Bosques Carlos J, Tschampel Sarah M, Woods Robert J, Imperiali Barbara
Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
J Am Chem Soc. 2004 Jul 14;126(27):8421-5. doi: 10.1021/ja0496266.
Asparagine-linked glycosylation, the co-translational covalent attachment of carbohydrates to asparagine side chains, has a major effect on the folding, stability, and function of many proteins. The carbohydrate composition in mature glycoproteins is heterogeneous due to modification of the initial oligosaccharide by glycosidases and glycosyltransferases during the glycoprotein passage through the endoplasmic reticulum and Golgi apparatus. Despite the diversity of carbohydrate structures, the core beta-D-(GlcNAc)(2) remains conserved in all N-linked glycoproteins. Previously, results from our laboratory showed that the molecular composition of the core disaccharide has a critical and unique conformational effect on the peptide backbone. Herein, we employ a synergistic experimental and computational approach to study the effect of the stereochemistry of the carbohydrate--peptide linkage on glycopeptide structure. A glycopeptide derived from a hemagglutinin protein fragment was synthesized, with the carbohydrate attached to the peptide with an alpha-linked stereochemistry. Computational and biophysical analyses reveal that the conformations of the peptide and alpha- and beta-linked glycopeptides are uniquely influenced by the attached saccharide. The value of computational approaches for probing the influence of attached saccharides on polypeptide conformation is highlighted.
天冬酰胺连接的糖基化,即碳水化合物在翻译过程中共价连接到天冬酰胺侧链上,对许多蛋白质的折叠、稳定性和功能有重大影响。由于在糖蛋白通过内质网和高尔基体的过程中糖苷酶和糖基转移酶对初始寡糖的修饰,成熟糖蛋白中的碳水化合物组成是异质的。尽管碳水化合物结构多样,但核心的β-D-(GlcNAc)₂在所有N-连接糖蛋白中都保持保守。此前,我们实验室的结果表明,核心二糖的分子组成对肽主链具有关键且独特的构象影响。在此,我们采用实验与计算相结合的方法来研究碳水化合物 - 肽键的立体化学对糖肽结构的影响。合成了一种源自血凝素蛋白片段的糖肽,其中碳水化合物以α-连接的立体化学方式连接到肽上。计算和生物物理分析表明,肽以及α-和β-连接的糖肽的构象受到连接的糖类的独特影响。突出了计算方法在探究连接糖类对多肽构象影响方面的价值。