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PSEAI:Q9RLJ1
Contents
Species (Taxon ID) | Pseudomonas aeruginosa. (287) | |
Gene Name(s) | czrR (ECO:0000313 with EMBL:CAB56468.1) | |
Protein Name(s) | CzcR (ECO:0000313 with EMBL:ACX81358.1)
CzrR protein (ECO:0000313 with EMBL:CAB56468.1) Transcriptional activator protein CzcR (ECO:0000313 with EMBL:ALI58822.1) Two-component system response regulator (ECO:0000313 with EMBL:KSC82161.1) | |
External Links | ||
UniProt | Q9RLJ1 | |
EMBL | GU017677 KC147685 KC147686 KC147687 KT454971 CP012901 Y14018 CDAZ01000029 CVVJ01000163 CVWF01000643 LLLN01000056 LLOD01000035 | |
PIR | H83330 | |
RefSeq | WP_003089900.1 | |
STRING | 208964.PA2523 | |
EnsemblBacteria | CEI21476 CRP83944 CRR53776 KQB29988 KQC54974 KQC63136 KQC64934 KQC68247 KQC77398 KQJ53850 KQJ61597 KQJ67569 KQJ75631 KQJ79905 KQK54395 KQK55354 KRU76692 KRU88234 KRU91563 KRU94874 KRU95332 KRV01882 KRV07291 KRV15264 KRV21688 KRV29030 KRV34426 KSC82161 KSG18783 KSH12720 | |
KEGG | paeb:NCGM1900_4004 | |
PATRIC | 19839515 | |
PseudoCAP | PA2523 | |
eggNOG | ENOG4105CK6 COG0745 | |
HOGENOM | HOG000034815 | |
KO | K07665 | |
Proteomes | UP000042235 UP000043988 UP000054218 UP000054840 | |
GO | GO:0005622 GO:0003677 GO:1900377 GO:0000160 GO:0043902 GO:0045862 GO:1900233 GO:0032411 GO:0006355 | |
CDD | cd00383 | |
Gene3D | 1.10.10.10 | |
InterPro | IPR011006 IPR001867 IPR006291 IPR016032 IPR001789 IPR011991 | |
PANTHER | PTHR26402:SF684 | |
Pfam | PF00072 PF00486 | |
SMART | SM00448 SM00862 | |
SUPFAM | SSF46894 SSF52172 | |
TIGRFAMs | TIGR01387 | |
PROSITE | PS51755 PS50110 |
Annotations
Qualifier | GO ID | GO term name | Reference | ECO ID | ECO term name | with/from | Aspect | Extension | Notes | Status |
---|---|---|---|---|---|---|---|---|---|---|
GO:0009405 |
pathogenesis |
ECO:0000316 |
|
P |
Pseudomonas aeruginosa (PA01 Strain) czcR "Figure 4 CzcR is required for the full virulence of P. aeruginosa." " In our assay, an infection with the wild type strain killed 50% of the population within circa 3 days of contact with bacteria and all worms were dead after 4 days (Fig. 4). In contrast, the virulence of the ΔczcRS mutant was significantly reduced since 50% of the worms were still alive after 5 days of contact. The virulence of the ΔczcRS mutant strain complemented with czcR on the pRWT plasmid was partially restored since 50% of the worms were dead after 4 days and less than 20% of the worm population was alive after 5 days, while no complementation was observed with the czcS gene (Fig. 4). |
complete | ||||
involved_in |
GO:1900377 |
negative regulation of secondary metabolite biosynthetic process |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:1900233 |
positive regulation of single-species biofilm formation on inanimate substrate |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0045862 |
positive regulation of proteolysis |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0043902 |
positive regulation of multi-organism process |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0032411 |
positive regulation of transporter activity |
ECO:0000315 |
mutant phenotype evidence used in manual assertion |
P |
Seeded From UniProt |
complete | |||
involved_in |
GO:0000160 |
phosphorelay signal transduction system |
ECO:0000256 |
match to sequence model evidence used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0003677 |
DNA binding |
ECO:0000256 |
match to sequence model evidence used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0006355 |
regulation of transcription, DNA-templated |
ECO:0000256 |
match to sequence model evidence used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0003677 |
DNA binding |
ECO:0000323 |
imported automatically asserted information used in automatic assertion |
F |
Seeded From UniProt |
complete | |||
involved_in |
GO:0000160 |
phosphorelay signal transduction system |
ECO:0000323 |
imported automatically asserted information used in automatic assertion |
P |
Seeded From UniProt |
complete | |||
enables |
GO:0003677 |
DNA binding |
ECO:0000256 |
match to sequence model evidence used in automatic assertion |
UniRule:UR000414392 |
F |
Seeded From UniProt |
complete | ||
Notes
References
See Help:References for how to manage references in GONUTS.
- ↑ 1.0 1.1 1.2 1.3 1.4 Dieppois, G et al. (2012) The transcriptional regulator CzcR modulates antibiotic resistance and quorum sensing in Pseudomonas aeruginosa. PLoS ONE 7 e38148 PubMed GONUTS page
- ↑ Perron, K et al. (2004) CzcR-CzcS, a two-component system involved in heavy metal and carbapenem resistance in Pseudomonas aeruginosa. J. Biol. Chem. 279 8761-8 PubMed GONUTS page
b
o
p
- GO:0000160 ! phosphorelay signal transduction system
- GO:1900233 ! positive regulation of single-species biofilm formation on inanimate substrate
- GO:0045862 ! positive regulation of proteolysis
- GO:0032411 ! positive regulation of transporter activity
- Proteobacteria
- Pseudomonadaceae
- Pseudomonadales
- Pseudomonas
- Pseudomonas aeruginosa