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Mutations in the two ribosomal RNA genes in mitochondrial DNA among Finnish children with hearing impairment

Journal

BMC MEDICAL GENETICS
Volume 16, Issue -, Pages -

Publisher

BIOMED CENTRAL LTD
DOI: 10.1186/s12881-015-0145-6

Keywords

Haplogroup; Hearing loss; Mitochondrial DNA; Mutations; Rare variants

Funding

  1. Academy of Finland [127764]
  2. Oulu University Hospital
  3. Alma and K. A. Snellman Foundation
  4. Research Foundation of the Finnish Otolaryngological Society
  5. National Graduate School of Clinical Investigation
  6. Academy of Finland (AKA) [127764, 127764] Funding Source: Academy of Finland (AKA)

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Background: Mutations in the two MT-RNR genes in mitochondrial DNA can cause hearing impairment that presents with variable severity and age of onset. In order to study the prevalence of mutations in MT-RNR1 and MT-RNR2 genes among Finnish children, we studied a ten-year cohort of hearing impaired children born in Northern Finland. Methods: We studied children, who had been born in Northern Finland in 1993-2002 and who had been ascertained to have hearing impairment by 31 December 2007. Samples from 103 children were sequenced in order to find mutations in the MT-RNR1 and MT-RNR2 genes. Results: One child harboured the pathogenic m.1555A > G mutation in MT-RNR1 suggesting a frequency of 4.4/100,000 in the Finnish paediatric population. In addition, eight rare variants and 13 polymorphisms were found in MT-RNR1 and MT-RNR2 genes. Five of the rare variants were deemed to be haplogroup-specific polymorphisms rather than putative pathogenic mutations, while the remaining three variants have been reported in various haplogroups. Among them m.990 T > C occurs at a conserved site. Conclusions: The presence of m.990 T > C variant in various haplogroups and the rather high degree of conservation at this site suggest that this transition is a pathogenic rather than homoplasic neutral variant. Identification of further patients with m.990 T > C and segregation analysis in their families should help in determining the pathogenic potential of this variant.

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