Modeling Glutaric Aciduria Type I in human neuroblastoma cells recapitulates neuronal damage that can be rescued by gene replacement

A. Mateu-Bosch, E. Segur-Bailach, J. García-Villoria, S. Gea-Sorlí, I. Ruiz, J. del Rey, J. Camps, M. Guitart-Mampel, G. Garrabou, F. Tort, A. Ribes, C. Fillat*

*Autor corresponent d’aquest treball

Producció científica: Contribució a revistaArticleRecercaAvaluat per experts

Resum

Glutaric Aciduria type I (GA1) is a rare neurometabolic disorder caused by mutations in the GDCH gene encoding for glutaryl-CoA dehydrogenase (GCDH) in the catabolic pathway of lysine, hydroxylysine and tryptophan. GCDH deficiency leads to increased concentrations of glutaric acid (GA) and 3-hydroxyglutaric acid (3-OHGA) in body fluids and tissues. These metabolites are the main triggers of brain damage. Mechanistic studies supporting neurotoxicity in mouse models have been conducted. However, the different vulnerability to some stressors between mouse and human brain cells reveals the need to have a reliable human neuronal model to study GA1 pathogenesis. In the present work we generated a GCDH knockout (KO) in the human neuroblastoma cell line SH-SY5Y by CRISPR/Cas9 technology. SH-SY5Y-GCDH KO cells accumulate GA, 3-OHGA, and glutarylcarnitine when exposed to lysine overload. GA or lysine treatment triggered neuronal damage in GCDH deficient cells. SH-SY5Y-GCDH KO cells also displayed features of GA1 pathogenesis such as increased oxidative stress vulnerability. Restoration of the GCDH activity by gene replacement rescued neuronal alterations. Thus, our findings provide a human neuronal cellular model of GA1 to study this disease and show the potential of gene therapy to rescue GCDH deficiency.
Idioma originalAnglès
Pàgines (de-a)12-18
Nombre de pàgines7
RevistaGene Therapy
Volum31
Número1-2
DOIs
Estat de la publicacióPublicada - de gen. 2024

SDG de les Nacions Unides

Aquest resultat contribueix als següents objectius de desenvolupament sostenible.

  1. ODG 3 – Bona salut i benestar
    ODG 3 – Bona salut i benestar

Fingerprint

Navegar pels temes de recerca de 'Modeling Glutaric Aciduria Type I in human neuroblastoma cells recapitulates neuronal damage that can be rescued by gene replacement'. Junts formen un fingerprint únic.

Com citar-ho