Cargando…

Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model

Though succinate accumulation is associated with reactive oxygen species (ROS) production and neuronal injury, which play critical roles in epilepsy, it is unclear whether succinate accumulation contributes to the onset of epilepsy or seizures. We sought to investigate changes in succinate, oxidativ...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Yurong, Zhang, Mengdi, Zhu, Wei, Yu, Jie, Wang, Qiaoyun, Zhang, Jinjin, Cui, Yaru, Pan, Xiaohong, Gao, Xue, Sun, Hongliu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854095/
https://www.ncbi.nlm.nih.gov/pubmed/31707354
http://dx.doi.org/10.1016/j.redox.2019.101365
_version_ 1783470170376765440
author Zhang, Yurong
Zhang, Mengdi
Zhu, Wei
Yu, Jie
Wang, Qiaoyun
Zhang, Jinjin
Cui, Yaru
Pan, Xiaohong
Gao, Xue
Sun, Hongliu
author_facet Zhang, Yurong
Zhang, Mengdi
Zhu, Wei
Yu, Jie
Wang, Qiaoyun
Zhang, Jinjin
Cui, Yaru
Pan, Xiaohong
Gao, Xue
Sun, Hongliu
author_sort Zhang, Yurong
collection PubMed
description Though succinate accumulation is associated with reactive oxygen species (ROS) production and neuronal injury, which play critical roles in epilepsy, it is unclear whether succinate accumulation contributes to the onset of epilepsy or seizures. We sought to investigate changes in succinate, oxidative stress, and mito-SOX levels, as well as mitophagy and neuronal change, in different status epilepticus (SE) rat models. Our results demonstrate that KA-induced SE was accompanied by increased levels of succinate, oxidative stress, and mito-SOX, as well as mitophagy and neuronal degeneration. The similarly increased levels of succinate, oxidative stress, and mito-SOX were also found in pilocarpine-induced SE. Moreover, the reduction of succinate accumulation by the inhibition of succinate dehydrogenase (SDH), malate/aspartate shuttle (MAS), or purine nucleotide cycle (PNC) served to reduce succinate, oxidative stress, and mito-SOX levels, thereby preventing oxidative stress-related neuronal damage and lessening seizure severity. Interestingly, simulating succinate accumulation with succinic acid dimethyl ester may induce succinate accumulation and increased oxidative stress and mito-SOX levels, as well as behavior and seizures in electroencephalograms similar to those observed in rats exposed to KA. Our results indicate that succinate accumulation may contribute to the increased oxidative stress/mitochondrial ROS levels, neuronal degeneration, and SE induced by KA administration. Furthermore, we found that succinate accumulation was mainly due to the inverse catalysis of SDH from fumarate, which was supplemented by the MAS and PNC pathways. These results reveal new insights into the mechanisms underlying SE and that reducing succinate accumulation may be a clinically useful therapeutic target in SE.
format Online
Article
Text
id pubmed-6854095
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-68540952019-11-21 Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model Zhang, Yurong Zhang, Mengdi Zhu, Wei Yu, Jie Wang, Qiaoyun Zhang, Jinjin Cui, Yaru Pan, Xiaohong Gao, Xue Sun, Hongliu Redox Biol Research Paper Though succinate accumulation is associated with reactive oxygen species (ROS) production and neuronal injury, which play critical roles in epilepsy, it is unclear whether succinate accumulation contributes to the onset of epilepsy or seizures. We sought to investigate changes in succinate, oxidative stress, and mito-SOX levels, as well as mitophagy and neuronal change, in different status epilepticus (SE) rat models. Our results demonstrate that KA-induced SE was accompanied by increased levels of succinate, oxidative stress, and mito-SOX, as well as mitophagy and neuronal degeneration. The similarly increased levels of succinate, oxidative stress, and mito-SOX were also found in pilocarpine-induced SE. Moreover, the reduction of succinate accumulation by the inhibition of succinate dehydrogenase (SDH), malate/aspartate shuttle (MAS), or purine nucleotide cycle (PNC) served to reduce succinate, oxidative stress, and mito-SOX levels, thereby preventing oxidative stress-related neuronal damage and lessening seizure severity. Interestingly, simulating succinate accumulation with succinic acid dimethyl ester may induce succinate accumulation and increased oxidative stress and mito-SOX levels, as well as behavior and seizures in electroencephalograms similar to those observed in rats exposed to KA. Our results indicate that succinate accumulation may contribute to the increased oxidative stress/mitochondrial ROS levels, neuronal degeneration, and SE induced by KA administration. Furthermore, we found that succinate accumulation was mainly due to the inverse catalysis of SDH from fumarate, which was supplemented by the MAS and PNC pathways. These results reveal new insights into the mechanisms underlying SE and that reducing succinate accumulation may be a clinically useful therapeutic target in SE. Elsevier 2019-10-31 /pmc/articles/PMC6854095/ /pubmed/31707354 http://dx.doi.org/10.1016/j.redox.2019.101365 Text en © 2019 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Zhang, Yurong
Zhang, Mengdi
Zhu, Wei
Yu, Jie
Wang, Qiaoyun
Zhang, Jinjin
Cui, Yaru
Pan, Xiaohong
Gao, Xue
Sun, Hongliu
Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title_full Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title_fullStr Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title_full_unstemmed Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title_short Succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
title_sort succinate accumulation induces mitochondrial reactive oxygen species generation and promotes status epilepticus in the kainic acid rat model
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6854095/
https://www.ncbi.nlm.nih.gov/pubmed/31707354
http://dx.doi.org/10.1016/j.redox.2019.101365
work_keys_str_mv AT zhangyurong succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT zhangmengdi succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT zhuwei succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT yujie succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT wangqiaoyun succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT zhangjinjin succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT cuiyaru succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT panxiaohong succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT gaoxue succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel
AT sunhongliu succinateaccumulationinducesmitochondrialreactiveoxygenspeciesgenerationandpromotesstatusepilepticusinthekainicacidratmodel