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Effects of Mutations in the Rubella Virus E1 Glycoprotein on E1-E2 Interaction and Membrane Fusion Activity

机译:风疹病毒E1糖蛋白突变对E1-E2相互作用和膜融合活性的影响

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摘要

Rubella virus (RV) virions contain two glycosylated membrane proteins, E1 and E2, that exist as a heterodimer and form the viral spike complexes on the virion surface. Formation of an E1-E2 heterodimer is required for transport of E1 out of the endoplasmic reticulum lumen to the Golgi apparatus and plasma membrane. To investigate the nature of the E1-E2 interaction, we have introduced mutations in the internal hydrophobic region (residues 81 to 109) of E1. Substitution of serine at Cys82 (mutant C82S) or deletion of this hydrophobic domain (mutant dt) of E1 resulted in a disruption of the E1 conformation that ultimately affected E1-E2 heterodimer formation and cell surface expression of both E1 and E2. Substitution of either aspartic acid at Gly93 (G93D) or glycine at Pro104 (P104G) was found to impair neither E1-E2 heterodimer formation nor the transport of E1 and E2 to the cell surface. Fusion of RV-infected cells is induced by a brief treatment at a pH below 6.0. To test whether this internal hydrophobic domain is involved in the membrane fusion activity of RV, transformed BHK cell lines expressing either wild-type or mutant spike proteins were exposed to an acidic pH and polykaryon formation was measured. No fusion activity was observed in the C82S, dt, and G93D mutants; however, the wild type and the P104G mutant exhibited fusogenic activities, with greater than 60% and 20 to 40% of the cells being fused, respectively, at pH 4.8. These results suggest that it is likely that the region of E1 between amino acids 81 and 109 is involved in the membrane fusion activity of RV and that it may be important for the interaction of that protein with E2 to form the E1-E2 heterodimer.
机译:风疹病毒(RV)病毒粒子包含两个糖基化膜蛋白E1和E2,它们以异二聚体形式存在,并在病毒粒子表面形成病毒刺突复合物。 E1-E2异源二聚体的形成是将E1转运出内质网腔至高尔基体和质膜所必需的。为了研究E1-E2相互作用的性质,我们在E1的内部疏水区(残基81至109)中引入了突变。 E1的Cys82丝氨酸取代(突变C82S)或该疏水域的缺失(突变dt)导致E1构象的破坏,最终影响E1-E2异二聚体的形成以及E1和E2的细胞表面表达。发现在Gly93(G93D)处的天冬氨酸取代或在Pro104(P104G)处的甘氨酸取代都不会损害E1-E2异二聚体的形成,也不会损害E1和E2向细胞表面的转运。在低于6.0的pH值下进行短暂处理即可诱导RV感染细胞的融合。为了测试该内部疏水域是否参与RV的膜融合活性,将表达野生型或突变型突突蛋白的转化BHK细胞系暴露于酸性pH值,并测量了多核体的形成。在C82S,dt和G93D突变体中未观察到融合活性。但是,野生型和P104G突变体表现出融合活性,在pH 4.8下融合的细胞分别超过60%和20%至40%。这些结果表明,氨基酸81和109之间的E1区域可能参与了RV的膜融合活性,并且对于该蛋白质与E2的相互作用形成E1-E2异二聚体可能是重要的。

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