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glnR

transcriptional regulator (nitrogen metabolism)
geneglnR
producttranscriptional regulator (nitrogen metabolism)
locusRBAM_017250
synonyms
homologBSU17450
start1791011
stop1791415
direction+
length405
essentialno
Expressed protein
Standard condition
Genomic Context

Functional containing this gene/protein

Category2. Metabolism
Subcategory12.3. Amino acid/ nitrogen metabolism
Subcategory22.3.1. Biosynthesis/ acquisition of amino acids
Subcategory32.3.1.1. Biosynthesis/ acquisition of glutamate/ g

Phenotypes of a mutant

plant-bacteria interaction

transcription stimulated by root exudate

Expression and Regulation

Operons
glnR-glnA
Transcripts
Primary TSS1790986
Secondary TSS
Internal TSS
Antisense TSS

Sigma factors

SigA

Protein regulator

GlnA repression GlnR repression TnrA repression

Additional regulation

RNA regulation_mode

This gene is a member of the following regulons

SigA Regulon
The protein


Catalyzed reaction/ biological activity
E.C. number
Protein family
Domains
Effectors of protein activity
Refer to BSU17450
Structure
Refer to BSU17450
Modification
Acetylation
K109
Localization

Biological materials


Mutant
LacZ fusion
GFP fusion
FLAG-tag construct
Antibody
Additional information
4. Lifestyles 4. 4 Interaction with plants and growth competitors 4.4.3 Response to plants 4.4.3.1 transcriptomics 4.4.3.1.1 stimulation by root exudate

References


Liu L, Wang G, Song L, Lv B, Liang W

Acetylome analysis reveals the involvement of lysine acetylation in biosynthesis of antibiotics in Bacillus amyloliquefaciens.

Sci Rep. 2016 Jan 29;6:20108. doi: 10.1038/srep20108;PMID:26822828

Fan B, Carvalhais, LC, Becker, A, Fedoseyenko D,

Transcriptomic profiling of Bacillus amyloliquefaciens FZB42 in response to maize root exudates

BMC Microbiol. 2012 Jun 21;12:116. doi: 10.1186/1471-2180-12-116.;PMID:22720735