The partner switching system (PSS) of the SigF regulatory pathway in Mycobacterium smegmatis has been previously demonstrated to include the anti-sigma factor RsbW (MSMEG_1803) and two anti-sigma factor antagonists RsfA and RsfB. In this study, we further characterized two additional RsbW homologs and revealed the distinct roles of three RsbW homologs [RsbW1 (MSMEG_1803), RsbW2 (MSMEG_6129), and RsbW3 (MSMEG_1787)] in the SigF PSS. RsbW1 and RsbW2 serve as the anti-sigma factor of SigF and the protein kinase phosphorylating RsfB, respectively, while RsbW3 functions as an anti-SigF antagonist through its protein interaction with RsbW1. Using relevant mutant strains, RsfB was demonstrated to be the major anti-SigF antagonist in M. smegmatis. The phosphorylation state of Ser-63 was shown to determine the functionality of RsfB as an anti-SigF antagonist. RsbW2 was demonstrated to be the only protein kinase that phosphorylates RsfB in M. smegmatis. Phosphorylation of Ser-63 inactivates RsfB to render it unable to interact with RsbW1. Our comparative RNA sequencing analysis of the wild-type strain of M. smegmatis and its isogenic Îaa (3) mutant strain lacking the aa (3) cytochrome c oxidase of the respiratory electron transport chain revealed that expression of the SigF regulon is strongly induced under respiration-inhibitory conditions in an RsfB-dependent way.
The Partner Switching System of the SigF Sigma Factor in Mycobacterium smegmatis and Induction of the SigF Regulon Under Respiration-Inhibitory Conditions.
耻垢分枝杆菌中 SigF Sigma 因子的伴侣转换系统及呼吸抑制条件下 SigF 调节子的诱导
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作者:Oh Yuna, Song Su-Yeon, Kim Hye-Jun, Han Gil, Hwang Jihwan, Kang Ho-Young, Oh Jeong-Il
| 期刊: | Frontiers in Microbiology | 影响因子: | 4.500 |
| 时间: | 2020 | 起止号: | 2020 Nov 11; 11:588487 |
| doi: | 10.3389/fmicb.2020.588487 | 靶点: | IGM |
| 研究方向: | 信号转导 | ||
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