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Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection

The molecular machinery that regulates the entry and survival of Yersinia pestis in host macrophages is poorly understood. Here, we report the development of automated high-content imaging assays to quantitate the internalization of virulent Y. pestis CO92 by macrophages and the subsequent activatio...

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Autores principales: Kota, Krishna P., Eaton, Brett, Lane, Douglas, Ulrich, Melanie, Ulrich, Ricky, Peyser, Brian D., Robinson, Camenzind G., Jaissle, James G., Pegoraro, Gianluca, Bavari, Sina, Panchal, Rekha G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3559335/
https://www.ncbi.nlm.nih.gov/pubmed/23383093
http://dx.doi.org/10.1371/journal.pone.0055167
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author Kota, Krishna P.
Eaton, Brett
Lane, Douglas
Ulrich, Melanie
Ulrich, Ricky
Peyser, Brian D.
Robinson, Camenzind G.
Jaissle, James G.
Pegoraro, Gianluca
Bavari, Sina
Panchal, Rekha G.
author_facet Kota, Krishna P.
Eaton, Brett
Lane, Douglas
Ulrich, Melanie
Ulrich, Ricky
Peyser, Brian D.
Robinson, Camenzind G.
Jaissle, James G.
Pegoraro, Gianluca
Bavari, Sina
Panchal, Rekha G.
author_sort Kota, Krishna P.
collection PubMed
description The molecular machinery that regulates the entry and survival of Yersinia pestis in host macrophages is poorly understood. Here, we report the development of automated high-content imaging assays to quantitate the internalization of virulent Y. pestis CO92 by macrophages and the subsequent activation of host NF-κB. Implementation of these assays in a focused chemical screen identified kinase inhibitors that inhibited both of these processes. Rac-2-ethoxy-3 octadecanamido-1-propylphosphocholine (a protein Kinase C inhibitor), wortmannin (a PI3K inhibitor), and parthenolide (an IκB kinase inhibitor), inhibited pathogen-induced NF-κB activation and reduced bacterial entry and survival within macrophages. Parthenolide inhibited NF-κB activation in response to stimulation with Pam3CSK4 (a TLR2 agonist), E. coli LPS (a TLR4 agonist) or Y. pestis infection, while the PI3K and PKC inhibitors were selective only for Y. pestis infection. Together, our results suggest that phagocytosis is the major stimulus for NF-κB activation in response to Y. pestis infection, and that Y. pestis entry into macrophages may involve the participation of protein kinases such as PI3K and PKC. More importantly, the automated image-based screening platform described here can be applied to the study of other bacteria in general and, in combination with chemical genetic screening, can be used to identify host cell functions facilitating the identification of novel antibacterial therapeutics.
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spelling pubmed-35593352013-02-04 Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection Kota, Krishna P. Eaton, Brett Lane, Douglas Ulrich, Melanie Ulrich, Ricky Peyser, Brian D. Robinson, Camenzind G. Jaissle, James G. Pegoraro, Gianluca Bavari, Sina Panchal, Rekha G. PLoS One Research Article The molecular machinery that regulates the entry and survival of Yersinia pestis in host macrophages is poorly understood. Here, we report the development of automated high-content imaging assays to quantitate the internalization of virulent Y. pestis CO92 by macrophages and the subsequent activation of host NF-κB. Implementation of these assays in a focused chemical screen identified kinase inhibitors that inhibited both of these processes. Rac-2-ethoxy-3 octadecanamido-1-propylphosphocholine (a protein Kinase C inhibitor), wortmannin (a PI3K inhibitor), and parthenolide (an IκB kinase inhibitor), inhibited pathogen-induced NF-κB activation and reduced bacterial entry and survival within macrophages. Parthenolide inhibited NF-κB activation in response to stimulation with Pam3CSK4 (a TLR2 agonist), E. coli LPS (a TLR4 agonist) or Y. pestis infection, while the PI3K and PKC inhibitors were selective only for Y. pestis infection. Together, our results suggest that phagocytosis is the major stimulus for NF-κB activation in response to Y. pestis infection, and that Y. pestis entry into macrophages may involve the participation of protein kinases such as PI3K and PKC. More importantly, the automated image-based screening platform described here can be applied to the study of other bacteria in general and, in combination with chemical genetic screening, can be used to identify host cell functions facilitating the identification of novel antibacterial therapeutics. Public Library of Science 2013-01-30 /pmc/articles/PMC3559335/ /pubmed/23383093 http://dx.doi.org/10.1371/journal.pone.0055167 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Kota, Krishna P.
Eaton, Brett
Lane, Douglas
Ulrich, Melanie
Ulrich, Ricky
Peyser, Brian D.
Robinson, Camenzind G.
Jaissle, James G.
Pegoraro, Gianluca
Bavari, Sina
Panchal, Rekha G.
Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title_full Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title_fullStr Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title_full_unstemmed Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title_short Integrating High-Content Imaging and Chemical Genetics to Probe Host Cellular Pathways Critical for Yersinia Pestis Infection
title_sort integrating high-content imaging and chemical genetics to probe host cellular pathways critical for yersinia pestis infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3559335/
https://www.ncbi.nlm.nih.gov/pubmed/23383093
http://dx.doi.org/10.1371/journal.pone.0055167
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