The formation and function of focus-like structures of Hfq in long-term nitrogen starved Escherichia coli
McQuail, J.; Switzer, A.; Burchell, L.; Wigneshweraraj, R.
Show abstract
The initial adaptive responses to nutrient depletion in bacteria often occur at the level of RNA metabolism. Hfq is an RNA-binding protein present in diverse bacterial lineages and contributes to many different aspects of RNA metabolism. We demonstrate that Hfq forms a distinct and reversible focus-like structure in E. coli specifically experiencing long-term nitrogen (N) starvation. Using the ability of T7 phage to replicate in N starved bacteria as a biological probe of E. coli cell function during N starvation, we demonstrate that Hfq foci have a role in the adaptive response to long-term N starvation. We further show that Hfq foci formation does not depend on gene expression during N starvation and occurs independently of the N regulatory protein C (NtrC) activated initial adaptive response to N starvation. The results serve as a paradigm to demonstrate that bacterial adaptation to long-term nutrient starvation can be spatiotemporally coordinated and can occur independently of de novo gene expression during starvation. Significance StatementBacteria have evolved complex strategies to cope with conditions of nitrogen (N) adversity. We now reveal a role for a widely studied RNA binding protein, Hfq, in the processes involved in how Escherichia coli copes with N starvation. We demonstrate that Hfq forms a distinct and reversible focus-like structure in long-term N starved E. coli. We provide evidence to suggest that the Hfq foci are important features required for adjusting E. coli cell function during N starvation for optimal adaptation to long-term N starvation. The results have broad implications for our understanding of bacterial adaptive processes in response to stress.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Fluoride triggers lysis in Streptococcus mutans by inhibition of Clp protease complex leading to an unabated competence cascade 96%
- Tradeoffs in bacterial physiology determine the efficiency of antibiotic killing 96%
- DprA recruits ComM to facilitate recombination during natural transformation in Gram-negative bacteria 95%
Similar papers in this journal
- mRNA targeting eliminates the need for the signal recognition particle during membrane protein insertion in bacteria 95%
- Conserved heterodimeric GTPase Rbg1/Tma46 promotes efficient translation in eukaryotic cells 95%
- Polysomes and mRNA control the biophysical properties of the eukaryotic cytoplasm 95%
Similar papers in this journal
- Dynamic interactions between the RNA chaperone Hfq, small regulatory RNAs and mRNAs in live bacterial cells 96%
- Periplasm homeostatic regulation maintains spatial constraints essential for cell envelope processes and cell viability 96%
- Lytic transglycosylases mitigate periplasmic crowding by degrading soluble cell wall turnover products 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.