The eubacterial RNA polymerase core, a transcription machinery performing DNA-dependent RNA polymerization, consists of two α subunits and β, β' and Ï subunits. An additional Ï subunit is recruited for promoter recognition and transcription initiation. Cyanobacteria, a group of eubacteria characterized by oxygenic photosynthesis, have a unique composition of the RNA polymerase (RNAP) core due to splitting of the β' subunit to N-terminal γ and C-terminal β' subunits. The physiological roles of the small Ï subunit of RNAP, encoded by the rpoZ gene, are not yet completely understood in any bacteria. We found that although Ï is non-essential in cyanobacteria, it has a major impact on the overall gene expression pattern. In ÎrpoZ strain, recruitment of the primary Ï factor into the RNAP holoenzyme is inefficient, which causes downregulation of highly expressed genes and upregulation of many low-expression genes. Especially, genes encoding proteins of photosynthetic carbon concentrating and carbon fixing complexes were down, and the ÎrpoZ mutant showed low light-saturated photosynthetic activity and accumulated photoprotective carotenoids and α-tocopherol. The results indicate that the Ï subunit facilitates the association of the primary Ï factor with the RNAP core, thereby allowing efficient transcription of highly expressed genes.
The omega subunit of the RNA polymerase core directs transcription efficiency in cyanobacteria.
RNA聚合酶核心的ω亚基决定蓝细菌的转录效率
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作者:Gunnelius Liisa, Hakkila Kaisa, Kurkela Juha, Wada Hajime, Tyystjärvi Esa, Tyystjärvi Taina
| 期刊: | Nucleic Acids Research | 影响因子: | 13.100 |
| 时间: | 2014 | 起止号: | 2014 Apr;42(7):4606-14 |
| doi: | 10.1093/nar/gku084 | 研究方向: | 心血管 |
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