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人类巨细胞病毒基因的物理图谱:编码71 kDa病毒体磷蛋白和病毒65 kDa多肽的DNA序列的鉴定。

Physical mapping of human cytomegalovirus genes: identification of DNA sequences coding for a virion phosphoprotein of 71 kDa and a viral 65-kDa polypeptide.

作者信息

Nowak B, Gmeiner A, Sarnow P, Levine A J, Fleckenstein B

出版信息

Virology. 1984 Apr 15;134(1):91-102. doi: 10.1016/0042-6822(84)90275-7.

Abstract

Polyadenylated RNA was isolated from fibroblast cultures infected with human cytomegalovirus (HCMV) strain AD169 during the late phase of viral replication. The RNA was selected by hybridization to a series of cosmid clones containing the entire viral genome in partially overlapping segments. Translation of this RNA in a reticulocyte cell-free system allowed the mapping of virus specific polypeptides. Nine polypeptides synthesized in vitro comigrated with major virion structural proteins. An in vitro-translated protein of 71 kDa was precipitated by a monoclonal antibody directed against the phosphorylated internal envelope protein of 71 kDa. The map coordinates of viral DNA coding for this phosphoprotein were localized by hybrid selection with subcloned DNA fragments, and the direction of transcription was determined by hybrid selection with single-stranded DNA cloned in bacteriophage vector M13mp9. An in vitro translation with size-fractionated RNA, combined with immunoprecipitation and Northern blot analyses, indicated that an mRNA of 4 kb encodes the 71-kDa phosphoprotein. An mRNA of the same size, map coordinates, and orientation was translated into an abundant 65-kDa polypeptide which had the same size as the major structural phosphoprotein of HCMV.

摘要

在病毒复制后期,从感染人巨细胞病毒(HCMV)AD169株的成纤维细胞培养物中分离出多聚腺苷酸化RNA。通过与一系列包含部分重叠片段的完整病毒基因组的黏粒克隆杂交来选择该RNA。在无细胞网织红细胞系统中对该RNA进行翻译,从而对病毒特异性多肽进行定位。体外合成的9种多肽与主要病毒粒子结构蛋白共迁移。一种针对71 kDa磷酸化内膜蛋白的单克隆抗体沉淀出一种71 kDa的体外翻译蛋白。通过与亚克隆的DNA片段进行杂交选择来定位编码该磷蛋白的病毒DNA的图谱坐标,并通过与克隆在噬菌体载体M13mp9中的单链DNA进行杂交选择来确定转录方向。用大小分级的RNA进行体外翻译,结合免疫沉淀和Northern印迹分析,表明一个4 kb的mRNA编码71 kDa的磷蛋白。一个大小、图谱坐标和方向相同的mRNA被翻译成一种丰富的65 kDa多肽,其大小与HCMV的主要结构磷蛋白相同。

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J Virol. 2021 Aug 10;95(17):e0089621. doi: 10.1128/JVI.00896-21.

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