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在Sf9细胞中表达的猪γ干扰素的糖型异质性。

Glycoform heterogeneity of porcine interferon-gamma expressed in Sf9 cells.

作者信息

Vandenbroeck K, Willems L, Billiau A, Opdenakker G, Huybrechts R

机构信息

Rega Institute for Medical Research, Leuven, Belgium.

出版信息

Lymphokine Cytokine Res. 1994 Aug;13(4):253-8.

PMID:7999924
Abstract

Porcine interferon-gamma (SfPoIFN-gamma) was expressed with high efficiency in Spodoptera frugiperda (Sf9) cells by means of the baculovirus expression system. Up to 10(5) U/ml of antivirally active SfPoIFN-gamma could be tracked down in the culture medium at 64 h postinfection. Three proteins (17, 19, and 21 kDa), which under nondenaturing conditions primarily exist as mutual-dimeric combinations, were purified by immunoaffinity chromatography. Carbohydrate labeling and kinetic deglycosylation studies suggested that the 19- and 21-kDa proteins are N-glycosylated variants of a single 17-kDa protein carrying no N-linked sugars, in which one respectively two N-glycosylation sequons are occupied by glycans of 2 kDa. Both the quantitative recovery of SfPoIFN-gamma from a Con A column at 0.2 M methyl-alpha-mannopyranoside and the results of lectin blots, revealing strong affinity of the 19- and 21-kDa species for Galanthus nivalis agglutinin, support the presence of N-glycosidically linked high mannose-type chains in the carbohydrate moiety of SfPoIFN-gamma. Intriguingly, both 19- and 21-kDa glycoforms, but not their sialidase-treated derivatives, showed clear reactivity with the Sambucus nigra and Maackia amurensis agglutinins. These agglutinins specifically recognize sialic acid linked alpha(2-6) and alpha(2-3), respectively, to penultimate galactose residues. Their affinity for the larger glycoforms of PoIFN-gamma suggests that the biosynthetic pathways in Sf9 cells are able to modify oligomannose structures to complex or hybrid glycans.

摘要

猪干扰素-γ(SfPoIFN-γ)通过杆状病毒表达系统在草地贪夜蛾(Sf9)细胞中高效表达。感染后64小时,在培养基中可检测到高达10⁵ U/ml的具有抗病毒活性的SfPoIFN-γ。通过免疫亲和层析纯化了三种蛋白质(17、19和21 kDa),它们在非变性条件下主要以相互二聚体组合的形式存在。糖基标记和动力学去糖基化研究表明,19 kDa和21 kDa的蛋白质是单个不携带N-连接糖的17 kDa蛋白质的N-糖基化变体,其中一个或两个N-糖基化序列分别被2 kDa的聚糖占据。从Con A柱在0.2 M甲基-α-甘露吡喃糖苷下定量回收SfPoIFN-γ以及凝集素印迹的结果,揭示了19 kDa和21 kDa物种对雪花莲凝集素的强亲和力,支持SfPoIFN-γ碳水化合物部分中存在N-糖苷键连接的高甘露糖型链。有趣的是,19 kDa和21 kDa的糖型,但不是它们经唾液酸酶处理的衍生物,与黑接骨木凝集素和黑水缬草凝集素表现出明显的反应性。这些凝集素分别特异性识别与倒数第二个半乳糖残基相连的α(2-6)和α(2-3)唾液酸。它们对PoIFN-γ较大糖型的亲和力表明,Sf9细胞中的生物合成途径能够将寡甘露糖结构修饰为复杂或杂合聚糖。

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