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人RNA聚合酶II的过早终止在腺病毒主要晚期转录单元中按时间顺序发生。

Premature termination by human RNA polymerase II occurs temporally in the adenovirus major late transcriptional unit.

作者信息

Mok M, Maderious A, Chen-Kiang S

出版信息

Mol Cell Biol. 1984 Oct;4(10):2031-40. doi: 10.1128/mcb.4.10.2031-2040.1984.

Abstract

We have recently demonstrated pausing and premature termination of transcription by eucaryotic RNA polymerase II at specific sites in the major late transcriptional unit of adenovirus type 2 in vivo and in vitro. In further developing this as a system for studying eucaryotic termination control, we found that prematurely terminated transcripts of 175 and 120 nucleotides also occur in adenovirus type 5-infected cells. In both cases, premature termination occurs temporally, being found only during late times of infection, not at early times before DNA replication or immediately after the onset of DNA replication when late gene expression has begun (intermediate times). To examine the phenomenon of premature termination further, a temperature-sensitive mutant virus, adenovirus type 5 ts107, was used to uncouple DNA replication and transcription. DNA replication is defective in this mutant at restrictive temperatures. We found that premature termination is inducible at intermediate times by shifting from a permissive temperature to a restrictive temperature, allowing continuous transcription in the absence of continuous DNA replication. No premature termination occurs when the temperature is shifted up at early times before DNA replication. Our data suggest that premature termination of transcription is dependent on both prior synthesis of new templates and cumulative late gene transcription but does not require continuous DNA replication.

摘要

我们最近在体内和体外均已证明,真核RNA聚合酶II在2型腺病毒主要晚期转录单元的特定位点会发生转录暂停和提前终止。在进一步将此发展为研究真核生物终止控制的系统时,我们发现175和120个核苷酸的提前终止转录本也出现在5型腺病毒感染的细胞中。在这两种情况下,提前终止都发生在特定时间,仅在感染后期出现,而在DNA复制前的早期或DNA复制开始后(中期)晚期基因表达开始时均未发现。为了进一步研究提前终止现象,我们使用了一种温度敏感型突变病毒5型腺病毒ts107,来使DNA复制和转录解偶联。该突变体在限制温度下DNA复制存在缺陷。我们发现,通过从允许温度转变为限制温度,在中期可以诱导提前终止,从而在没有连续DNA复制的情况下实现连续转录。在DNA复制前的早期升温时不会发生提前终止。我们的数据表明,转录提前终止既依赖于新模板的先前合成和累积的晚期基因转录,但并不需要连续的DNA复制。

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