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Updated: Dec 21, 2025

Genotyping Single Nucleotide Polymorphisms in the Mitochondrial Genome by Pyrosequencing
Published on: February 10, 2023
Clinical phenotype of mitochondrial diabetes due to rare mitochondrial DNA mutations
Anne-Gaëlle Decoux-Poullot1, Sylvie Bannwarth2, Vincent Procaccio3
1Service d'endocrinologie, diabétologie et médecine de la reproduction, hôpital de l'Archet 2, université Côte d'Azur, CHU de Nice, Nice, France.
Objective:
While the most frequent mutation responsible for mitochondrial diabetes is the point mutation m.3243 A>G of mitochondrial DNA (mtDNA), few data are available about the role of rare mtDNA mutations in the pathophysiology of diabetes. The main objective of our study was to describe the phenotypic characteristics of patients suffering from diabetes linked to rare mtDNA mutations.
Research Design And Methods:
We performed a post-hoc analysis of a prospective multicenter cohort of 743 patients with mitochondrial disorder (previously published by the French Network of Mitochondrial Diseases), associated to a literature review of the PubMed database from 1992 to May 2016. We extracted all reported patients with diabetes and identified rare mtDNA mutations and described their clinical and metabolic phenotypes.
Results:
The 50 identified patients (10 from the princeps study; 40 from the review of the literature) showed a heterogeneous metabolic phenotype in terms of age, symptoms prior to diagnosis, treatments, and associated clinical and biological signs. However, neurological symptoms were more frequent in case of rare mtDNA mutations compared to the classical m.3243 A>G mutation (P=0.024). In contrast, deafness (65% vs. 95%, P=3.7E-5), macular pattern dystrophy (20% vs. 86%, P=1.6E-10) and nephropathy (8% vs. 28%, P=0.018) were significantly less frequent than in case of the classical m.3243 A>G mutation.
Conclusion:
Although no specific metabolic phenotype could be identified suggesting or eliminating implication of rare mtDNA mutations in diabetes, clinical phenotypes featured more frequent neurological signs.
Insights
Rare mitochondrial DNA (mtDNA) mutations can cause diabetes, often presenting with more neurological symptoms than the common m.3243 A>G mutation. These rare mutations lead to varied clinical and metabolic presentations in patients with mitochondrial diabetes.
Area of Science:
- Genetics and Molecular Biology
- Endocrinology
- Neurology
Background:
- The m.3243 A>G mutation in mitochondrial DNA (mtDNA) is a common cause of mitochondrial diabetes.
- Limited data exist on the role of rare mtDNA mutations in diabetes pathophysiology.
- Understanding these rare mutations is crucial for comprehensive diagnosis and management.
Purpose of the Study:
- To characterize the phenotypic features of patients with diabetes linked to rare mtDNA mutations.
- To compare the clinical and metabolic profiles of patients with rare mtDNA mutations versus the classical m.3243 A>G mutation.
Main Methods:
- Post-hoc analysis of a prospective multicenter cohort of 743 patients with mitochondrial disorders.
- Literature review of the PubMed database (1992-2016) for patients with diabetes and rare mtDNA mutations.
- Extraction and description of clinical and metabolic phenotypes from identified cases.
Main Results:
- Fifty patients with rare mtDNA mutations and diabetes were identified (10 from cohort, 40 from literature).
- Phenotypes were heterogeneous, but neurological symptoms were more frequent with rare mutations (P=0.024).
- Deafness (P=3.7E-5), macular dystrophy (P=1.6E-10), and nephropathy (P=0.018) were less common than with the m.3243 A>G mutation.
Conclusions:
- No specific metabolic phenotype distinguishes rare mtDNA mutations in diabetes.
- Clinical presentation of rare mtDNA mutations in diabetes is characterized by a higher frequency of neurological signs.
- Further research is needed to fully elucidate the impact of rare mtDNA mutations on diabetes development.
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