» Articles » PMID: 35242578

Expression Signature of the Leigh Syndrome French-Canadian Type

Overview
Specialty Endocrinology
Date 2022 Mar 4
PMID 35242578
Authors
Affiliations
Soon will be listed here.
Abstract

As a result of a founder effect, a Leigh syndrome variant called Leigh syndrome, French-Canadian type (LSFC, MIM / 220,111) is more frequent in Saguenay-Lac-Saint-Jean (SLSJ), a geographically isolated region on northeastern Quebec, Canada. LSFC is a rare autosomal recessive mitochondrial neurodegenerative disorder due to damage in mitochondrial energy production. LSFC is caused by pathogenic variants in the nuclear gene leucine-rich pentatricopeptide repeat-containing (). Despite progress understanding the molecular mode of action of gene, there is no treatment for this disease. The present study aims to identify the biological pathways altered in the LSFC disorder through microarray-based transcriptomic profile analysis of twelve LSFC cell lines compared to twelve healthy ones, followed by gene ontology (GO) and pathway analyses. A set of 84 significantly differentially expressed genes were obtained ( ≥ 0.05; Fold change (Flc) ≥ 1.5). 45 genes were more expressed (53.57%) in LSFC cell lines compared to controls and 39 (46.43%) had lower expression levels. Gene ontology analysis highlighted altered expression of genes involved in the mitochondrial respiratory chain and energy production, glucose and lipids metabolism, oncogenesis, inflammation and immune response, cell growth and apoptosis, transcription, and signal transduction. Considering the metabolic nature of LSFC disease, genes included in the mitochondrial respiratory chain and energy production cluster stood out as the most important ones to be involved in LSFC mitochondrial disorder. In addition, the protein-protein interaction network indicated a strong interaction between the genes included in this cluster. The mitochondrial gene (NADH dehydrogenase [ubiquinone] 1 alpha subcomplex, 4-like 2), with higher expression in LSFC cells, represents a target for functional studies to explain the role of this gene in LSFC disease. This work provides, for the first time, the LSFC gene expression profile in fibroblasts isolated from affected individuals. This represents a valuable resource to understand the pathogenic basis and consequences of dysfunction.

Citing Articles

The flexible chain: regulation of structure and activity of ETC complexes defines rate of ATP synthesis and sites of superoxide generation.

Bochkova Z, Baizhumanov A, Yusipovich A, Morozova K, Nikelshparg E, Fedotova A Biophys Rev. 2025; 17(1):55-88.

PMID: 40060020 PMC: 11885220. DOI: 10.1007/s12551-025-01270-5.


Identification of Key Disulfidptosis-Related Genes and Their Association with Gene Expression Subtypes in Crohn's Disease.

Fu M, Aihemaiti D, Fu H, Li N, Yuan Y, Ye M J Inflamm Res. 2024; 17:3655-3670.

PMID: 38863903 PMC: 11166158. DOI: 10.2147/JIR.S458951.


Impact of the m.13513G>A Variant on the Functions of the OXPHOS System and Cell Retrograde Signaling.

Kidere D, Zayakin P, Livcane D, Makrecka-Kuka M, Stavusis J, Lace B Curr Issues Mol Biol. 2023; 45(3):1794-1809.

PMID: 36975485 PMC: 10047405. DOI: 10.3390/cimb45030115.


Peroxisomal regulation of energy homeostasis: Effect on obesity and related metabolic disorders.

Kleiboeker B, Lodhi I Mol Metab. 2022; 65:101577.

PMID: 35988716 PMC: 9442330. DOI: 10.1016/j.molmet.2022.101577.

References
1.
Smoot M, Ono K, Ruscheinski J, Wang P, Ideker T . Cytoscape 2.8: new features for data integration and network visualization. Bioinformatics. 2010; 27(3):431-2. PMC: 3031041. DOI: 10.1093/bioinformatics/btq675. View

2.
Vandesompele J, De Preter K, Pattyn F, Poppe B, Van Roy N, De Paepe A . Accurate normalization of real-time quantitative RT-PCR data by geometric averaging of multiple internal control genes. Genome Biol. 2002; 3(7):RESEARCH0034. PMC: 126239. DOI: 10.1186/gb-2002-3-7-research0034. View

3.
Vafai S, Mootha V . Mitochondrial disorders as windows into an ancient organelle. Nature. 2012; 491(7424):374-83. DOI: 10.1038/nature11707. View

4.
Burelle Y, Bemeur C, Rivard M, Legault J, Boucher G, Morin C . Mitochondrial vulnerability and increased susceptibility to nutrient-induced cytotoxicity in fibroblasts from leigh syndrome French canadian patients. PLoS One. 2015; 10(3):e0120767. PMC: 4383560. DOI: 10.1371/journal.pone.0120767. View

5.
Mootha V, Lepage P, Miller K, Bunkenborg J, Reich M, Hjerrild M . Identification of a gene causing human cytochrome c oxidase deficiency by integrative genomics. Proc Natl Acad Sci U S A. 2003; 100(2):605-10. PMC: 141043. DOI: 10.1073/pnas.242716699. View