The Q-junction and the inflammatory response are critical pathological and therapeutic factors in CoQ deficiency

Publication date

2022-09

Authors

González-García, Pilar
Díaz-Casado, María Elena
Hidalgo-Gutiérrez, Agustín
Jiménez-Sánchez, Laura
Bakkali, Mohammed
Barriocanal-Casado, Eliana
Escames, Germaine
Chiozzi, Riccardo ZeneziniISNI 0000000507895414
Völlmy, Franziska I.ISNI 0000000507779982
Zaal, Esther AORCID 0000-0001-9890-7345ISNI 0000000492962943

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Advisors

Supervisors

Document Type

Article
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cc_by

Abstract

Defects in Coenzyme Q (CoQ) metabolism have been associated with primary mitochondrial disorders, neurodegenerative diseases and metabolic conditions. The consequences of CoQ deficiency have not been fully addressed, and effective treatment remains challenging. Here, we use mice with primary CoQ deficiency (Coq9R239X), and we demonstrate that CoQ deficiency profoundly alters the Q-junction, leading to extensive changes in the mitochondrial proteome and metabolism in the kidneys and, to a lesser extent, in the brain. CoQ deficiency also induces reactive gliosis, which mediates a neuroinflammatory response, both of which lead to an encephalopathic phenotype. Importantly, treatment with either vanillic acid (VA) or β-resorcylic acid (β-RA), two analogs of the natural precursor for CoQ biosynthesis, partially restores CoQ metabolism, particularly in the kidneys, and induces profound normalization of the mitochondrial proteome and metabolism, ultimately leading to reductions in gliosis, neuroinflammation and spongiosis and, consequently, reversing the phenotype. Together, these results provide key mechanistic insights into defects in CoQ metabolism and identify potential disease biomarkers. Furthermore, our findings clearly indicate that the use of analogs of the CoQ biosynthetic precursor is a promising alternative therapy for primary CoQ deficiency and has potential for use in the treatment of more common neurodegenerative and metabolic diseases that are associated with secondary CoQ deficiency.

Keywords

Coenzyme Q, Mitochondrial disease, Omics, Phenolic compound, Therapy, Organic Chemistry, Clinical Biochemistry

Citation

González-García, P, Díaz-Casado, M E, Hidalgo-Gutiérrez, A, Jiménez-Sánchez, L, Bakkali, M, Barriocanal-Casado, E, Escames, G, Chiozzi, R Z, Völlmy, F, Zaal, E A, Berkers, C R, Heck, A J R & López, L C 2022, 'The Q-junction and the inflammatory response are critical pathological and therapeutic factors in CoQ deficiency', Redox Biology, vol. 55, 102403. https://doi.org/10.1016/j.redox.2022.102403