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稻纵卷叶螟虹彩病毒感染细胞中的转录与时间级联反应。

Transcription and temporal cascade in Chilo iridescent virus infected cells.

作者信息

D'Costa S M, Yao H, Bilimoria S L

机构信息

Department of Biological Sciences, Texas Tech University, Lubbock, Texas 79409-3131, USA.

出版信息

Arch Virol. 2001;146(11):2165-78. doi: 10.1007/s007050170027.

Abstract

Chilo iridescent virus (CIV) is the type species for genus Iridovirus, and belongs to the family Iridoviridae. Members of this family are large, isometric, cytoplasmic DNA viruses. Our laboratory has established that CIV replicates productively in the cotton boll weevil, Anthonomus grandis. Given the economic importance of this host and the dearth of knowledge on this virus, we have initiated host-virus interaction and molecular studies on CIV. This report focuses on regulation of transcription in CIV infections. We carried out northern analyses on total cellular RNA from infections of IPRI-CF-124T cells, using a complete genomic library of CIV and several putative gene-specific probes. Our data show a temporal cascade based on analysis of 137 detectable transcripts comprising 38 immediate-early (IE), 34 delayed-early (DE), and 65 late (L) transcripts. Analysis with gene-specific probes supported the cascade pattern. Both helicase and RNA polymerase were immediate-early; major capsid protein was late. The CIV gene expression cascade appears to operate primarily at the transcriptional level. Temporal classes observed are consistent with earlier studies at the polypeptide level and with transcriptional patterns in frog virus 3, genus Ranavirus in the Iridoviridae. Our results provide an important basis for understanding mechanisms driving the CIV temporal cascade.

摘要

稻纵卷叶螟虹彩病毒(CIV)是虹彩病毒属的模式种,属于虹彩病毒科。该科成员是大型、等轴对称、细胞质DNA病毒。我们实验室已证实CIV能在棉铃象甲(Anthonomus grandis)中高效复制。鉴于这种宿主的经济重要性以及对该病毒的了解匮乏,我们已启动了关于CIV的宿主 - 病毒相互作用及分子研究。本报告聚焦于CIV感染中的转录调控。我们使用CIV的完整基因组文库和几种假定的基因特异性探针,对IPRI - CF - 124T细胞感染后的总细胞RNA进行了Northern分析。我们的数据基于对137个可检测转录本的分析显示出一个时间级联,这些转录本包括38个立即早期(IE)、34个延迟早期(DE)和65个晚期(L)转录本。用基因特异性探针进行的分析支持了这种级联模式。解旋酶和RNA聚合酶都是立即早期的;主要衣壳蛋白是晚期的。CIV基因表达级联似乎主要在转录水平上起作用。观察到的时间类别与早期在多肽水平上的研究以及虹彩病毒科蛙病毒3(Ranavirus属)的转录模式一致。我们的结果为理解驱动CIV时间级联的机制提供了重要依据。

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