In this study, we describe the biological function of the phage-encoded protein RNA polymerase alpha subunit cleavage protein (Rac), a predicted Gcn5-related acetyltransferase encoded by phiKMV-like viruses. These phages encode a single-subunit RNA polymerase for transcription of their late (structure- and lysis-associated) genes, whereas the bacterial RNA polymerase is used at the earlier stages of infection. Rac mediates the inactivation of bacterial transcription by introducing a specific cleavage in the α subunit of the bacterial RNA polymerase. This cleavage occurs within the flexible linker sequence and disconnects the C-terminal domain, required for transcription initiation from most highly active cellular promoters. To achieve this, Rac likely taps into a novel post-translational modification (PTM) mechanism within the host Pseudomonas aeruginosa. From an evolutionary perspective, this novel phage-encoded regulation mechanism confirms the importance of PTMs in the prokaryotic metabolism and represents a new way by which phages can hijack the bacterial host metabolism.
The Phage-Encoded N-Acetyltransferase Rac Mediates Inactivation of Pseudomonas aeruginosa Transcription by Cleavage of the RNA Polymerase Alpha Subunit.
噬菌体编码的 N-乙酰转移酶 Rac 通过切割 RNA 聚合酶 α 亚基介导铜绿假单胞菌转录的失活
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作者:Ceyssens Pieter-Jan, De Smet Jeroen, Wagemans Jeroen, Akulenko Natalia, Klimuk Evgeny, Hedge Subray, Voet Marleen, Hendrix Hanne, Paeshuyse Jan, Landuyt Bart, Xu Hua, Blanchard John, Severinov Konstantin, Lavigne Rob
| 期刊: | Viruses-Basel | 影响因子: | 3.500 |
| 时间: | 2020 | 起止号: | 2020 Sep 2; 12(9):976 |
| doi: | 10.3390/v12090976 | 研究方向: | 微生物学 |
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