Cargando…

GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii

The immune privileged nature of the CNS can make it vulnerable to chronic and latent infections. Little is known about the effects of lifelong brain infections, and thus inflammation, on the neurological health of the host. Toxoplasma gondii is a parasite that can infect any mammalian nucleated cell...

Descripción completa

Detalles Bibliográficos
Autores principales: David, Clément N., Frias, Elma S., Szu, Jenny I., Vieira, Philip A., Hubbard, Jacqueline A., Lovelace, Jonathan, Michael, Marena, Worth, Danielle, McGovern, Kathryn E., Ethell, Iryna M., Stanley, B. Glenn, Korzus, Edward, Fiacco, Todd A., Binder, Devin K., Wilson, Emma H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4900626/
https://www.ncbi.nlm.nih.gov/pubmed/27281462
http://dx.doi.org/10.1371/journal.ppat.1005643
_version_ 1782436673189052416
author David, Clément N.
Frias, Elma S.
Szu, Jenny I.
Vieira, Philip A.
Hubbard, Jacqueline A.
Lovelace, Jonathan
Michael, Marena
Worth, Danielle
McGovern, Kathryn E.
Ethell, Iryna M.
Stanley, B. Glenn
Korzus, Edward
Fiacco, Todd A.
Binder, Devin K.
Wilson, Emma H.
author_facet David, Clément N.
Frias, Elma S.
Szu, Jenny I.
Vieira, Philip A.
Hubbard, Jacqueline A.
Lovelace, Jonathan
Michael, Marena
Worth, Danielle
McGovern, Kathryn E.
Ethell, Iryna M.
Stanley, B. Glenn
Korzus, Edward
Fiacco, Todd A.
Binder, Devin K.
Wilson, Emma H.
author_sort David, Clément N.
collection PubMed
description The immune privileged nature of the CNS can make it vulnerable to chronic and latent infections. Little is known about the effects of lifelong brain infections, and thus inflammation, on the neurological health of the host. Toxoplasma gondii is a parasite that can infect any mammalian nucleated cell with average worldwide seroprevalence rates of 30%. Infection by Toxoplasma is characterized by the lifelong presence of parasitic cysts within neurons in the brain, requiring a competent immune system to prevent parasite reactivation and encephalitis. In the immunocompetent individual, Toxoplasma infection is largely asymptomatic, however many recent studies suggest a strong correlation with certain neurodegenerative and psychiatric disorders. Here, we demonstrate a significant reduction in the primary astrocytic glutamate transporter, GLT-1, following infection with Toxoplasma. Using microdialysis of the murine frontal cortex over the course of infection, a significant increase in extracellular concentrations of glutamate is observed. Consistent with glutamate dysregulation, analysis of neurons reveal changes in morphology including a reduction in dendritic spines, VGlut1 and NeuN immunoreactivity. Furthermore, behavioral testing and EEG recordings point to significant changes in neuronal output. Finally, these changes in neuronal connectivity are dependent on infection-induced downregulation of GLT-1 as treatment with the ß-lactam antibiotic ceftriaxone, rescues extracellular glutamate concentrations, neuronal pathology and function. Altogether, these data demonstrate that following an infection with T. gondii, the delicate regulation of glutamate by astrocytes is disrupted and accounts for a range of deficits observed in chronic infection.
format Online
Article
Text
id pubmed-4900626
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-49006262016-06-24 GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii David, Clément N. Frias, Elma S. Szu, Jenny I. Vieira, Philip A. Hubbard, Jacqueline A. Lovelace, Jonathan Michael, Marena Worth, Danielle McGovern, Kathryn E. Ethell, Iryna M. Stanley, B. Glenn Korzus, Edward Fiacco, Todd A. Binder, Devin K. Wilson, Emma H. PLoS Pathog Research Article The immune privileged nature of the CNS can make it vulnerable to chronic and latent infections. Little is known about the effects of lifelong brain infections, and thus inflammation, on the neurological health of the host. Toxoplasma gondii is a parasite that can infect any mammalian nucleated cell with average worldwide seroprevalence rates of 30%. Infection by Toxoplasma is characterized by the lifelong presence of parasitic cysts within neurons in the brain, requiring a competent immune system to prevent parasite reactivation and encephalitis. In the immunocompetent individual, Toxoplasma infection is largely asymptomatic, however many recent studies suggest a strong correlation with certain neurodegenerative and psychiatric disorders. Here, we demonstrate a significant reduction in the primary astrocytic glutamate transporter, GLT-1, following infection with Toxoplasma. Using microdialysis of the murine frontal cortex over the course of infection, a significant increase in extracellular concentrations of glutamate is observed. Consistent with glutamate dysregulation, analysis of neurons reveal changes in morphology including a reduction in dendritic spines, VGlut1 and NeuN immunoreactivity. Furthermore, behavioral testing and EEG recordings point to significant changes in neuronal output. Finally, these changes in neuronal connectivity are dependent on infection-induced downregulation of GLT-1 as treatment with the ß-lactam antibiotic ceftriaxone, rescues extracellular glutamate concentrations, neuronal pathology and function. Altogether, these data demonstrate that following an infection with T. gondii, the delicate regulation of glutamate by astrocytes is disrupted and accounts for a range of deficits observed in chronic infection. Public Library of Science 2016-06-09 /pmc/articles/PMC4900626/ /pubmed/27281462 http://dx.doi.org/10.1371/journal.ppat.1005643 Text en © 2016 David 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
David, Clément N.
Frias, Elma S.
Szu, Jenny I.
Vieira, Philip A.
Hubbard, Jacqueline A.
Lovelace, Jonathan
Michael, Marena
Worth, Danielle
McGovern, Kathryn E.
Ethell, Iryna M.
Stanley, B. Glenn
Korzus, Edward
Fiacco, Todd A.
Binder, Devin K.
Wilson, Emma H.
GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title_full GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title_fullStr GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title_full_unstemmed GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title_short GLT-1-Dependent Disruption of CNS Glutamate Homeostasis and Neuronal Function by the Protozoan Parasite Toxoplasma gondii
title_sort glt-1-dependent disruption of cns glutamate homeostasis and neuronal function by the protozoan parasite toxoplasma gondii
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4900626/
https://www.ncbi.nlm.nih.gov/pubmed/27281462
http://dx.doi.org/10.1371/journal.ppat.1005643
work_keys_str_mv AT davidclementn glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT friaselmas glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT szujennyi glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT vieiraphilipa glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT hubbardjacquelinea glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT lovelacejonathan glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT michaelmarena glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT worthdanielle glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT mcgovernkathryne glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT ethellirynam glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT stanleybglenn glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT korzusedward glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT fiaccotodda glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT binderdevink glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii
AT wilsonemmah glt1dependentdisruptionofcnsglutamatehomeostasisandneuronalfunctionbytheprotozoanparasitetoxoplasmagondii