Cargando…

Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis

Fas-apoptotic inhibitory molecule 2 (Faim2) is a neuron-specific membrane protein and a member of the evolutionary conserved lifeguard apoptosis regulatory gene family. Its neuroprotective effect in acute neurological diseases has been demonstrated in an in vivo model of focal cerebral ischemia. Her...

Descripción completa

Detalles Bibliográficos
Autores principales: Tauber, Simone C., Harms, Kristian, Falkenburger, Björn, Weis, Joachim, Sellhaus, Bernd, Nau, Roland, Schulz, Jörg B., Reich, Arno
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association of Neuropathologists 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3978830/
https://www.ncbi.nlm.nih.gov/pubmed/24335530
http://dx.doi.org/10.1097/NEN.0000000000000020
_version_ 1782310634017259520
author Tauber, Simone C.
Harms, Kristian
Falkenburger, Björn
Weis, Joachim
Sellhaus, Bernd
Nau, Roland
Schulz, Jörg B.
Reich, Arno
author_facet Tauber, Simone C.
Harms, Kristian
Falkenburger, Björn
Weis, Joachim
Sellhaus, Bernd
Nau, Roland
Schulz, Jörg B.
Reich, Arno
author_sort Tauber, Simone C.
collection PubMed
description Fas-apoptotic inhibitory molecule 2 (Faim2) is a neuron-specific membrane protein and a member of the evolutionary conserved lifeguard apoptosis regulatory gene family. Its neuroprotective effect in acute neurological diseases has been demonstrated in an in vivo model of focal cerebral ischemia. Here we show that Faim2 is physiologically expressed in the human brain with a changing pattern in cases of infectious meningoencephalitis.In Faim2-deficient mice, there was increased caspase-associated hippocampal apoptotic cell death and an increased extracellular signal-regulated kinase pattern during acute bacterial meningitis induced by subarachnoid infection with Streptococcus pneumoniae type 3 strain. However, after rescuing the animals by antibiotic treatment, Faim2 deficiency led to increased hippocampal neurogenesis at 7 weeks after infection. This was associated with improved performance of Faim2-deficient mice compared to wild-type littermates in the Morris water maze, a paradigm for hippocampal spatial learning and memory. Thus, Faim2 deficiency aggravated degenerative processes in the acute phase but induced regenerative processes in the repair phase of a mouse model of pneumococcal meningitis. Hence, time-dependent modulation of neuroplasticity by Faim2 may offer a new therapeutic approach for reducing hippocampal neuronal cell death and improving cognitive deficits after bacterial meningitis.
format Online
Article
Text
id pubmed-3978830
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Association of Neuropathologists
record_format MEDLINE/PubMed
spelling pubmed-39788302014-04-08 Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis Tauber, Simone C. Harms, Kristian Falkenburger, Björn Weis, Joachim Sellhaus, Bernd Nau, Roland Schulz, Jörg B. Reich, Arno J Neuropathol Exp Neurol Original Articles Fas-apoptotic inhibitory molecule 2 (Faim2) is a neuron-specific membrane protein and a member of the evolutionary conserved lifeguard apoptosis regulatory gene family. Its neuroprotective effect in acute neurological diseases has been demonstrated in an in vivo model of focal cerebral ischemia. Here we show that Faim2 is physiologically expressed in the human brain with a changing pattern in cases of infectious meningoencephalitis.In Faim2-deficient mice, there was increased caspase-associated hippocampal apoptotic cell death and an increased extracellular signal-regulated kinase pattern during acute bacterial meningitis induced by subarachnoid infection with Streptococcus pneumoniae type 3 strain. However, after rescuing the animals by antibiotic treatment, Faim2 deficiency led to increased hippocampal neurogenesis at 7 weeks after infection. This was associated with improved performance of Faim2-deficient mice compared to wild-type littermates in the Morris water maze, a paradigm for hippocampal spatial learning and memory. Thus, Faim2 deficiency aggravated degenerative processes in the acute phase but induced regenerative processes in the repair phase of a mouse model of pneumococcal meningitis. Hence, time-dependent modulation of neuroplasticity by Faim2 may offer a new therapeutic approach for reducing hippocampal neuronal cell death and improving cognitive deficits after bacterial meningitis. American Association of Neuropathologists 2014-01 2013-12-19 /pmc/articles/PMC3978830/ /pubmed/24335530 http://dx.doi.org/10.1097/NEN.0000000000000020 Text en Copyright © 2013 by the American Association of Neuropathologists, Inc. http://creativecommons.org/licenses/by-nc-nd/3.0 This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivitives 3.0 License, where it is permissible to download and share the work provided it is properly cited. The work cannot be changed in any way or used commercially.
spellingShingle Original Articles
Tauber, Simone C.
Harms, Kristian
Falkenburger, Björn
Weis, Joachim
Sellhaus, Bernd
Nau, Roland
Schulz, Jörg B.
Reich, Arno
Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title_full Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title_fullStr Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title_full_unstemmed Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title_short Modulation of Hippocampal Neuroplasticity by Fas/CD95 Regulatory Protein 2 (Faim2) in the Course of Bacterial Meningitis
title_sort modulation of hippocampal neuroplasticity by fas/cd95 regulatory protein 2 (faim2) in the course of bacterial meningitis
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3978830/
https://www.ncbi.nlm.nih.gov/pubmed/24335530
http://dx.doi.org/10.1097/NEN.0000000000000020
work_keys_str_mv AT taubersimonec modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT harmskristian modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT falkenburgerbjorn modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT weisjoachim modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT sellhausbernd modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT nauroland modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT schulzjorgb modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis
AT reicharno modulationofhippocampalneuroplasticitybyfascd95regulatoryprotein2faim2inthecourseofbacterialmeningitis