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MicroRNA-211 Regulates Oxidative Phosphorylation and Energy Metabolism in Human Vitiligo
Anupama Sahoo1, Bongyong Lee1, Katia Boniface2
1Sanford Burnham Prebys Medical Discovery Institute, 6400 Sanger Road, Orlando, Florida, USA.
Abstract:
Vitiligo is a common chronic skin disorder characterized by loss of epidermal melanocytes and progressive depigmentation. Vitiligo has complex immune, genetic, environmental, and biochemical causes, but the exact molecular mechanisms of vitiligo development and progression, particularly those related to metabolic control, are poorly understood. In this study we characterized the human vitiligo cell line PIG3V and the normal human melanocyte line HEM-l by RNA sequencing, targeted metabolomics, and shotgun lipidomics. Melanocyte-enriched microRNA-211, a known metabolic switch in nonpigmented melanoma cells, was severely down-regulated in vitiligo cell line PIG3V and skin biopsy samples from vitiligo patients, whereas its predicted targets PPARGC1A, RRM2, and TAOK1 were reciprocally up-regulated. microRNA-211 binds to PGC1-α 3' untranslated region locus and represses it. Although mitochondrial numbers were constant, mitochondrial complexes I, II, and IV and respiratory responses were defective in vitiligo cells. Nanoparticle-coated microRNA-211 partially augmented the oxygen consumption rate in PIG3V cells. The lower oxygen consumption rate, changes in lipid and metabolite profiles, and increased reactive oxygen species production observed in vitiligo cells appear to be partly due to abnormal regulation of microRNA-211 and its target genes. These genes represent potential biomarkers and therapeutic targets in human vitiligo.
Insights
Vitiligo involves metabolic dysregulation linked to microRNA-211. Reduced microRNA-211 impacts mitochondrial function and reactive oxygen species, offering potential therapeutic targets for vitiligo.
Area of Science:
- Dermatology
- Molecular Biology
- Biochemistry
Background:
- Vitiligo is a chronic skin depigmentation disorder with poorly understood molecular mechanisms.
- Metabolic control and its role in vitiligo pathogenesis require further investigation.
Purpose of the Study:
- To characterize molecular and metabolic differences between vitiligo and normal melanocytes.
- To investigate the role of microRNA-211 in vitiligo pathogenesis.
Main Methods:
- RNA sequencing
- Targeted metabolomics
- Shotgun lipidomics
- Analysis of microRNA-211 and its targets (PPARGC1A, RRM2, TAOK1)
Main Results:
- Vitiligo cells exhibit down-regulation of microRNA-211 and up-regulation of its targets.
- Mitochondrial respiratory complexes and responses are defective in vitiligo cells.
- Abnormal microRNA-211 regulation contributes to metabolic changes and increased reactive oxygen species in vitiligo.
Conclusions:
- microRNA-211 and its target genes are implicated in vitiligo pathogenesis.
- These genes represent potential biomarkers and therapeutic targets for vitiligo.
- Metabolic dysregulation is a key feature of vitiligo.
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