Cargando…
Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1?
BACKGROUND: Pyridoxine-dependent epilepsy (PDE) is due to biallelic variants in ALDH7A1 (PDE-ALDH7A1). ALDH7A1 encodes α-aminoadipic semialdehyde dehydrogenase in lysine catabolism. We investigated the gamma aminobutyric acid (GABA) metabolism and energy production pathways in human PDE-ALDH7A1 and...
Autores principales: | , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425566/ https://www.ncbi.nlm.nih.gov/pubmed/34495967 http://dx.doi.org/10.1371/journal.pone.0257073 |
_version_ | 1783749872722116608 |
---|---|
author | Minenkova, Anastasia Jansen, Erwin E. W. Cameron, Jessie Barto, Rob Hurd, Thomas MacNeil, Lauren Salomons, Gajja S. Mercimek-Andrews, Saadet |
author_facet | Minenkova, Anastasia Jansen, Erwin E. W. Cameron, Jessie Barto, Rob Hurd, Thomas MacNeil, Lauren Salomons, Gajja S. Mercimek-Andrews, Saadet |
author_sort | Minenkova, Anastasia |
collection | PubMed |
description | BACKGROUND: Pyridoxine-dependent epilepsy (PDE) is due to biallelic variants in ALDH7A1 (PDE-ALDH7A1). ALDH7A1 encodes α-aminoadipic semialdehyde dehydrogenase in lysine catabolism. We investigated the gamma aminobutyric acid (GABA) metabolism and energy production pathways in human PDE-ALDH7A1 and its knock-out aldh7a1 zebrafish model. METHODS: We measured GABA pathway, and tricarboxylic acid cycle metabolites and electron transport chain activities in patients with PDE-ALDH7A1 and in knock-out aldh7a1 zebrafish. RESULTS: We report results of three patients with PDE-ALDH7A1: low paired complex I+II and complex II+III and individual complex IV activities in muscle biopsy in patient 1 (likely more severe phenotype); significantly elevated CSF glutamate in the GABA pathway and elevated CSF citrate, succinate, isocitrate and α-ketoglutarate in the TCA cycle in patient 3 (likely more severe phenotype); and normal CSF GABA pathway and TCA cycle metabolites on long-term pyridoxine therapy in patient 2 (likely milder phenotype). All GABA pathway metabolites (γ-hydroxybutyrate, glutamine, glutamate, total GABA, succinic semialdehyde) and TCA cycle metabolites (citrate, malate, fumarate, isocitrate, lactate) were significantly low in the homozygous knock-out aldh7a1 zebrafish compared to the wildtype zebrafish. Homozygous knock-out aldh7a1 zebrafish had decreased electron transport chain enzyme activities compared to wildtype zebrafish. DISCUSSION: We report impaired electron transport chain function, accumulation of glutamate in the central nervous system and TCA cycle dysfunction in human PDE-ALDH7A1 and abnormal GABA pathway, TCA cycle and electron transport chain in knock-out aldh7a1 zebrafish. Central nervous system glutamate toxicity and impaired energy production may play important roles in the disease neuropathogenesis and severity in human PDE-ALDH7A1. |
format | Online Article Text |
id | pubmed-8425566 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-84255662021-09-09 Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? Minenkova, Anastasia Jansen, Erwin E. W. Cameron, Jessie Barto, Rob Hurd, Thomas MacNeil, Lauren Salomons, Gajja S. Mercimek-Andrews, Saadet PLoS One Research Article BACKGROUND: Pyridoxine-dependent epilepsy (PDE) is due to biallelic variants in ALDH7A1 (PDE-ALDH7A1). ALDH7A1 encodes α-aminoadipic semialdehyde dehydrogenase in lysine catabolism. We investigated the gamma aminobutyric acid (GABA) metabolism and energy production pathways in human PDE-ALDH7A1 and its knock-out aldh7a1 zebrafish model. METHODS: We measured GABA pathway, and tricarboxylic acid cycle metabolites and electron transport chain activities in patients with PDE-ALDH7A1 and in knock-out aldh7a1 zebrafish. RESULTS: We report results of three patients with PDE-ALDH7A1: low paired complex I+II and complex II+III and individual complex IV activities in muscle biopsy in patient 1 (likely more severe phenotype); significantly elevated CSF glutamate in the GABA pathway and elevated CSF citrate, succinate, isocitrate and α-ketoglutarate in the TCA cycle in patient 3 (likely more severe phenotype); and normal CSF GABA pathway and TCA cycle metabolites on long-term pyridoxine therapy in patient 2 (likely milder phenotype). All GABA pathway metabolites (γ-hydroxybutyrate, glutamine, glutamate, total GABA, succinic semialdehyde) and TCA cycle metabolites (citrate, malate, fumarate, isocitrate, lactate) were significantly low in the homozygous knock-out aldh7a1 zebrafish compared to the wildtype zebrafish. Homozygous knock-out aldh7a1 zebrafish had decreased electron transport chain enzyme activities compared to wildtype zebrafish. DISCUSSION: We report impaired electron transport chain function, accumulation of glutamate in the central nervous system and TCA cycle dysfunction in human PDE-ALDH7A1 and abnormal GABA pathway, TCA cycle and electron transport chain in knock-out aldh7a1 zebrafish. Central nervous system glutamate toxicity and impaired energy production may play important roles in the disease neuropathogenesis and severity in human PDE-ALDH7A1. Public Library of Science 2021-09-08 /pmc/articles/PMC8425566/ /pubmed/34495967 http://dx.doi.org/10.1371/journal.pone.0257073 Text en © 2021 Minenkova et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited. |
spellingShingle | Research Article Minenkova, Anastasia Jansen, Erwin E. W. Cameron, Jessie Barto, Rob Hurd, Thomas MacNeil, Lauren Salomons, Gajja S. Mercimek-Andrews, Saadet Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title | Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title_full | Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title_fullStr | Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title_full_unstemmed | Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title_short | Is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in ALDH7A1? |
title_sort | is impaired energy production a novel insight into the pathogenesis of pyridoxine-dependent epilepsy due to biallelic variants in aldh7a1? |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8425566/ https://www.ncbi.nlm.nih.gov/pubmed/34495967 http://dx.doi.org/10.1371/journal.pone.0257073 |
work_keys_str_mv | AT minenkovaanastasia isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT jansenerwinew isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT cameronjessie isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT bartorob isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT hurdthomas isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT macneillauren isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT salomonsgajjas isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 AT mercimekandrewssaadet isimpairedenergyproductionanovelinsightintothepathogenesisofpyridoxinedependentepilepsyduetobiallelicvariantsinaldh7a1 |