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重组拉克罗斯病毒糖蛋白的细胞内运输特性分析。

Analysis of the intracellular transport properties of recombinant La Crosse virus glycoproteins.

作者信息

Bupp K, Stillmock K, González-Scarano F

机构信息

Department of Neurology and Microbiology, University of Pennsylvania Medical Center, Philadelphia 19104-6146, USA.

出版信息

Virology. 1996 Jun 15;220(2):485-90. doi: 10.1006/viro.1996.0336.

Abstract

The G1 and G2 glycoproteins of La Crosse virus, a member of the Bunyavirus genus of the Bunyaviridae, are encoded as a single open reading frame (ORF) in the viral middle-sized RNA segment. The primary product from this ORF is processed, either cotranslationally or shortly after translation, into the two glycoproteins and a nonstructural protein, NSm, of unknown function. We have expressed La Crosse glycoproteins using vaccinia vectors and studied their processing and localization. When expressed in the native G2-NSm-G1 configuration, both G1 and G2 targeted to the Golgi apparatus as shown by their colocalization with wheat germ agglutinin and acquired resistance to endoglycosidase H. When expressed independently, G2 was targeted to the Golgi apparatus but G1 was retained in the endoplasmic reticulum, indicating that a G1-G2 association is required for Golgi targeting of G1. In contrast to results with other members of the Bunyaviridae, we found that expression of G1 and G2 from separate vectors did not lead to the transport of the G1-G2 complex to the Golgi. However, disruption of the NSm region with a foreign sequence did not interfere with transport of the complex. When a portion of the beta-galactosidase gene was inserted in frame into NSm, the glycoproteins derived from this construct were processed and targeted properly and were capable of mediating cell-to-cell fusion.

摘要

拉克罗斯病毒是布尼亚病毒科布尼亚病毒属的成员,其G1和G2糖蛋白在病毒中型RNA片段中作为单个开放阅读框(ORF)进行编码。该ORF的主要产物在共翻译过程中或翻译后不久被加工成两种糖蛋白和一种功能未知的非结构蛋白NSm。我们使用痘苗病毒载体表达了拉克罗斯糖蛋白,并研究了它们的加工和定位。当以天然的G2-NSm-G1构型表达时,G1和G2都靶向高尔基体,这通过它们与麦胚凝集素的共定位以及获得对内切糖苷酶H的抗性得以证明。当独立表达时,G2靶向高尔基体,但G1保留在内质网中,这表明G1靶向高尔基体需要G1-G2缔合。与布尼亚病毒科其他成员的结果相反,我们发现从单独的载体表达G1和G2不会导致G1-G2复合物转运到高尔基体。然而,用外源序列破坏NSm区域不会干扰复合物的转运。当将一部分β-半乳糖苷酶基因框内插入NSm时,源自该构建体的糖蛋白被正确加工和靶向,并且能够介导细胞间融合。

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