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Addition of carbohydrate side chains at novel sites on influenza virus hemagglutinin can modulate the folding, transport, and activity of the molecule

机译:在流感病毒血凝素的新位点添加碳水化合物侧链可以调节分子的折叠,转运和活性

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摘要

We have constructed and expressed a series of mutant influenza virus hemagglutinins, each containing a new consensus site for glycosylation in addition to the seven sites found on the wild-type protein. Oligosaccharide side chains were added with high efficiency at four of the five novel sites, located on areas of the protein's surface that are not normally shielded by carbohydrate. Investigations of the structure, intracellular transport, and biological activities of the mutant hemagglutinin molecules indicated that (a) supernumerary carbohydrate side chains can be used to shield or disrupt functional epitopes on the surface of hemagglutinin, and (b) the presence of an additional oligosaccharide may cause temperature-dependent defects in the transport of the glycoprotein. We discuss the addition of supernumerary oligosaccharides as a general tool for shielding chosen areas of the surface of proteins that enter or traverse the secretory pathway.
机译:我们已经构建并表达了一系列突变型流感病毒血凝素,除了在野生型蛋白上发现的七个位点外,每个都包含一个新的糖基化共有位点。在蛋白质表面通常不被碳水化合物屏蔽的五个新位点中的四个位点中,高效率地添加了寡糖侧链。对突变的血凝素分子的结构,细胞内转运和生物学活性的研究表明:(a)多余的碳水化合物侧链可用于屏蔽或破坏血凝素表面上的功能性表位,以及(b)存在其他寡糖可能会导致糖蛋白运输中的温度依赖性缺陷。我们讨论了多余的低聚糖的添加作为一种通用工具,用于屏蔽进入或穿越分泌途径的蛋白质表面的选定区域。

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