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The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter

Bacterial growth and division require regulated synthesis of the macromolecules used to expand and replicate components of the cell. Transcription of housekeeping genes required for metabolic homeostasis and cell proliferation is guided by the sigma factor σ(70). The conserved CarD-like transcriptio...

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Autores principales: Woldemeskel, Selamawit Abi, Daitch, Allison K., Alvarez, Laura, Panis, Gaël, Zeinert, Rilee, Gonzalez, Diego, Smith, Erika, Collier, Justine, Chien, Peter, Cava, Felipe, Viollier, Patrick H., Goley, Erin D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994171/
https://www.ncbi.nlm.nih.gov/pubmed/31961855
http://dx.doi.org/10.1371/journal.pgen.1008591
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author Woldemeskel, Selamawit Abi
Daitch, Allison K.
Alvarez, Laura
Panis, Gaël
Zeinert, Rilee
Gonzalez, Diego
Smith, Erika
Collier, Justine
Chien, Peter
Cava, Felipe
Viollier, Patrick H.
Goley, Erin D.
author_facet Woldemeskel, Selamawit Abi
Daitch, Allison K.
Alvarez, Laura
Panis, Gaël
Zeinert, Rilee
Gonzalez, Diego
Smith, Erika
Collier, Justine
Chien, Peter
Cava, Felipe
Viollier, Patrick H.
Goley, Erin D.
author_sort Woldemeskel, Selamawit Abi
collection PubMed
description Bacterial growth and division require regulated synthesis of the macromolecules used to expand and replicate components of the cell. Transcription of housekeeping genes required for metabolic homeostasis and cell proliferation is guided by the sigma factor σ(70). The conserved CarD-like transcriptional regulator, CdnL, associates with promoter regions where σ(70) localizes and stabilizes the open promoter complex. However, the contributions of CdnL to metabolic homeostasis and bacterial physiology are not well understood. Here, we show that Caulobacter crescentus cells lacking CdnL have severe morphological and growth defects. Specifically, ΔcdnL cells grow slowly in both rich and defined media, and are wider, more curved, and have shorter stalks than WT cells. These defects arise from transcriptional downregulation of most major classes of biosynthetic genes, leading to significant decreases in the levels of critical metabolites, including pyruvate, α-ketoglutarate, ATP, NAD(+), UDP-N-acetyl-glucosamine, lipid II, and purine and pyrimidine precursors. Notably, we find that ΔcdnL cells are glutamate auxotrophs, and ΔcdnL is synthetic lethal with other genetic perturbations that limit glutamate synthesis and lipid II production. Our findings implicate CdnL as a direct and indirect regulator of genes required for metabolic homeostasis that impacts morphogenesis through availability of lipid II and other metabolites.
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spelling pubmed-69941712020-02-18 The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter Woldemeskel, Selamawit Abi Daitch, Allison K. Alvarez, Laura Panis, Gaël Zeinert, Rilee Gonzalez, Diego Smith, Erika Collier, Justine Chien, Peter Cava, Felipe Viollier, Patrick H. Goley, Erin D. PLoS Genet Research Article Bacterial growth and division require regulated synthesis of the macromolecules used to expand and replicate components of the cell. Transcription of housekeeping genes required for metabolic homeostasis and cell proliferation is guided by the sigma factor σ(70). The conserved CarD-like transcriptional regulator, CdnL, associates with promoter regions where σ(70) localizes and stabilizes the open promoter complex. However, the contributions of CdnL to metabolic homeostasis and bacterial physiology are not well understood. Here, we show that Caulobacter crescentus cells lacking CdnL have severe morphological and growth defects. Specifically, ΔcdnL cells grow slowly in both rich and defined media, and are wider, more curved, and have shorter stalks than WT cells. These defects arise from transcriptional downregulation of most major classes of biosynthetic genes, leading to significant decreases in the levels of critical metabolites, including pyruvate, α-ketoglutarate, ATP, NAD(+), UDP-N-acetyl-glucosamine, lipid II, and purine and pyrimidine precursors. Notably, we find that ΔcdnL cells are glutamate auxotrophs, and ΔcdnL is synthetic lethal with other genetic perturbations that limit glutamate synthesis and lipid II production. Our findings implicate CdnL as a direct and indirect regulator of genes required for metabolic homeostasis that impacts morphogenesis through availability of lipid II and other metabolites. Public Library of Science 2020-01-21 /pmc/articles/PMC6994171/ /pubmed/31961855 http://dx.doi.org/10.1371/journal.pgen.1008591 Text en © 2020 Woldemeskel et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Woldemeskel, Selamawit Abi
Daitch, Allison K.
Alvarez, Laura
Panis, Gaël
Zeinert, Rilee
Gonzalez, Diego
Smith, Erika
Collier, Justine
Chien, Peter
Cava, Felipe
Viollier, Patrick H.
Goley, Erin D.
The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title_full The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title_fullStr The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title_full_unstemmed The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title_short The conserved transcriptional regulator CdnL is required for metabolic homeostasis and morphogenesis in Caulobacter
title_sort conserved transcriptional regulator cdnl is required for metabolic homeostasis and morphogenesis in caulobacter
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6994171/
https://www.ncbi.nlm.nih.gov/pubmed/31961855
http://dx.doi.org/10.1371/journal.pgen.1008591
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