Mitochondrial diabetes in children: seek and you will find it
Cristina Mazzaccara1, Dario Iafusco, Rosario Liguori
1CEINGE-Advanced Biotechnologies S. C. a R. L., Naples, Italy.
Abstract:
Maternally Inherited Diabetes and Deafness (MIDD) is a rare form of diabetes due to defects in mitochondrial DNA (mtDNA). 3243 A>G is the mutation most frequently associated with this condition, but other mtDNA variants have been linked with a diabetic phenotype suggestive of MIDD. From 1989 to 2009, we clinically diagnosed mitochondrial diabetes in 11 diabetic children. Diagnosis was based on the presence of one or more of the following criteria: 1) maculopathy; 2) hearing impairment; 3) maternal heritability of diabetes/impaired fasting glucose and/or hearing impairment and/or maculopathy in three consecutive generations (or in two generations if 2 or 3 members of a family were affected). We sequenced the mtDNA in the 11 probands, in their mothers and in 80 controls. We identified 33 diabetes-suspected mutations, 1/33 was 3243A>G. Most patients (91%) and their mothers had mutations in complex I and/or IV of the respiratory chain. We measured the activity of these two enzymes and found that they were less active in mutated patients and their mothers than in the healthy control pool. The prevalence of hearing loss (36% vs 75-98%) and macular dystrophy (54% vs 86%) was lower in our mitochondrial diabetic adolescents than reported in adults. Moreover, we found a hitherto unknown association between mitochondrial diabetes and celiac disease. In conclusion, mitochondrial diabetes should be considered a complex syndrome with several phenotypic variants. Moreover, deafness is not an essential component of the disease in children. The whole mtDNA should be screened because the 3243A>G variant is not as frequent in children as in adults. In fact, 91% of our patients were mutated in the complex I and/or IV genes. The enzymatic assay may be a useful tool with which to confirm the pathogenic significance of detected variants.
Insights
Maternally Inherited Diabetes and Deafness (MIDD) in children often involves mutations in mitochondrial DNA (mtDNA) affecting respiratory chain complexes I and IV, not just the common 3243A>G variant. Deafness and maculopathy are less prevalent in pediatric MIDD cases.
Area of Science:
- Genetics
- Endocrinology
- Mitochondrial Biology
Background:
- Maternally Inherited Diabetes and Deafness (MIDD) is a rare diabetes form linked to mitochondrial DNA (mtDNA) defects.
- The 3243A>G mutation is common, but other mtDNA variants also cause diabetic phenotypes resembling MIDD.
Purpose of the Study:
- To clinically diagnose and genetically investigate mitochondrial diabetes in children.
- To identify mtDNA mutations and assess their impact on respiratory chain enzyme activity.
- To compare phenotypic features in pediatric MIDD with adult cases and explore novel associations.
Main Methods:
- Clinical diagnosis of mitochondrial diabetes in 11 children based on maculopathy, hearing impairment, and maternal heritability.
- Sequencing of mtDNA in probands, mothers, and controls.
- Measurement of respiratory chain complex I and IV enzyme activities.
- Analysis of clinical phenotypes and association with celiac disease.
Main Results:
- 33 diabetes-suspected mtDNA mutations were identified in 11 children, with 3243A>G being one of them.
- 91% of patients and their mothers harbored mutations in respiratory chain complexes I and/or IV.
- Mutated patients and mothers showed reduced enzyme activity compared to controls.
- Hearing loss and macular dystrophy were less frequent in pediatric cases than in adults.
- A novel association between mitochondrial diabetes and celiac disease was observed.
Conclusions:
- Mitochondrial diabetes is a complex syndrome with varied phenotypes, and deafness is not essential in children.
- Screening the entire mtDNA is crucial, as the 3243A>G variant is less frequent in pediatric MIDD.
- Enzymatic assays can help confirm the pathogenicity of identified mtDNA variants.
- Mitochondrial diabetes may present with an increased prevalence of celiac disease.
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