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Genotyping Single Nucleotide Polymorphisms in the Mitochondrial Genome by Pyrosequencing
Published on: February 10, 2023
Mitochondrial DNA A3243G variant-associated retinopathy: Current perspectives and clinical implications
Razek Georges Coussa1, Sumit Parikh2, Elias I Traboulsi3
1Department of Ophthalmology and Visual Sciences, Carver College of Medicine, University of Iowa, Iowa City, IA, USA.
Abstract:
Cellular function and survival are critically dependent on the proper functionality of the mitochondrion. Neurodegenerative cellular processes including cellular adenosine triphosphate production, intermediary metabolism control, and apoptosis regulation are all mitochondrially mediated. The A to G transition at position 3243 in the mitochondrial MTTL1 gene that encodes for the leucine transfer RNA (m.3243A>G) causes a variety of diseases, including maternally inherited loss of hearing and diabetes syndrome (MIDD), mitochondrial encephalopathy, lactic acidosis, and stroke-like episodes syndrome (MELAS). Ophthalmological findings-including posterior sub-capsular cataract, ptosis, external ophthalmoplegia, and pigmentary retinopathy- have all been associated with the m.3243A>G variant. Pigmentary retinopathy is, however, the most common ocular finding, occurring in 38% to 86% of cases. To date, little is known about the pathogenesis, natural history, and heteroplasmic and phenotypic correlations of m.3243A>G-associated pigmentary retinopathy. We summarize the current understanding of mitochondrial genetics and pathogenesis of some associated diseases. We then review the pathophysiology, histology, clinical features, treatment, and important ocular and systemic phenotypic manifestations of m.3243A>G variant associated retinopathy. Mitochondrial diseases require a multidisciplinary team approach to ensure effective treatment, regular follow-up, and accurate genetic counseling.
Insights
The m.3243A>G mitochondrial DNA mutation is linked to pigmentary retinopathy, a common ocular issue in patients with MELAS and MIDD. Further research is needed to understand its pathogenesis and clinical correlations.
Area of Science:
- Mitochondrial genetics
- Ophthalmology
- Neurodegenerative diseases
Background:
- Mitochondrial function is crucial for cellular survival and energy production.
- The m.3243A>G mutation in the MTTL1 gene is associated with mitochondrial diseases like MELAS and MIDD.
- Ophthalmological manifestations are common in m.3243A>G variant carriers, with pigmentary retinopathy being the most prevalent.
Purpose of the Study:
- To review the current understanding of m.3243A>G-associated pigmentary retinopathy.
- To explore its pathophysiology, clinical features, and treatment.
- To highlight the importance of a multidisciplinary approach for managing mitochondrial diseases.
Main Methods:
- Literature review of mitochondrial genetics and associated diseases.
- Summary of current knowledge on m.3243A>G variant.
- Analysis of pathophysiology, histology, clinical features, and phenotypic manifestations.
Main Results:
- Pigmentary retinopathy occurs in 38-86% of individuals with the m.3243A>G variant.
- The exact pathogenesis, natural history, and phenotypic correlations of this retinopathy remain incompletely understood.
- Ocular findings include cataract, ptosis, and external ophthalmoplegia.
Conclusions:
- Mitochondrial diseases, including those with pigmentary retinopathy, necessitate a multidisciplinary team approach.
- Effective management requires regular follow-up and accurate genetic counseling.
- Further research is essential to elucidate the complexities of m.3243A>G-associated retinopathy.
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