| Literature DB >> 26136727 |
Zhu Liu1, Peng Liu2, Shuanshuan Liu2, Haichao Song1, Hongqian Tang1, Xinwen Hu1.
Abstract
Earlier studies reveal that Small protein B (SmpB), a class of well-conserved tmRNA-binding proteins, is essential for the trans-translation process, which functions as a system for translation surveillance and ribosome rescue. Here, we report a previously unrecognized mechanism by which SmpB alone positively regulates the expression of a sensor kinase, BvgS, in Aeromonas veronii. A reporter plasmid was constructed in which the promoter of bvgS was used to control the expression of the enhanced green fluorescent protein (eGFP) gene. When the reporter plasmid was co-transformed with a SmpB expression construct into E. coli, the relative fluorescence intensity increased about threefold. Transformation with a truncated form of smpB gene showed that the C-terminus had little effect, while N-terminus unexpectedly increased eGFP production. Next, a series of SmpB mutants were generated by site-directed mutagenesis. When the mutants SmpB (G11S) or SmpB (E32AG) was used in the experiment, eGFP expression dropped significantly compared with that of wild type SmpB. Further, purified SmpB was shown to bind the promoter regions of bvgS in the agarose gel retardation assay. Quantitative RT-PCR analysis showed that eGFP transcript levels increased approximately 25-fold in the presence of SmpB. Likewise, smpB knockout decreased bvgS transcripts significantly in A. veronii, and also displayed a reduced capability in salt tolerance. Collectively, the data presented here will facilitate a deeper understanding of SmpB-mediated regulatory circuits as a transcriptional factor in A. veronii.Entities:
Keywords: A. veronii; BvgS; SmpB; trans-translation; upregulation
Year: 2015 PMID: 26136727 PMCID: PMC4468919 DOI: 10.3389/fmicb.2015.00579
Source DB: PubMed Journal: Front Microbiol ISSN: 1664-302X Impact factor: 5.640
Plasmids used in this study.
| Plasmid | Description | Reference |
|---|---|---|
| pEGFP-C2 | Enhanced green fluorescent protein (eGFP) expression vector. | |
| pDH113 | pBR322 origin, ampicillin resistance, SmpB expression. | |
| pDH210 | p15A origin, terramycin resistance, tmRNA transcription. | |
| pET-28a (+) | T7 promotor, kanamycin resistance, expresses His Tag. | Merck KGaA, Darmstadt, Germany |
| pDH114 | pBR322 origin, ampicillin resistance, includes BvgS promoter and expresses 9-residue at the N terminus of BvgS with full length eGFP. | This study |
| pBT | p15A origin, chloramphenicol resistance, includes lac-UV5 promoter and cI ORF | Keysight Technologies, CA, USA |
| pDH211 | p15A origin, terramycin resistance, includes | This study |
| pDH212 | p15A origin, terramycin resistance, includes | This study |
| pDH213 | p15A origin, terramycin resistance, includes only | This study |
| pDH214 | p15A origin, terramycin resistance, includes GST promoter and the whole GST encoded region. | This study |
| pET-SmpB | T7 promotor, kanamycin resistance, expresses | This study |
| pBT-SmpB | p15A origin, chloramphenicol resistance, expresses | This study |
| pBT-SmpB N34 | pBT-SmpB derivative, deletes 34-residue at the N terminus of SmpB. | This study |
| pBT-SmpB C30 | pBT-SmpB derivative, deletes 30-residue at the C terminus of SmpB. | This study |
| pDH212(SmpB-N1) | pDH212 derivative, substitues first residue to stop codon at the N terminus of SmpB. | This study |
| pDH212(SmpB-N35) | pDH212 derivative, substitues 35th residue to stop codon at the N terminus of SmpB. | This study |
| pDH212(SmpB-C33) | pDH212 derivative, substitues 33rd residue to stop codon at the C terminus of SmpB. | This study |
| pBT(SmpB-G11S) | pBT-SmpB derivative, mutates G11S to AA. | This study |
| pBT(SmpB-T14I) | pBT-SmpB derivative, mutates T14I to AA. | This study |
| pBT(SmpB-F26I) | pBT-SmpB derivative, mutates F26I to AA. | This study |
| pBT(SmpB-E32AG) | pBT-SmpB derivative, mutates E32AG to AAA. | This study |
| pBT(SmpB-G133K) | pBT-SmpB derivative, mutates G133K to AA. | This study |
| pBT(SmpB-D138KR) | pBT-SmpB derivative, mutates D138KR to AAA. | This study |
| pBT(SmpB-K152) | pBT-SmpB derivative, mutates K152 to P. | This study |
| pRE112 | Suicide plasmid for gene knock out, chloramphenicol resistance, includes a conditional R6K ori requiring the π protein for replication, expresses | |
| pRE-Δ | pRE112 derivative for | This study |
| pRE-Δ | pRE112 derivative for | This study |
Bacterial strains used in this study.
| Strain | Description | Reference |
|---|---|---|
| Protein expression host | New England Biolabs, Ipswich, MA, USA | |
| BacterioMatch II two-hybrid reporter strain | MRF′, Kanamycin resistance | Keysight Technologies Inc, Santa Clara, CA, USA |
| Encodes a relaxase, a mating pair formation (MPF) complex and a type IV coupling protein in chromosome, diaminopimelic acid (Dap) auxotroph. | ||
| Wild type, ampicillin resistance, virulent to fish. | This study | |
| Ampicillin resistance, | This study | |
| Ampicillin resistance, | This study |