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.

Plos One
|April 27, 2012
PubMed

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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