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Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity

Gastrointestinal microbes respond to biochemical metabolites that coordinate their behaviors. Here, we demonstrate that bacterial indole functions as a multifactorial mitigator of Klebsiella grimontii and Klebsiella oxytoca pathogenicity. These closely related microbes produce the enterotoxins tilim...

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Autores principales: Ledala, Nagender, Malik, Mishika, Rezaul, Karim, Paveglio, Sara, Provatas, Anthony, Kiel, Aaron, Caimano, Melissa, Zhou, Yanjiao, Lindgren, Jonathan, Krasulova, Kristyna, Illes, Peter, Dvořák, Zdeněk, Kortagere, Sandhya, Kienesberger, Sabine, Cosic, Amar, Pöltl, Lisa, Zechner, Ellen L., Ghosh, Subho, Mani, Sridhar, Radolf, Justin D., Matson, Adam P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8787480/
https://www.ncbi.nlm.nih.gov/pubmed/35073747
http://dx.doi.org/10.1128/mbio.03752-21
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author Ledala, Nagender
Malik, Mishika
Rezaul, Karim
Paveglio, Sara
Provatas, Anthony
Kiel, Aaron
Caimano, Melissa
Zhou, Yanjiao
Lindgren, Jonathan
Krasulova, Kristyna
Illes, Peter
Dvořák, Zdeněk
Kortagere, Sandhya
Kienesberger, Sabine
Cosic, Amar
Pöltl, Lisa
Zechner, Ellen L.
Ghosh, Subho
Mani, Sridhar
Radolf, Justin D.
Matson, Adam P.
author_facet Ledala, Nagender
Malik, Mishika
Rezaul, Karim
Paveglio, Sara
Provatas, Anthony
Kiel, Aaron
Caimano, Melissa
Zhou, Yanjiao
Lindgren, Jonathan
Krasulova, Kristyna
Illes, Peter
Dvořák, Zdeněk
Kortagere, Sandhya
Kienesberger, Sabine
Cosic, Amar
Pöltl, Lisa
Zechner, Ellen L.
Ghosh, Subho
Mani, Sridhar
Radolf, Justin D.
Matson, Adam P.
author_sort Ledala, Nagender
collection PubMed
description Gastrointestinal microbes respond to biochemical metabolites that coordinate their behaviors. Here, we demonstrate that bacterial indole functions as a multifactorial mitigator of Klebsiella grimontii and Klebsiella oxytoca pathogenicity. These closely related microbes produce the enterotoxins tilimycin and tilivalline; cytotoxin-producing strains are the causative agent of antibiotic-associated hemorrhagic colitis and have been associated with necrotizing enterocolitis of premature infants. We demonstrate that carbohydrates induce cytotoxin synthesis while concurrently repressing indole biosynthesis. Conversely, indole represses cytotoxin production. In both cases, the alterations stemmed from differential transcription of npsA and npsB, key genes involved in tilimycin biosynthesis. Indole also enhances conversion of tilimycin to tilivalline, an indole analog with reduced cytotoxicity. In this context, we established that tilivalline, but not tilimycin, is a strong agonist of pregnane X receptor (PXR), a master regulator of xenobiotic detoxification and intestinal inflammation. Tilivalline binding upregulated PXR-responsive detoxifying genes and inhibited tubulin-directed toxicity. Bacterial indole, therefore, acts in a multifunctional manner to mitigate cytotoxicity by Klebsiella spp.: suppression of toxin production, enhanced conversion of tilimycin to tilivalline, and activation of PXR.
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spelling pubmed-87874802022-02-07 Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity Ledala, Nagender Malik, Mishika Rezaul, Karim Paveglio, Sara Provatas, Anthony Kiel, Aaron Caimano, Melissa Zhou, Yanjiao Lindgren, Jonathan Krasulova, Kristyna Illes, Peter Dvořák, Zdeněk Kortagere, Sandhya Kienesberger, Sabine Cosic, Amar Pöltl, Lisa Zechner, Ellen L. Ghosh, Subho Mani, Sridhar Radolf, Justin D. Matson, Adam P. mBio Research Article Gastrointestinal microbes respond to biochemical metabolites that coordinate their behaviors. Here, we demonstrate that bacterial indole functions as a multifactorial mitigator of Klebsiella grimontii and Klebsiella oxytoca pathogenicity. These closely related microbes produce the enterotoxins tilimycin and tilivalline; cytotoxin-producing strains are the causative agent of antibiotic-associated hemorrhagic colitis and have been associated with necrotizing enterocolitis of premature infants. We demonstrate that carbohydrates induce cytotoxin synthesis while concurrently repressing indole biosynthesis. Conversely, indole represses cytotoxin production. In both cases, the alterations stemmed from differential transcription of npsA and npsB, key genes involved in tilimycin biosynthesis. Indole also enhances conversion of tilimycin to tilivalline, an indole analog with reduced cytotoxicity. In this context, we established that tilivalline, but not tilimycin, is a strong agonist of pregnane X receptor (PXR), a master regulator of xenobiotic detoxification and intestinal inflammation. Tilivalline binding upregulated PXR-responsive detoxifying genes and inhibited tubulin-directed toxicity. Bacterial indole, therefore, acts in a multifunctional manner to mitigate cytotoxicity by Klebsiella spp.: suppression of toxin production, enhanced conversion of tilimycin to tilivalline, and activation of PXR. American Society for Microbiology 2022-01-25 /pmc/articles/PMC8787480/ /pubmed/35073747 http://dx.doi.org/10.1128/mbio.03752-21 Text en Copyright © 2022 Ledala 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
Ledala, Nagender
Malik, Mishika
Rezaul, Karim
Paveglio, Sara
Provatas, Anthony
Kiel, Aaron
Caimano, Melissa
Zhou, Yanjiao
Lindgren, Jonathan
Krasulova, Kristyna
Illes, Peter
Dvořák, Zdeněk
Kortagere, Sandhya
Kienesberger, Sabine
Cosic, Amar
Pöltl, Lisa
Zechner, Ellen L.
Ghosh, Subho
Mani, Sridhar
Radolf, Justin D.
Matson, Adam P.
Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title_full Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title_fullStr Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title_full_unstemmed Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title_short Bacterial Indole as a Multifunctional Regulator of Klebsiella oxytoca Complex Enterotoxicity
title_sort bacterial indole as a multifunctional regulator of klebsiella oxytoca complex enterotoxicity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8787480/
https://www.ncbi.nlm.nih.gov/pubmed/35073747
http://dx.doi.org/10.1128/mbio.03752-21
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