| Literature DB >> 29967594 |
Elisa Brambilla1, Shuwen Wang2, Hongwei Sun2, Lifei Fan2, Yixin Shi2,3, Bianca Sclavi1.
Abstract
The uvrB gene belongs to the SOS network, encoding a key component of the nucleotide excision repair. The uvrB promoter region contains three identified promoters with four LexA binding sites, one consensus and six potential DnaA binding sites. A more than threefold increase in transcription of the chromosomal uvrB gene is observed in both the ΔlexA ΔsulA cells and dnaAA345S cells, and a fivefold increase in the ΔlexA ΔsulA dnaAA345S cells relative to the wild-type cells. The full activity of the uvrB promoter region requires both the uvrBp1-2 and uvrBp3 promoters and is repressed by both the DnaA and LexA proteins. LexA binds tightly to LexA-box1 at the uvrBp1-2 promoter irrespective of the presence of DnaA and this binding is important for the control of the uvrBp1-2 promoter. DnaA and LexA, however, compete for binding to and regulation of the uvrBp3 promoter in which the DnaA-box6 overlaps with LexA-box4. The transcription control of uvrBp3 largely depends on DnaA-box6. Transcription of other SOS regulon genes, such as recN and dinJ, is also repressed by both DnaA and LexA. Interestingly, the absence of LexA in the presence of the DnaAA345S mutant leads to production of elongated cells with incomplete replication, aberrant nucleoids and slow growth. We propose that DnaA is a modulator for maintenance of genome integrity during the SOS response by limiting the expression of the SOS regulon.Entities:
Keywords: DnaA; LexA; SOS regulon; regulation; uvrB gene expression
Year: 2018 PMID: 29967594 PMCID: PMC6015884 DOI: 10.3389/fmicb.2018.01212
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Bacterial strains.
| Strain | Genotype | Source |
|---|---|---|
| MC4100 | Wild type F- | |
| BW25113 | Wild type | |
| JW0941-KC | BW25113Δ | |
| SMG379 | MG1655 | |
| JC13199 | ||
| MOR741 | MC4100 | This work |
| MOR746 | MC4100 | This work |
| MOR2395 | MC4100 Δ | This work |
| MOR2399 | MC4100 Δ | This work |
| MOR2670 | MC4100 Δ | This work |
| MOR2672 | MC4100 Δ | This work |
| MOR798 | MC4100 | This work |
| MOR803 | MC4100 | This work |
| MOR749 | MC4100 | This work |
| MOR1466 | MC4100 Δ | This work |
| MOR1511 | MC4100 Δ | This work |
| MOR2585 | MC4100 | This work |
| MOR2586 | MC4100 | This work |
| MOR2587 | MC4100 Δ | This work |
| MOR2588 | MC4100 Δ | This work |
| MOR2589 | MC4100 | This work |
| MOR2590 | MC4100 | This work |
| MOR2591 | MC4100 | This work |
| MOR2592 | MC4100 Δ | This work |
| MOR2593 | MC4100 Δ | This work |
| MOR2594 | MC4100 | This work |
| BL21-Gold (DE3) | Agilent Technologies | |
| DH5α | F-
| New England Biolabs |
Plasmids.
| Plasmids | Description | Source |
|---|---|---|
| pKD3 | ||
| pKD4 | ||
| pKD46 | ||
| pCP20 | ||
| pCE36 | ||
| pET-28a | EMD Biosciences | |
| pET28a-his6- | The | This work |
| p | ||
| pTAC3953 | ||
| p | The whole cluster of the | This work |
| p | The | This work |
| p | The | This work |
| p | A fragment from -279 to -172 was deleted from the plasmid p | This work |
| MiniR1 | R1 derived vector, containing | |
| MiniR1- | The | This work |
| MiniR1- | The | This work |
| MiniR1- | The | This work |
| p | TG in LexA-box1 was replaced by GC on p | This work |
| p | TG in DnaA-box6 was replaced by CA on p | This work |