Danwen Qiu, Code Christian, Quan Chao, Gong Bang-Jin, Arndt Joseph, Pepinsky Blake, Rand Kasper D, Houde Damian
Department of Pharmacy, University of Copenhagen, Copenhagen, Denmark.
Biogen, Cambridge, Massachusetts, USA.
Pharm Res. 2016 Jun;33(6):1383-98. doi: 10.1007/s11095-016-1880-x. Epub 2016 Feb 23.
Oligosaccharides play diverse and unpredictable functional roles when attached to proteins and are a largely unexplored scaffold for deconstructing and attributing novel functions to proteins during drug development. Here, the glycoprotein Artemin (ART) was carefully assessed by multiple analytical methods that allow us to provide a comprehensive understanding of how N-linked glycosylation impact the structural and functional properties of ART.
Modification of the N-linked glycan of ART was performed by incubation with various enzymes. Biological assays and systems were used to examine the relative activity and pharmacokinetic properties of ART as a function of glycosylation. In order to reveal the conformational impact of glycosylation on ART, hydrogen/deuterium exchange mass spectrometry (HDX-MS) was employed in addition to differential scanning calorimetry. The colloidal stability of ART glycovariants was assessed by dynamic light scattering, viscometry, and solubility assays.
No difference in pharmacokinetics or relative potency was revealed between glycosylated and nonglycosylated ART. Surprisingly, the HDX-MS data indicated that the glycan does not greatly influence the conformation and dynamics of the protein. In contrast, differences in thermal and colloidal stability clearly revealed a role of glycosylation in increasing the solubility and stability of ART.
Our findings demonstrate how careful analysis using multiple advanced techniques can be used to identify and dissect the multiple potential functions of protein glycosylation and form a prerequisite for glycoengineering and drug development of glycoproteins.
寡糖与蛋白质结合时发挥着多样且难以预测的功能作用,在药物研发过程中,它是用于解构蛋白质并赋予其新功能的一个很大程度上未被探索的支架。在此,我们通过多种分析方法对糖蛋白Artemin(ART)进行了仔细评估,这些方法使我们能够全面了解N-糖基化如何影响ART的结构和功能特性。
通过与各种酶孵育对ART的N-连接聚糖进行修饰。使用生物学检测和系统来研究ART作为糖基化函数的相对活性和药代动力学特性。为了揭示糖基化对ART的构象影响,除了差示扫描量热法外,还采用了氢/氘交换质谱(HDX-MS)。通过动态光散射、粘度测定和溶解度测定评估ART糖变体的胶体稳定性。
糖基化和非糖基化ART之间在药代动力学或相对效力方面未显示出差异。令人惊讶的是,HDX-MS数据表明聚糖对蛋白质的构象和动力学影响不大。相比之下,热稳定性和胶体稳定性的差异清楚地揭示了糖基化在增加ART的溶解度和稳定性方面的作用。
我们的研究结果表明,如何使用多种先进技术进行仔细分析可用于识别和剖析蛋白质糖基化的多种潜在功能,并为糖蛋白的糖工程和药物开发奠定基础。