4.8 Article

(p)ppGpp controls stringent factors by exploiting antagonistic allosteric coupling between catalytic domains

期刊

MOLECULAR CELL
卷 81, 期 16, 页码 3310-+

出版社

CELL PRESS
DOI: 10.1016/j.molcel.2021.07.026

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资金

  1. European Regional Development Fund through the Centre of Excellence for Molecular Cell Technology
  2. Molecular Infection Medicine Sweden (MIMS)
  3. Ragnar Soderberg foundation
  4. Swedish Research council [2019-01085, 2017-03783, 2018-00956]
  5. JPIAMR grant [JPI-EC-AMR-R.8004.18]
  6. Fonds National de Recherche Scientifique [FRFS-WELBIO CR-2017S-03, FNRS CDR J.0068.19, FNRS-PDR T.0066.18, FNRS-EQP U.N.025.19]
  7. ERC (CoG DiStRes) [864311]
  8. Program Actions de Recherche Concerte 2016-2021, Fonds d'Encouragement a la Recherche of ULB
  9. Fonds Jean Brachet
  10. Fondation Van Buuren
  11. Fund for Research in Industry and Agronomy
  12. FNRS [CR/DM-392]
  13. MIMS Excellence by Choice Postdoctoral Fellowship Programme grant 2018
  14. Umea Centre for Microbial Research (UCMR)
  15. European Research Council (ERC) [864311] Funding Source: European Research Council (ERC)
  16. Swedish Research Council [2018-00956, 2019-01085] Funding Source: Swedish Research Council

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Amino acid starvation is sensed by RelA and Rel through monitoring the aminoacylation status of ribosomal A-site tRNA, with their synthetic activity controlled by the alarmone nucleotide (p)ppGpp. Stimulation by the alarmone exploits intra-NTD autoinhibition dynamics to activate Rel/RelA. Without pppGpp stimulation, starved ribosomes cannot efficiently activate Rel/RelA, compromising their function in vivo.
Amino acid starvation is sensed by Escherichia coli RelA and Bacillus subtilis Rel through monitoring the aminoacylation status of ribosomal A-site tRNA. These enzymes are positively regulated by their product-the alarmone nucleotide (p)ppGpp-through an unknown mechanism. The (p)ppGpp-synthetic activity of Rel/ RelA is controlled via auto-inhibition by the hydrolase/pseudo-hydrolase (HD/pseudo-HD) domain within the enzymatic N-terminal domain region (NTD). We localize the allosteric pppGpp site to the interface between the SYNTH and pseudo-HD/HD domains, with the alarmone stimulating Rel/RelA by exploiting intra-NTD autoinhibition dynamics. We show that without stimulation by pppGpp, starved ribosomes cannot efficiently activate Rel/RelA. Compromised activation by pppGpp ablates Rel/RelA function in vivo, suggesting that regulation by the second messenger (p)ppGpp is necessary for mounting an acute starvation response via coordinated enzymatic activity of individual Rel/RelA molecules. Control by (p)ppGpp is lacking in the E. coli (p)ppGpp synthetase SpoT, thus explaining its weak synthetase activity.

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