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首页> 外文期刊>Virus Research: An International Journal of Molecular and Cellular Virology >Role of carbohydrate processing and calnexin binding in the folding and activity of the HN protein of Newcastle disease virus.
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Role of carbohydrate processing and calnexin binding in the folding and activity of the HN protein of Newcastle disease virus.

机译:碳水化合物加工和钙结合蛋白结合在新城疫病毒HN蛋白折叠和活性中的作用。

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摘要

The role of carbohydrate processing and calnexin binding in the folding pathway and activity of the hemagglutinin-neuraminidase (HN) protein of Newcastle disease virus (NDV) was explored in infected cells using the inhibitor castanospermine (CST). Calnexin-HN protein complexes were demonstrated by coimmunoprecipitation using antibody specific for calnexin or HN protein. As in other systems, this complex was not detected in CST treated cells. In cells incubated in CST, the synthesis and stability of the HN protein was unaffected. However, as monitored by the appearance of conformationally sensitive antigenic sites, the folding of the HN protein in CST treated cells was approximately twice as slow than in untreated cells. This folding was ultimately efficient since there was no evidence for significant amounts of irreversibly aggregated forms which never acquired a mature conformation. Most significantly, the folding sequence as measured by the order of appearance of conformationally sensitive antigenic sites (McGinnes and Morrison, Virology 199, 255) was unaffected by CST. Thus while calnexin functions to speed the folding of the HN protein, it is not required for the folding of this protein. In addition, the protein synthesized in the presence of CST had significant levels of neuraminidase and hemagglutination activity suggesting that processing of the carbohydrate has a minimal role in the activity of the protein.
机译:使用抑制剂粟精胺(CST)在感染的细胞中探索了碳水化合物加工和钙结合蛋白结合在新城疫病毒(NDV)的血凝素神经氨酸酶(HN)蛋白质的折叠途径和活性中的作用。通过使用对钙粘蛋白或HN蛋白具有特异性的抗体进行免疫共沉淀,证明了钙粘蛋白-HN蛋白复合物。与其他系统一样,在CST处理的细胞中未检测到这种复合物。在CST中孵育的细胞中,HN蛋白的合成和稳定性不受影响。然而,如通过构象敏感的抗原位点的出现所监测,在CST处理的细胞中HN蛋白的折叠比在未处理的细胞中慢约两倍。这种折叠最终是有效的,因为没有证据表明大量不可逆聚集的形式从未获得成熟的构象。最重要的是,通过构象敏感抗原位点的出现顺序(McGinnes and Morrison,Virology 199,255)测量的折叠序列不受CST的影响。因此,尽管钙结合蛋白起到加速HN蛋白折叠的作用,但对于该蛋白的折叠并不是必需的。另外,在CST存在下合成的蛋白质具有显着水平的神经氨酸酶和血凝活性,这表明碳水化合物的加工在该蛋白质的活性中具有最小的作用。

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