首页> 外文期刊>Chemistry: A European journal >Homogeneous human complex-type oligosaccharides in correctly folded intact glycoproteins: Evaluation of oligosaccharide influence on protein folding, stability, and conformational properties
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Homogeneous human complex-type oligosaccharides in correctly folded intact glycoproteins: Evaluation of oligosaccharide influence on protein folding, stability, and conformational properties

机译:正确折叠的完整糖蛋白中的同质人复合型寡糖:评估寡糖对蛋白质折叠,稳定性和构象性质的影响

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摘要

The N-glycosylation of proteins is generated at the consensus sequence NXS/T (where X is any amino acid except proline) by the biosynthetic process, and occurs in the endoplasmic reticulum and Golgi apparatus. In order to investigate the influence of human complex-type oligosaccharides on counterpart protein conformation, crambin and ovomucoide, which consist of 46 and 56 amino acid residues, respectively, were selected for synthesis of model glycoproteins. These small glycoproteins were intentionally designed to be glycosylated at the α-helix (crambin: 8 position), β-sheet (crambin: 2 position) and loop position between the antiparallel β-sheets (ovomucoide: 28 position), and were synthesized by using a peptide-segment coupling strategy. After preparation of these glycosylated polypeptide chains, protein folding experiments were performed under redox conditions by using cysteine-cystine. Although the small glycoproteins bearing intentional glycosylation at the α-helix and β-sheet exhibited a suitable folding process, glycosylation at the loop position between the antiparallel β-strands caused multiple products. The conformational differences in the isolated homogeneous glycoproteins compared with non-glycosylated counterparts were evaluated by circular dichroism (CD) and NMR spectroscopy. These analyses suggested that this intentional N-glycosylation did not result in large conformational changes in the purified protein structures, including the case of glycosylation at the loop position between the antiparallel β-strands. In addition to these experiments, the conformational properties of three glycoproteins were evaluated by CD spectroscopy under different temperatures. The oligosaccharides on the protein surface fluctuated considerably; this was dependent on the increase in the solution temperature and was thought to disrupt the protein tertiary structure. Based on the measurement of the CD spectra, however, the glycoproteins bearing three disulfide bonds did not exhibit any change in their protein tertiary structure. These results suggest that the oligosaccharide conformational fluctuations were not disruptive to protein tertiary structure, and the tertiary structure of glycoproteins might be stabilized by the disulfide bond network.
机译:蛋白质的N-糖基化是通过生物合成过程在共有序列NXS / T(其中X是脯氨酸以外的任何氨基酸)上产生的,并发生在内质网和高尔基体中。为了研究人复合型寡糖对相应蛋白质构象的影响,选择了分别由46和56个氨基酸残基组成的crambin和ovomucoide合成模型糖蛋白。这些小糖蛋白经过有意设计,可在α-螺旋(crambin:8位),β-sheet(crambin:2位)和反平行β-sheets(卵粘蛋白:28位)之间的环位置被糖基化,并通过使用肽段偶联策略。在制备这些糖基化的多肽链之后,通过使用半胱氨酸-胱氨酸在氧化还原条件下进行蛋白质折叠实验。尽管在α-螺旋和β-折叠处带有故意糖基化作用的小糖蛋白表现出合适的折叠过程,但在反平行β链之间的环位置处的糖基化会产生多种产物。与非糖基化的对应物相比,分离的均质糖蛋白的构象差异通过圆二色性(CD)和NMR光谱法评估。这些分析表明,这种有意的N-糖基化不会导致纯化的蛋白质结构发生大的构象变化,包括在反平行β链之间的环位置处发生糖基化的情况。除这些实验外,还通过CD光谱在不同温度下评估了三种糖蛋白的构象特性。蛋白质表面的寡糖波动很大;这取决于溶液温度的升高,并认为会破坏蛋白质的三级结构。然而,基于CD光谱的测量,带有三个二硫键的糖蛋白在其蛋白质三级结构上没有任何变化。这些结果表明寡糖构象的波动不会破坏蛋白质的三级结构,糖蛋白的三级结构可能被二硫键网络稳定。

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