DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6

Abstract Background The production of reactive oxygen species (ROS) during pneumococcal meningitis (PM) leads to severe DNA damage in the neurons and is the major cause of cell death during infection. Hence, the use of antioxidants as adjuvant therapy has been investigated. Previous studies have dem...

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Main Authors: Leonam G. Coutinho, Ana Helena Sales de Oliveira, Matthias Witwer, Stephen L. Leib, Lucymara F. Agnez-Lima
Format: Article
Language:English
Published: BMC 2017-12-01
Series:Journal of Neuroinflammation
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12974-017-1020-5
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spelling doaj-1b4634d3141a49dba614db0b67d01a0c2020-11-24T23:24:42ZengBMCJournal of Neuroinflammation1742-20942017-12-0114111010.1186/s12974-017-1020-5DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6Leonam G. Coutinho0Ana Helena Sales de Oliveira1Matthias Witwer2Stephen L. Leib3Lucymara F. Agnez-Lima4Departamento de Biologia Celular e Genética, Centro de Biociências, Universidade Federal do Rio Grande do Norte, UFRNDepartamento de Bioquímica, Instituto de Química, Universidade de São Paulo, USPInstitute for Infectious Diseases, University of BernInstitute for Infectious Diseases, University of BernDepartamento de Biologia Celular e Genética, Centro de Biociências, Universidade Federal do Rio Grande do Norte, UFRNAbstract Background The production of reactive oxygen species (ROS) during pneumococcal meningitis (PM) leads to severe DNA damage in the neurons and is the major cause of cell death during infection. Hence, the use of antioxidants as adjuvant therapy has been investigated. Previous studies have demonstrated the possible participation of apurinic/apyrimidinic endonuclease (APE1) during PM. The aims of this study were to investigate the APE1 expression in the cortical and hippocampal tissues of infant Wistar rats infected with Streptococcus pneumoniae and its association with cell death and understand the role of vitamin B6 (vitB6) as a protective factor against cell death. Methods APE1 expression and oxidative stress markers were analyzed at two-time points, 20 and 24 h post infection (p.i.), in the cortex (CX) and hippocampus (HC) of rats supplemented with vitB6. Statistical analyses were performed by the nonparametric Kruskal–Wallis test using Dunn’s post test. Results Our results showed high protein levels of APE1 in CX and HC of infected rats. In the CX, at 20 h p.i., vitB6 supplementation led to the reduction of expression of APE1 and apoptosis-inducing factor, while no significant changes in the transcript levels of caspase-3 were observed. Furthermore, levels of carbonyl content and glutamate in the CX were reduced by vitB6 supplementation at the same time point of 20 h p.i.. Since our data showed a significant effect of vitB6 on the CX at 20 h p.i. rather than that at 24 h p.i., we evaluated the effect of administering a second dose of vitB6 at 18 h p.i. and sacrifice at 24 h p.i.. Reduction in the oxidative stress and APE1 levels were observed, although the latter was not significant. Although the levels of APE1 was not significantly changed in the HC with vitB6 adjuvant therapy, vitB6 supplementation prevented the formation of the truncated form of APE1 (34 kDa) that is associated with apoptosis. Conclusions Our data suggest that PM affects APE1 expression, which can be modulated by vitB6. Additionally, vitB6 contributes to the reduction of glutamate and ROS levels. Besides the potential to reduce cell death and oxidative stress during neuroinflammation, vitB6 showed enhanced effect on the CX than on the HC during PM.http://link.springer.com/article/10.1186/s12974-017-1020-5APE1Pneumococcal meningitisVitamin B6CortexHippocampusOxidative stress
collection DOAJ
language English
format Article
sources DOAJ
author Leonam G. Coutinho
Ana Helena Sales de Oliveira
Matthias Witwer
Stephen L. Leib
Lucymara F. Agnez-Lima
spellingShingle Leonam G. Coutinho
Ana Helena Sales de Oliveira
Matthias Witwer
Stephen L. Leib
Lucymara F. Agnez-Lima
DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
Journal of Neuroinflammation
APE1
Pneumococcal meningitis
Vitamin B6
Cortex
Hippocampus
Oxidative stress
author_facet Leonam G. Coutinho
Ana Helena Sales de Oliveira
Matthias Witwer
Stephen L. Leib
Lucymara F. Agnez-Lima
author_sort Leonam G. Coutinho
title DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
title_short DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
title_full DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
title_fullStr DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
title_full_unstemmed DNA repair protein APE1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin B6
title_sort dna repair protein ape1 is involved in host response during pneumococcal meningitis and its expression can be modulated by vitamin b6
publisher BMC
series Journal of Neuroinflammation
issn 1742-2094
publishDate 2017-12-01
description Abstract Background The production of reactive oxygen species (ROS) during pneumococcal meningitis (PM) leads to severe DNA damage in the neurons and is the major cause of cell death during infection. Hence, the use of antioxidants as adjuvant therapy has been investigated. Previous studies have demonstrated the possible participation of apurinic/apyrimidinic endonuclease (APE1) during PM. The aims of this study were to investigate the APE1 expression in the cortical and hippocampal tissues of infant Wistar rats infected with Streptococcus pneumoniae and its association with cell death and understand the role of vitamin B6 (vitB6) as a protective factor against cell death. Methods APE1 expression and oxidative stress markers were analyzed at two-time points, 20 and 24 h post infection (p.i.), in the cortex (CX) and hippocampus (HC) of rats supplemented with vitB6. Statistical analyses were performed by the nonparametric Kruskal–Wallis test using Dunn’s post test. Results Our results showed high protein levels of APE1 in CX and HC of infected rats. In the CX, at 20 h p.i., vitB6 supplementation led to the reduction of expression of APE1 and apoptosis-inducing factor, while no significant changes in the transcript levels of caspase-3 were observed. Furthermore, levels of carbonyl content and glutamate in the CX were reduced by vitB6 supplementation at the same time point of 20 h p.i.. Since our data showed a significant effect of vitB6 on the CX at 20 h p.i. rather than that at 24 h p.i., we evaluated the effect of administering a second dose of vitB6 at 18 h p.i. and sacrifice at 24 h p.i.. Reduction in the oxidative stress and APE1 levels were observed, although the latter was not significant. Although the levels of APE1 was not significantly changed in the HC with vitB6 adjuvant therapy, vitB6 supplementation prevented the formation of the truncated form of APE1 (34 kDa) that is associated with apoptosis. Conclusions Our data suggest that PM affects APE1 expression, which can be modulated by vitB6. Additionally, vitB6 contributes to the reduction of glutamate and ROS levels. Besides the potential to reduce cell death and oxidative stress during neuroinflammation, vitB6 showed enhanced effect on the CX than on the HC during PM.
topic APE1
Pneumococcal meningitis
Vitamin B6
Cortex
Hippocampus
Oxidative stress
url http://link.springer.com/article/10.1186/s12974-017-1020-5
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