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(p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes

The facultative intracellular pathogen Listeria monocytogenes, like many related Firmicutes, uses the nucleotide second messenger cyclic di-AMP (c-di-AMP) to adapt to changes in nutrient availability, osmotic stress, and the presence of cell wall-acting antibiotics. In rich medium, c-di-AMP is essen...

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Autores principales: Peterson, Bret N., Young, Megan K. M., Luo, Shukun, Wang, Jeffrey, Whiteley, Aaron T., Woodward, Joshua J., Tong, Liang, Wang, Jue D., Portnoy, Daniel A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549634/
https://www.ncbi.nlm.nih.gov/pubmed/32843560
http://dx.doi.org/10.1128/mBio.01625-20
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author Peterson, Bret N.
Young, Megan K. M.
Luo, Shukun
Wang, Jeffrey
Whiteley, Aaron T.
Woodward, Joshua J.
Tong, Liang
Wang, Jue D.
Portnoy, Daniel A.
author_facet Peterson, Bret N.
Young, Megan K. M.
Luo, Shukun
Wang, Jeffrey
Whiteley, Aaron T.
Woodward, Joshua J.
Tong, Liang
Wang, Jue D.
Portnoy, Daniel A.
author_sort Peterson, Bret N.
collection PubMed
description The facultative intracellular pathogen Listeria monocytogenes, like many related Firmicutes, uses the nucleotide second messenger cyclic di-AMP (c-di-AMP) to adapt to changes in nutrient availability, osmotic stress, and the presence of cell wall-acting antibiotics. In rich medium, c-di-AMP is essential; however, mutations in cbpB, the gene encoding c-di-AMP binding protein B, suppress essentiality. In this study, we identified that the reason for cbpB-dependent essentiality is through induction of the stringent response by RelA. RelA is a bifunctional RelA/SpoT homolog (RSH) that modulates levels of (p)ppGpp, a secondary messenger that orchestrates the stringent response through multiple allosteric interactions. We performed a forward genetic suppressor screen on bacteria lacking c-di-AMP to identify genomic mutations that rescued growth while cbpB was constitutively expressed and identified mutations in the synthetase domain of RelA. The synthetase domain of RelA was also identified as an interacting partner of CbpB in a yeast-2-hybrid screen. Biochemical analyses confirmed that free CbpB activates RelA while c-di-AMP inhibits its activation. We solved the crystal structure of CbpB bound and unbound to c-di-AMP and provide insight into the region important for c-di-AMP binding and RelA activation. The results of this study show that CbpB completes a homeostatic regulatory circuit between c-di-AMP and (p)ppGpp in Listeria monocytogenes.
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spelling pubmed-85496342021-11-04 (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes Peterson, Bret N. Young, Megan K. M. Luo, Shukun Wang, Jeffrey Whiteley, Aaron T. Woodward, Joshua J. Tong, Liang Wang, Jue D. Portnoy, Daniel A. mBio Research Article The facultative intracellular pathogen Listeria monocytogenes, like many related Firmicutes, uses the nucleotide second messenger cyclic di-AMP (c-di-AMP) to adapt to changes in nutrient availability, osmotic stress, and the presence of cell wall-acting antibiotics. In rich medium, c-di-AMP is essential; however, mutations in cbpB, the gene encoding c-di-AMP binding protein B, suppress essentiality. In this study, we identified that the reason for cbpB-dependent essentiality is through induction of the stringent response by RelA. RelA is a bifunctional RelA/SpoT homolog (RSH) that modulates levels of (p)ppGpp, a secondary messenger that orchestrates the stringent response through multiple allosteric interactions. We performed a forward genetic suppressor screen on bacteria lacking c-di-AMP to identify genomic mutations that rescued growth while cbpB was constitutively expressed and identified mutations in the synthetase domain of RelA. The synthetase domain of RelA was also identified as an interacting partner of CbpB in a yeast-2-hybrid screen. Biochemical analyses confirmed that free CbpB activates RelA while c-di-AMP inhibits its activation. We solved the crystal structure of CbpB bound and unbound to c-di-AMP and provide insight into the region important for c-di-AMP binding and RelA activation. The results of this study show that CbpB completes a homeostatic regulatory circuit between c-di-AMP and (p)ppGpp in Listeria monocytogenes. American Society for Microbiology 2020-08-25 /pmc/articles/PMC8549634/ /pubmed/32843560 http://dx.doi.org/10.1128/mBio.01625-20 Text en Copyright © 2020 Peterson et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Peterson, Bret N.
Young, Megan K. M.
Luo, Shukun
Wang, Jeffrey
Whiteley, Aaron T.
Woodward, Joshua J.
Tong, Liang
Wang, Jue D.
Portnoy, Daniel A.
(p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title_full (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title_fullStr (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title_full_unstemmed (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title_short (p)ppGpp and c-di-AMP Homeostasis Is Controlled by CbpB in Listeria monocytogenes
title_sort (p)ppgpp and c-di-amp homeostasis is controlled by cbpb in listeria monocytogenes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8549634/
https://www.ncbi.nlm.nih.gov/pubmed/32843560
http://dx.doi.org/10.1128/mBio.01625-20
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