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大肠杆菌单链DNA结合蛋白是N4病毒体RNA聚合酶的一种超螺旋模板依赖性转录激活因子。

Escherichia coli single-stranded DNA-binding protein is a supercoiled template-dependent transcriptional activator of N4 virion RNA polymerase.

作者信息

Markiewicz P, Malone C, Chase J W, Rothman-Denes L B

机构信息

Department of Molecular Genetics and Cell Biology, University of Chicago, Illinois 60637.

出版信息

Genes Dev. 1992 Oct;6(10):2010-9. doi: 10.1101/gad.6.10.2010.

Abstract

Coliphage N4 is a double-stranded DNA virus that requires the sequential activity of three different RNA polymerases during infection. The N4 virion RNA polymerase, which is carried in the virion and is injected with the DNA at the start of infection, is responsible for the synthesis of N4 early RNAs. In vitro, the virion RNA polymerase can transcribe double-stranded N4 DNA accurately and efficiently but only when the DNA is denatured. We have shown previously that the activity of DNA gyrase is required for in vivo early N4 transcription. We report here that Escherichia coli single-stranded DNA-binding protein (SSB) is also required for N4 early transcription. In vitro, linear or relaxed templates cannot be activated by SSB; however, supercoiled template and SSB allow the virion polymerase to recognize its promoters on duplex DNA and activate transcription. The effects of supercoiling are limited to transcript initiation and are not required for transcript elongation. The activation is specific for SSB; no other single-stranded DNA-binding proteins can substitute. Therefore, SSB is one of a small number of proteins that function to stimulate both replication and transcription. The basis for the specificity of SSB, the mechanism of transcriptional activation by SSB and template supercoiling, and their role in the N4 transcriptional program during development are discussed.

摘要

噬菌体N4是一种双链DNA病毒,在感染过程中需要三种不同RNA聚合酶的顺序作用。N4病毒粒子RNA聚合酶存在于病毒粒子中,并在感染开始时与DNA一起注入,负责合成N4早期RNA。在体外,病毒粒子RNA聚合酶能够准确且高效地转录双链N4 DNA,但前提是DNA要变性。我们之前已经表明,DNA回旋酶的活性对于体内N4早期转录是必需的。我们在此报告,大肠杆菌单链DNA结合蛋白(SSB)对于N4早期转录也是必需的。在体外,线性或松弛模板不能被SSB激活;然而,超螺旋模板和SSB能使病毒粒子聚合酶识别双链DNA上的启动子并激活转录。超螺旋的作用仅限于转录起始,转录延伸不需要超螺旋。这种激活对SSB具有特异性;没有其他单链DNA结合蛋白可以替代。因此,SSB是少数既能刺激复制又能刺激转录的蛋白质之一。本文讨论了SSB特异性的基础、SSB和模板超螺旋激活转录的机制,以及它们在发育过程中N4转录程序中的作用。

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