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同型和异型副流感病毒HN与F蛋白之间相互作用的替代机制。

Alternative mechanisms of interaction between homotypic and heterotypic parainfluenza virus HN and F proteins.

作者信息

Tong S, Compans R W

出版信息

J Gen Virol. 1999 Jan;80 ( Pt 1):107-115. doi: 10.1099/0022-1317-80-1-107.

Abstract

Cell fusion by human parainfluenza virus (HPIV) type 2 or type 3 requires the coexpression of both the fusion (F) and haemagglutinin-neuraminidase (HN) glycoproteins from the same virus type, indicating that promotion of fusion requires a type-specific interaction between F and HN. In this report we have further investigated the interaction of the ectodomains of the F and HN glycoproteins from HPIV2 and HPIV3. We constructed mutants of the HPIV2 F and HPIV3 F proteins (F'-KDEL) lacking a transmembrane anchor and a cytoplasmic tail, and containing a C-terminal signal for retention in the endoplasmic reticulum (ER). The P12 and P13 F'-KDEL proteins were both found to be retained intracellularly, and neither could induce cell fusion when co-expressed with homotypic HN proteins. Qualitative and quantitative cell-fusion assays also showed that both the P12 F'-KDEL and P13 F'-KDEL proteins have inhibitory effects on P12 F- and HN-induced cell fusion. However, the F-KDEL mutants were found to inhibit cell fusion by two distinct mechanisms. An interaction between P12 F'-KDEL and P12 HN results in intracellular retention of HN, and a block in its transport to the cell surface. In contrast, P13 F'-KDEL was found to suppress the steady-state intracellular expression levels of HPIV2 HN. These results support the conclusion that fusion involves an interaction between the HN and F proteins, and suggest that an association between F and HN may occur in the ER.

摘要

人副流感病毒2型(HPIV)或3型引发的细胞融合需要同一病毒类型的融合(F)糖蛋白和血凝素神经氨酸酶(HN)糖蛋白共同表达,这表明促进融合需要F和HN之间发生类型特异性相互作用。在本报告中,我们进一步研究了HPIV2和HPIV3的F糖蛋白和HN糖蛋白胞外结构域之间的相互作用。我们构建了HPIV2 F和HPIV3 F蛋白(F'-KDEL)的突变体,这些突变体缺乏跨膜锚定结构域和细胞质尾巴,并含有一个用于保留在内质网(ER)中的C端信号。发现P12和P13 F'-KDEL蛋白均保留在细胞内,并且当与同型HN蛋白共表达时均不能诱导细胞融合。定性和定量细胞融合试验还表明,P12 F'-KDEL和P13 F'-KDEL蛋白对P12 F和HN诱导的细胞融合均具有抑制作用。然而,发现F-KDEL突变体通过两种不同机制抑制细胞融合。P12 F'-KDEL与P12 HN之间的相互作用导致HN在细胞内滞留,并阻止其转运到细胞表面。相反,发现P13 F'-KDEL可抑制HPIV2 HN在细胞内的稳态表达水平。这些结果支持融合涉及HN和F蛋白之间相互作用的结论,并表明F和HN之间的关联可能发生在内质网中。

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