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Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis

The intracellular pathogen Legionella pneumophila translocates a large number of effector proteins into host cells via the Icm/Dot type-IVB secretion system. Some of these effectors were shown to cause lethal effect on yeast growth. Here we characterized one such effector (LecE) and identified yeast...

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Autores principales: Viner, Ram, Chetrit, David, Ehrlich, Marcelo, Segal, Gil
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3486869/
https://www.ncbi.nlm.nih.gov/pubmed/23133385
http://dx.doi.org/10.1371/journal.ppat.1002988
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author Viner, Ram
Chetrit, David
Ehrlich, Marcelo
Segal, Gil
author_facet Viner, Ram
Chetrit, David
Ehrlich, Marcelo
Segal, Gil
author_sort Viner, Ram
collection PubMed
description The intracellular pathogen Legionella pneumophila translocates a large number of effector proteins into host cells via the Icm/Dot type-IVB secretion system. Some of these effectors were shown to cause lethal effect on yeast growth. Here we characterized one such effector (LecE) and identified yeast suppressors that reduced its lethal effect. The LecE lethal effect was found to be suppressed by the over expression of the yeast protein Dgk1 a diacylglycerol (DAG) kinase enzyme and by a deletion of the gene encoding for Pah1 a phosphatidic acid (PA) phosphatase that counteracts the activity of Dgk1. Genetic analysis using yeast deletion mutants, strains expressing relevant yeast genes and point mutations constructed in the Dgk1 and Pah1 conserved domains indicated that LecE functions similarly to the Nem1-Spo7 phosphatase complex that activates Pah1 in yeast. In addition, by using relevant yeast genetic backgrounds we examined several L. pneumophila effectors expected to be involved in phospholipids biosynthesis and identified an effector (LpdA) that contains a phospholipase-D (PLD) domain which caused lethal effect only in a dgk1 deletion mutant of yeast. Additionally, LpdA was found to enhance the lethal effect of LecE in yeast cells, a phenomenon which was found to be dependent on its PLD activity. Furthermore, to determine whether LecE and LpdA affect the levels or distribution of DAG and PA in-vivo in mammalian cells, we utilized fluorescent DAG and PA biosensors and validated the notion that LecE and LpdA affect the in-vivo levels and distribution of DAG and PA, respectively. Finally, we examined the intracellular localization of both LecE and LpdA in human macrophages during L. pneumophila infection and found that both effectors are localized to the bacterial phagosome. Our results suggest that L. pneumophila utilize at least two effectors to manipulate important steps in phospholipids biosynthesis.
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spelling pubmed-34868692012-11-06 Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis Viner, Ram Chetrit, David Ehrlich, Marcelo Segal, Gil PLoS Pathog Research Article The intracellular pathogen Legionella pneumophila translocates a large number of effector proteins into host cells via the Icm/Dot type-IVB secretion system. Some of these effectors were shown to cause lethal effect on yeast growth. Here we characterized one such effector (LecE) and identified yeast suppressors that reduced its lethal effect. The LecE lethal effect was found to be suppressed by the over expression of the yeast protein Dgk1 a diacylglycerol (DAG) kinase enzyme and by a deletion of the gene encoding for Pah1 a phosphatidic acid (PA) phosphatase that counteracts the activity of Dgk1. Genetic analysis using yeast deletion mutants, strains expressing relevant yeast genes and point mutations constructed in the Dgk1 and Pah1 conserved domains indicated that LecE functions similarly to the Nem1-Spo7 phosphatase complex that activates Pah1 in yeast. In addition, by using relevant yeast genetic backgrounds we examined several L. pneumophila effectors expected to be involved in phospholipids biosynthesis and identified an effector (LpdA) that contains a phospholipase-D (PLD) domain which caused lethal effect only in a dgk1 deletion mutant of yeast. Additionally, LpdA was found to enhance the lethal effect of LecE in yeast cells, a phenomenon which was found to be dependent on its PLD activity. Furthermore, to determine whether LecE and LpdA affect the levels or distribution of DAG and PA in-vivo in mammalian cells, we utilized fluorescent DAG and PA biosensors and validated the notion that LecE and LpdA affect the in-vivo levels and distribution of DAG and PA, respectively. Finally, we examined the intracellular localization of both LecE and LpdA in human macrophages during L. pneumophila infection and found that both effectors are localized to the bacterial phagosome. Our results suggest that L. pneumophila utilize at least two effectors to manipulate important steps in phospholipids biosynthesis. Public Library of Science 2012-11-01 /pmc/articles/PMC3486869/ /pubmed/23133385 http://dx.doi.org/10.1371/journal.ppat.1002988 Text en © 2012 Viner 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Viner, Ram
Chetrit, David
Ehrlich, Marcelo
Segal, Gil
Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title_full Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title_fullStr Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title_full_unstemmed Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title_short Identification of Two Legionella pneumophila Effectors that Manipulate Host Phospholipids Biosynthesis
title_sort identification of two legionella pneumophila effectors that manipulate host phospholipids biosynthesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3486869/
https://www.ncbi.nlm.nih.gov/pubmed/23133385
http://dx.doi.org/10.1371/journal.ppat.1002988
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