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LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing

Phagocytic cells ingest bacteria by phagocytosis and kill them efficiently inside phagolysosomes. The molecular mechanisms involved in intracellular killing and their regulation are complex and still incompletely understood. Dictyostelium discoideum has been used as a model to discover and to study...

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Autores principales: Bodinier, Romain, Leiba, Jade, Sabra, Ayman, Jauslin, Tania N., Lamrabet, Otmane, Guilhen, Cyril, Marchetti, Anna, Iwade, Yumi, Kawata, Takefumi, Lima, Wanessa C., Cosson, Pierre
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003747/
https://www.ncbi.nlm.nih.gov/pubmed/31652367
http://dx.doi.org/10.1111/cmi.13129
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author Bodinier, Romain
Leiba, Jade
Sabra, Ayman
Jauslin, Tania N.
Lamrabet, Otmane
Guilhen, Cyril
Marchetti, Anna
Iwade, Yumi
Kawata, Takefumi
Lima, Wanessa C.
Cosson, Pierre
author_facet Bodinier, Romain
Leiba, Jade
Sabra, Ayman
Jauslin, Tania N.
Lamrabet, Otmane
Guilhen, Cyril
Marchetti, Anna
Iwade, Yumi
Kawata, Takefumi
Lima, Wanessa C.
Cosson, Pierre
author_sort Bodinier, Romain
collection PubMed
description Phagocytic cells ingest bacteria by phagocytosis and kill them efficiently inside phagolysosomes. The molecular mechanisms involved in intracellular killing and their regulation are complex and still incompletely understood. Dictyostelium discoideum has been used as a model to discover and to study new gene products involved in intracellular killing of ingested bacteria. In this study, we performed random mutagenesis of Dictyostelium cells and isolated a mutant defective for growth on bacteria. This mutant is characterized by the genetic inactivation of the lrrkA gene, which encodes a protein with a kinase domain and leucine‐rich repeats. LrrkA knockout (KO) cells kill ingested Klebsiella pneumoniae bacteria inefficiently. This defect is not additive to the killing defect observed in kil2 KO cells, suggesting that the function of Kil2 is partially controlled by LrrkA. Indeed, lrrkA KO cells exhibit a phenotype similar to that of kil2 KO cells: Intraphagosomal proteolysis is inefficient, and both intraphagosomal killing and proteolysis are restored upon exogenous supplementation with magnesium ions. Bacterially secreted folate stimulates intracellular killing in Dictyostelium cells, but this stimulation is lost in cells with genetic inactivation of kil2, lrrkA, or far1. Together, these results indicate that the stimulation of intracellular killing by folate involves Far1 (the cell surface receptor for folate), LrrkA, and Kil2. This study is the first identification of a signalling pathway regulating intraphagosomal bacterial killing in Dictyostelium cells.
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spelling pubmed-70037472020-02-10 LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing Bodinier, Romain Leiba, Jade Sabra, Ayman Jauslin, Tania N. Lamrabet, Otmane Guilhen, Cyril Marchetti, Anna Iwade, Yumi Kawata, Takefumi Lima, Wanessa C. Cosson, Pierre Cell Microbiol Research Articles Phagocytic cells ingest bacteria by phagocytosis and kill them efficiently inside phagolysosomes. The molecular mechanisms involved in intracellular killing and their regulation are complex and still incompletely understood. Dictyostelium discoideum has been used as a model to discover and to study new gene products involved in intracellular killing of ingested bacteria. In this study, we performed random mutagenesis of Dictyostelium cells and isolated a mutant defective for growth on bacteria. This mutant is characterized by the genetic inactivation of the lrrkA gene, which encodes a protein with a kinase domain and leucine‐rich repeats. LrrkA knockout (KO) cells kill ingested Klebsiella pneumoniae bacteria inefficiently. This defect is not additive to the killing defect observed in kil2 KO cells, suggesting that the function of Kil2 is partially controlled by LrrkA. Indeed, lrrkA KO cells exhibit a phenotype similar to that of kil2 KO cells: Intraphagosomal proteolysis is inefficient, and both intraphagosomal killing and proteolysis are restored upon exogenous supplementation with magnesium ions. Bacterially secreted folate stimulates intracellular killing in Dictyostelium cells, but this stimulation is lost in cells with genetic inactivation of kil2, lrrkA, or far1. Together, these results indicate that the stimulation of intracellular killing by folate involves Far1 (the cell surface receptor for folate), LrrkA, and Kil2. This study is the first identification of a signalling pathway regulating intraphagosomal bacterial killing in Dictyostelium cells. John Wiley and Sons Inc. 2019-11-07 2020-01 /pmc/articles/PMC7003747/ /pubmed/31652367 http://dx.doi.org/10.1111/cmi.13129 Text en © 2019 The Authors. Cellular Microbiology published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Bodinier, Romain
Leiba, Jade
Sabra, Ayman
Jauslin, Tania N.
Lamrabet, Otmane
Guilhen, Cyril
Marchetti, Anna
Iwade, Yumi
Kawata, Takefumi
Lima, Wanessa C.
Cosson, Pierre
LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title_full LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title_fullStr LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title_full_unstemmed LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title_short LrrkA, a kinase with leucine‐rich repeats, links folate sensing with Kil2 activity and intracellular killing
title_sort lrrka, a kinase with leucine‐rich repeats, links folate sensing with kil2 activity and intracellular killing
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7003747/
https://www.ncbi.nlm.nih.gov/pubmed/31652367
http://dx.doi.org/10.1111/cmi.13129
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