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单纯疱疹病毒1型通过糖蛋白D、H、L和B的顺序活性,经由半融合中间体介导融合。

Herpes simplex virus type 1 mediates fusion through a hemifusion intermediate by sequential activity of glycoproteins D, H, L, and B.

作者信息

Subramanian Ravi P, Geraghty Robert J

机构信息

Department of Microbiology, Immunology, and Molecular Genetics, University of Kentucky, 800 Rose Street, Lexington, KY 40536, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Feb 20;104(8):2903-8. doi: 10.1073/pnas.0608374104. Epub 2007 Feb 13.

Abstract

Virus-induced membrane fusion can be subdivided into three phases defined by studies of class I and class II fusion proteins. During Phase I, two membranes are brought into close apposition. Phase II marks the mixing of the outer membrane leaflets leading to formation of a hemifusion intermediate. A fusion pore stably forms and expands in Phase III, thereby completing the fusion process. Herpes simplex virus type 1 (HSV-1) requires four glycoproteins to complete membrane fusion, but none has been defined as class I or II. Therefore, we investigated whether HSV-1-induced membrane fusion occurred following the same general phases as those described for class I and II proteins. In this study we demonstrate that glycoprotein D (gD) and the glycoprotein H and glycoprotein L complex (gHL) mediated lipid mixing indicative of hemifusion. However, content mixing and full fusion required glycoprotein B (gB) to be present along with gD and gHL. Our results indicate that, like class I and II fusion proteins, fusion mediated by HSV-1 glycoproteins occurred through a hemifusion intermediate. In addition, both gB and gHL are probably directly involved in the fusion process. From this, we propose a sequential model for fusion via HSV-1 glycoproteins whereby gD is required for Phase I, gHL is required for Phase II, and gB is required for Phase III. We further propose that glycoprotein H and gB are likely to function sequentially to promote membrane fusion in other herpesviruses such as Epstein-Barr virus and human herpesvirus 8.

摘要

病毒诱导的膜融合可根据对I类和II类融合蛋白的研究分为三个阶段。在第一阶段,两个膜紧密靠近。第二阶段标志着外膜小叶混合,导致半融合中间体形成。在第三阶段,融合孔稳定形成并扩大,从而完成融合过程。单纯疱疹病毒1型(HSV-1)需要四种糖蛋白来完成膜融合,但没有一种被定义为I类或II类。因此,我们研究了HSV-1诱导的膜融合是否遵循与I类和II类蛋白相同的一般阶段。在本研究中,我们证明糖蛋白D(gD)以及糖蛋白H和糖蛋白L复合物(gHL)介导了指示半融合的脂质混合。然而,内容物混合和完全融合需要糖蛋白B(gB)与gD和gHL同时存在。我们的结果表明,与I类和II类融合蛋白一样,HSV-1糖蛋白介导的融合通过半融合中间体发生。此外,gB和gHL可能都直接参与融合过程。据此,我们提出了一个通过HSV-1糖蛋白进行融合的顺序模型,即第一阶段需要gD,第二阶段需要gHL,第三阶段需要gB。我们进一步提出,糖蛋白H和gB可能依次发挥作用,以促进其他疱疹病毒如爱泼斯坦-巴尔病毒和人类疱疹病毒8的膜融合。

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