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由A33R基因编码的细胞外痘苗病毒包膜糖蛋白。

Extracellular vaccinia virus envelope glycoprotein encoded by the A33R gene.

作者信息

Roper R L, Payne L G, Moss B

机构信息

Laboratory of Viral Diseases, National Institute of Allergy and Infectious Diseases, Bethesda, Maryland 20892, USA.

出版信息

J Virol. 1996 Jun;70(6):3753-62. doi: 10.1128/JVI.70.6.3753-3762.1996.

Abstract

With the aid of three monoclonal antibodies (MAbs), a glycoprotein specifically localized to the outer envelope of vaccinia virus was shown to be encoded by the A33R gene. These MAbs reacted with a glycosylated protein that migrated as 23- to 28-kDa and 55-kDa species under reducing and nonreducing conditions, respectively. The protein recognized by the three MAbs was synthesized by all 11 orthopoxviruses tested: eight strains of vaccinia virus (including modified vaccinia virus Ankara) and one strain each of cowpox, rabbitpox, and ectromelia viruses. The observation that the protein synthesized by ectromelia virus-infected cells reacted with only one of the three MAbs provided a means of mapping the gene encoding the glycoprotein. By transfecting vaccinia virus DNA into cells infected with ectromelia virus and assaying for MAb reactivity, we mapped the glycoprotein to the A33R open reading frame. The amino acid sequence and hydrophilicity plot predicted that the A33R gene product is a type II membrane protein with two asparagine-linked glycosylation sites. Triton X-114 partitioning experiments indicated that the A33R gene product is an integral membrane protein. The ectromelia virus homolog of the vaccinia virus A33R gene was sequenced, revealing 90% predicted amino acid identity. The vaccinia and variola virus homolog sequences predict 94% identical amino acids, the latter having one fewer internal amino acid. Electron microscopy revealed that the A33R gene product is expressed on the surface of extracellular enveloped virions but not on the intracellular mature form of virus. The conservation of this protein and its specific incorporation into viral envelopes suggest that it is important for virus dissemination.

摘要

借助三种单克隆抗体(MAb),一种特异性定位于痘苗病毒外膜的糖蛋白被证明由A33R基因编码。这些单克隆抗体与一种糖基化蛋白发生反应,该蛋白在还原和非还原条件下分别以23至28 kDa和55 kDa的条带迁移。这三种单克隆抗体识别的蛋白在所有测试的11种正痘病毒中均有合成:8株痘苗病毒(包括安卡拉改良痘苗病毒)以及牛痘病毒、兔痘病毒和埃可病毒各1株。埃可病毒感染细胞合成的蛋白仅与三种单克隆抗体中的一种发生反应,这一观察结果为绘制编码该糖蛋白的基因图谱提供了一种方法。通过将痘苗病毒DNA转染到感染埃可病毒的细胞中并检测单克隆抗体反应性,我们将该糖蛋白定位到A33R开放阅读框。氨基酸序列和亲水性图谱预测A33R基因产物是一种具有两个天冬酰胺连接糖基化位点的II型膜蛋白。Triton X - 114分配实验表明A33R基因产物是一种整合膜蛋白。对痘苗病毒A33R基因的埃可病毒同源物进行了测序,发现预测的氨基酸同一性为90%。痘苗病毒和天花病毒的同源序列预测有94%的氨基酸相同,后者内部氨基酸少一个。电子显微镜显示A33R基因产物在细胞外被膜病毒粒子的表面表达,但不在病毒的细胞内成熟形式上表达。这种蛋白的保守性及其特异性掺入病毒包膜表明它对病毒传播很重要。

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