明两种多元醇对碳水化合物部分都表现出明显且大致相等的优先结合程度。多元醇与聚糖的这种优先结合与这里观察到的(对于dgPhy)以及之前许多关于非糖基化蛋白质的报道中肽界面的排斥情况形成对比。尽管肽基和碳水化合物基之间存在明显差异,但糖基化对甘油和山梨醇提供的稳定作用没有影响。基于此,得出的结论是,Phy的碳水化合物外壳在天然状态和热变性状态下分别同样可及(很可能在两种状态下都完全可及),因此其与相容性溶质的相互作用对糖蛋白的构象平衡几乎没有影响。另一方面,对于溶解度和聚集平衡,结果表明多元醇诱导了单体形式的稳定。

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