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大肠杆菌RNA聚合酶的启动子选择性。II:突变全酶对启动子选择的改变

Promoter selectivity of Escherichia coli RNA polymerase. II: Altered promoter selection by mutant holoenzymes.

作者信息

Nomura T, Ishihama A, Kajitani M, Takahashi T, Nakada N, Yoshinaga K

出版信息

Mol Gen Genet. 1984;193(1):8-16. doi: 10.1007/BF00327407.

Abstract

Using the in vitro mixed transcription system (Kajitani and Ishihama (1983a, 1983b), we examined selective transcription of truncated DNA templates carrying lac(UV5), rrnE or rpsA promoters by RNA polymerase holoenzymes from pairs of wild-type parents and mutants with a mutation in one or more RNA polymerase subunit genes. The promoter selectivity of RNA polymerases from two sigma-subunit mutants carrying either rpoD2 or rpoD285 differed markedly from that of the respective wild-type enzymes. Both the parental RNA polymerases, however, exhibited abnormal promoter selectivity compared with holoenzymes from various wild-type E. coli strains. On the other hand, all the RNA polymerases from rpoB and/or rpoC mutants and the respective wild-type parents were similar, if not identical, in promoter selection at low temperature. At high temperature, however, RNA polymerases from mutants carrying rpoB2B7 and rpoC4, affecting the beta and beta' subunits, respectively, showed decreased transcription from the high-affinity slow-transcribable promoter rrnEp2 whereas the rpoC92 and rpoB906 X rpoC907 mutant enzymes both lost transcription activity from the strong promoter lacP(UV5). Taking all these observations together we conclude that not only the sigma subunit but also the beta and beta' subunits are involved in the recognition of promoters.

摘要

利用体外混合转录系统(Kajitani和Ishihama,1983a,1983b),我们检测了携带lac(UV5)、rrnE或rpsA启动子的截短DNA模板,被来自野生型亲本对以及一个或多个RNA聚合酶亚基基因突变体的RNA聚合酶全酶进行选择性转录的情况。来自携带rpoD2或rpoD285的两个σ亚基突变体的RNA聚合酶的启动子选择性,与各自野生型酶的启动子选择性明显不同。然而,与来自各种野生型大肠杆菌菌株的全酶相比,这两种亲本RNA聚合酶均表现出异常的启动子选择性。另一方面,来自rpoB和/或rpoC突变体及其各自野生型亲本的所有RNA聚合酶,在低温下的启动子选择上即使不完全相同也相似。然而,在高温下,分别影响β和β'亚基的携带rpoB2B7和rpoC4的突变体的RNA聚合酶,从高亲和力慢转录启动子rrnEp2的转录减少,而rpoC92和rpoB906 X rpoC907突变体酶均失去了来自强启动子lacP(UV5)的转录活性。综合所有这些观察结果,我们得出结论,不仅σ亚基,而且β和β'亚基都参与启动子的识别。

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