bioRxiv · 10.1101/257592
Regulation of (p)ppGpp hydrolysis by a conserved archetypal regulatory domain
Abstract
Sensory and regulatory domains allow bacteria to adequately respond to environmental changes. The regulatory ACT domains are mainly found in metabolic-related proteins as well as in long (p)ppGpp synthetase/hydrolase (SD/HD) enzymes. Here, we investigate the functional role of the ACT domain of SpoT, the only (p)ppGpp SD/HD of Caulobacter crescentus. We show that SpoT requires the ACT domain to hydrolyse ppGpp in an efficient way. In addition, our in vivo and in vitro data show that the phosphorylated version of EIIANtr (EIIANtr~P) interacts directly with the ACT to inhibit the hydrolase activity of SpoT. Finally, we highlight the conservation of the ACT-dependent interaction between EIIANtr~P and SpoT/Rel along with the PTSNtr-dependent regulation of (p)ppGpp accumulation upon nitrogen starvation in Sinorhizobium meliloti, a plant-associated -proteobacterium. Thus, this work suggests that -proteobacteria might have inherited from a common ancestor, a PTSNtr dedicated to modulate (p)ppGpp levels.
Source connections
Explore related subjects
Keep this discovery
Ronneau, S., Caballero-Montes, J., Mayard, A., Garcia-Pino, A., Hallez, R.. 2018-01-31. Regulation of (p)ppGpp hydrolysis by a conserved archetypal regulatory domain. https://doi.org/10.1101/257592
Cite the original work for its findings. Save a collection to share your selection of sources.