» Articles » PMID: 29511080

Novel (p)ppGpp Binding and Metabolizing Proteins of

Overview
Journal mBio
Specialty Microbiology
Date 2018 Mar 8
PMID 29511080
Citations 84
Authors
Affiliations
Soon will be listed here.
Abstract

The alarmone (p)ppGpp plays pivotal roles in basic bacterial stress responses by increasing tolerance of various nutritional limitations and chemical insults, including antibiotics. Despite intensive studies since (p)ppGpp was discovered over 4 decades ago, (p)ppGpp binding proteins have not been systematically identified in We applied DRaCALA (ifferential dial apillary ction of igand ssay) to identify (p)ppGpp-protein interactions. We discovered 12 new (p)ppGpp targets in that, based on their physiological functions, could be classified into four major groups, involved in (i) purine nucleotide homeostasis (YgdH), (ii) ribosome biogenesis and translation (RsgA, Era, HflX, and LepA), (iii) maturation of dehydrogenases (HypB), and (iv) metabolism of (p)ppGpp (MutT, NudG, TrmE, NadR, PhoA, and UshA). We present a comprehensive and comparative biochemical and physiological characterization of these novel (p)ppGpp targets together with a comparative analysis of relevant, known (p)ppGpp binding proteins. Via this, primary targets of (p)ppGpp in are identified. The GTP salvage biosynthesis pathway and ribosome biogenesis and translation are confirmed as targets of (p)ppGpp that are highly conserved between and In addition, an alternative (p)ppGpp degradative pathway, involving NudG and MutT, was uncovered. This report thus significantly expands the known cohort of (p)ppGpp targets in Antibiotic resistance and tolerance exhibited by pathogenic bacteria have resulted in a global public health crisis. Remarkably, almost all bacterial pathogens require the alarmone (p)ppGpp to be virulent. Thus, (p)ppGpp not only induces tolerance of nutritional limitations and chemical insults, including antibiotics, but is also often required for induction of virulence genes. However, understanding of the molecular targets of (p)ppGpp and the mechanisms by which (p)ppGpp influences bacterial physiology is incomplete. In this study, a systematic approach was used to uncover novel targets of (p)ppGpp in , the best-studied model bacterium. Comprehensive comparative studies of the targets revealed conserved target pathways of (p)ppGpp in both Gram-positive and -negative bacteria and novel targets of (p)ppGpp, including an alternative degradative pathway of (p)ppGpp. Thus, our discoveries may help in understanding of how (p)ppGpp increases the stress resilience and multidrug tolerance not only of the model organism but also of the pathogenic organisms in which these targets are conserved.

Citing Articles

Broad-spectrum tolerance to disinfectant-mediated bacterial killing due to mutation of the PheS aminoacyl tRNA synthetase.

Chen M, Cui R, Hong S, Zhu W, Yang Q, Li J Proc Natl Acad Sci U S A. 2025; 122(6):e2412871122.

PMID: 39899725 PMC: 11831201. DOI: 10.1073/pnas.2412871122.


Biofilm formation by is triggered by a drop in the levels of a cyclic dinucleotide.

Syed A, Baral R, Van Vlack E, Gil-Marques M, Lenhart T, Hooper D Proc Natl Acad Sci U S A. 2024; 121(52):e2417323121.

PMID: 39680756 PMC: 11670122. DOI: 10.1073/pnas.2417323121.


Direct detection of stringent alarmones (pp)pGpp using malachite green.

Schicketanz M, Petrova M, Rejman D, Sosio M, Donadio S, Zhang Y Microb Cell. 2024; 11:312-320.

PMID: 39119257 PMC: 11307201. DOI: 10.15698/mic2024.08.834.


FhlA is a Formate Binding Protein.

Fardan A, Koestler B bioRxiv. 2024; .

PMID: 39091852 PMC: 11291172. DOI: 10.1101/2024.07.24.604796.


"Metabolic burden" explained: stress symptoms and its related responses induced by (over)expression of (heterologous) proteins in Escherichia coli.

Snoeck S, Guidi C, De Mey M Microb Cell Fact. 2024; 23(1):96.

PMID: 38555441 PMC: 10981312. DOI: 10.1186/s12934-024-02370-9.


References
1.
Roelofs K, Jones C, Helman S, Shang X, Orr M, Goodson J . Systematic Identification of Cyclic-di-GMP Binding Proteins in Vibrio cholerae Reveals a Novel Class of Cyclic-di-GMP-Binding ATPases Associated with Type II Secretion Systems. PLoS Pathog. 2015; 11(10):e1005232. PMC: 4624772. DOI: 10.1371/journal.ppat.1005232. View

2.
Atkinson G, Tenson T, Hauryliuk V . The RelA/SpoT homolog (RSH) superfamily: distribution and functional evolution of ppGpp synthetases and hydrolases across the tree of life. PLoS One. 2011; 6(8):e23479. PMC: 3153485. DOI: 10.1371/journal.pone.0023479. View

3.
Paul B, Barker M, Ross W, Schneider D, Webb C, Foster J . DksA: a critical component of the transcription initiation machinery that potentiates the regulation of rRNA promoters by ppGpp and the initiating NTP. Cell. 2004; 118(3):311-22. DOI: 10.1016/j.cell.2004.07.009. View

4.
Ooga T, Ohashi Y, Kuramitsu S, Koyama Y, Tomita M, Soga T . Degradation of ppGpp by nudix pyrophosphatase modulates the transition of growth phase in the bacterium Thermus thermophilus. J Biol Chem. 2009; 284(23):15549-56. PMC: 2708851. DOI: 10.1074/jbc.M900582200. View

5.
Keasling J, BERTSCH L, Kornberg A . Guanosine pentaphosphate phosphohydrolase of Escherichia coli is a long-chain exopolyphosphatase. Proc Natl Acad Sci U S A. 1993; 90(15):7029-33. PMC: 47069. DOI: 10.1073/pnas.90.15.7029. View