c-di-AMP Accumulation Impairs Muropeptide Synthesis in Listeria monocytogenes

التفاصيل البيبلوغرافية
العنوان: c-di-AMP Accumulation Impairs Muropeptide Synthesis in Listeria monocytogenes
المؤلفون: William G. Gutheil, Zepeng Tu, Cheta Siletti, Jared J. Godfrey, Steven M. Massa, TuAnh Ngoc Huynh, A. D. Sharma
المصدر: J Bacteriol
بيانات النشر: American Society for Microbiology, 2020.
سنة النشر: 2020
مصطلحات موضوعية: Cell, Mutant, Biology, Microbiology, Second Messenger Systems, Bacterial cell structure, Cell wall, 03 medical and health sciences, chemistry.chemical_compound, Bacterial Proteins, Cell Wall, medicine, Cyclic AMP, Humans, Listeriosis, Molecular Biology, 030304 developmental biology, 0303 health sciences, 030306 microbiology, Phosphoric Diester Hydrolases, Gene Expression Regulation, Bacterial, biology.organism_classification, Listeria monocytogenes, Cell biology, medicine.anatomical_structure, chemistry, Second messenger system, Potassium, Peptidoglycan, Cell envelope, Peptides, Bacteria, Research Article
الوصف: Cyclic di-AMP (c-di-AMP) is an essential and ubiquitous second messenger among bacteria. c-di-AMP regulates many cellular pathways through direct binding to several molecular targets in bacterial cells. c-di-AMP depletion is well known to destabilize the bacterial cell wall, resulting in increased bacteriolysis and enhanced susceptibility to cell wall targeting antibiotics. Using the human pathogen Listeria monocytogenes as a model, we found that c-di-AMP accumulation also impaired cell envelope integrity. An L. monocytogenes mutant deleted for c-di-AMP phosphodiesterases (pdeA pgpH mutant) exhibited a 4-fold increase in c-di-AMP levels and several cell wall defects. For instance, the pdeA pgpH mutant was defective for the synthesis of peptidoglycan muropeptides and was susceptible to cell wall-targeting antimicrobials. Among different muropeptide precursors, we found that the pdeA pgpH strain was particularly impaired in the synthesis of d-Ala–d-Ala, which is required to complete the pentapeptide stem associated with UDP–N-acetylmuramic acid (MurNAc). This was consistent with an increased sensitivity to d-cycloserine, which inhibits the d-alanine branch of peptidoglycan synthesis. Finally, upon examining d-Ala:d-Ala ligase (Ddl), which catalyzes the conversion of d-Ala to d-Ala–d-Ala, we found that its activity was activated by K+. Based on previous reports that c-di-AMP inhibits K+ uptake, we propose that c-di-AMP accumulation impairs peptidoglycan synthesis, partially through the deprivation of cytoplasmic K+ levels, which are required for cell wall-synthetic enzymes. IMPORTANCE The bacterial second messenger c-di-AMP is produced by a large number of bacteria and conditionally essential to many species. Conversely, c-di-AMP accumulation is also toxic to bacterial physiology and pathogenesis, but its mechanisms are largely undefined. We found that in Listeria monocytogenes, elevated c-di-AMP levels diminished muropeptide synthesis and increased susceptibility to cell wall-targeting antimicrobials. Cell wall defects might be an important mechanism for attenuated virulence in bacteria with high c-di-AMP levels.
اللغة: English
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::ab37c41633c6399a14689a81cbbc4cdeTest
https://europepmc.org/articles/PMC7685554Test/
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....ab37c41633c6399a14689a81cbbc4cde
قاعدة البيانات: OpenAIRE