LevR
Gene name | levR |
Synonyms | |
Essential | no |
Product | transcriptional activator, PRD-type (for SigL-dependent promoter) |
Function | regulation of levan and fructose utilization |
Interactions involving this protein in SubtInteract: LevR | |
Metabolic function and regulation of this protein in SubtiPathways: Sugar catabolism | |
MW, pI | 105 kDa, 5.943 |
Gene length, protein length | 2814 bp, 938 aa |
Immediate neighbours | levD, aapA |
Get the DNA and protein sequences (Barbe et al., 2009) | |
Genetic context This image was kindly provided by SubtiList
| |
Expression at a glance PubMed |
Contents
Categories containing this gene/protein
utilization of specific carbon sources, transcription factors and their control, phosphoproteins
This gene is a member of the following regulons
The LevR regulon:
The gene
Basic information
- Locus tag: BSU27080
Phenotypes of a mutant
Database entries
- DBTBS entry: no entry
- SubtiList entry: [1]
Additional information
The protein
Basic information/ Evolution
- Catalyzed reaction/ biological activity: binding to the upstream activating sequence in front of the levD gene results in activation of transcription of the levD-levE-levF-levG-sacC operon, bining occurs in the presence of fructose
- Protein family: transcriptional antiterminator bglG family (according to Swiss-Prot), Attention: this is wrong: LicR is a transcription activator, the similarity to the BglG family is limited to the PTS-regulation domains
- Paralogous protein(s):
Extended information on the protein
- Kinetic information:
- Domains:
- Modification:
- Cofactor(s):
- Effectors of protein activity:
- Localization: cytoplasm (according to Swiss-Prot)
Database entries
- Structure:
- UniProt: P23914
- KEGG entry: [2]
- E.C. number:
Additional information
Expression and regulation
- Operon:
- Sigma factor:
- Regulation:
- Regulatory mechanism:
- Additional information:
Biological materials
- Mutant:
- Expression vector:
- lacZ fusion:
- GFP fusion:
- two-hybrid system:
- Antibody:
Labs working on this gene/protein
Your additional remarks
References
V Charrier, J Deutscher, A Galinier, I Martin-Verstraete
Protein phosphorylation chain of a Bacillus subtilis fructose-specific phosphotransferase system and its participation in regulation of the expression of the lev operon.
Biochemistry: 1997, 36(5);1163-72
[PubMed:9033408]
[WorldCat.org]
[DOI]
(P p)
J Stülke, I Martin-Verstraete, V Charrier, A Klier, J Deutscher, G Rapoport
The HPr protein of the phosphotransferase system links induction and catabolite repression of the Bacillus subtilis levanase operon.
J Bacteriol: 1995, 177(23);6928-36
[PubMed:7592487]
[WorldCat.org]
[DOI]
(P p)
I Martin-Verstraete, J Stülke, A Klier, G Rapoport
Two different mechanisms mediate catabolite repression of the Bacillus subtilis levanase operon.
J Bacteriol: 1995, 177(23);6919-27
[PubMed:7592486]
[WorldCat.org]
[DOI]
(P p)
I Martin-Verstraete, M Débarbouillé, A Klier, G Rapoport
Interactions of wild-type and truncated LevR of Bacillus subtilis with the upstream activating sequence of the levanase operon.
J Mol Biol: 1994, 241(2);178-92
[PubMed:8057358]
[WorldCat.org]
[DOI]
(P p)
M Débarbouillé, I Martin-Verstraete, A Klier, G Rapoport
The transcriptional regulator LevR of Bacillus subtilis has domains homologous to both sigma 54- and phosphotransferase system-dependent regulators.
Proc Natl Acad Sci U S A: 1991, 88(6);2212-6
[PubMed:1900939]
[WorldCat.org]
[DOI]
(P p)