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Characterization of the mitochondrial DNA in patients with multiple sclerosis
B Kalman1, F D Lublin, H Alder
1Department of Neurology, Thomas Jefferson University, Philadelphia, PA 19107, USA.
Abstract:
Mitochondrial DNA (mtDNA) abnormalities with primary pathogenic significance for optic nerve atrophy have been detected in inflammatory demyelinating conditions indistinguishable from multiple sclerosis (MS). However, the degree of involvement of mtDNA alterations in the pathogenesis of MS is not clear. To further clarify this question, we sequenced the entire mtDNA in three MS patients. A number of nucleotide alterations were defined relative to the standard mtDNA sequence in each patient. After excluding the silent mutations and common polymorphisms, eight unusual mtDNA variants within the ribosomal (r) RNA, transfer (t) RNA or protein encoding regions were identified and characterized. Two mutations remained as putative MS related alterations after screening a population of 49 patients and 63 controls for the presence of these mutations. An A to G transition at nucleotide (nt) 13966 causing a threonine to phenylalanine exchange in a non-conserved region of the ND-5 was detected in two independent MS patients and in none of the sixty-three controls or in any of the large control population in the literature. The second mutation of interest at 14798 is a T to C transition changing a phenylalanine to leucine in a relatively conserved domain of the cytochrome b. Although it is a known polymorphism, a tendency for prominent optic nerve involvement was observed among patients carrying this mutation. As we have performed the first complete mtDNA sequence analysis on MS patients, we conclude that MS may occur without mtDNA abnormalities of primary pathogenic significance. However, contribution of the mtDNA to genetic susceptibility or phenotypic presentation of MS is possible in certain subgroups of patients, and merits further investigation.
Insights
Mitochondrial DNA (mtDNA) mutations are not always pathogenic in multiple sclerosis (MS). While some mtDNA variants may influence MS susceptibility or presentation, complete sequencing revealed MS can occur without significant mtDNA abnormalities.
Area of Science:
- Neuroscience
- Genetics
- Immunology
Background:
- Mitochondrial DNA (mtDNA) abnormalities are implicated in optic nerve atrophy within inflammatory demyelinating diseases.
- The specific role of mtDNA alterations in the pathogenesis of multiple sclerosis (MS) remains unclear.
Observation:
- Complete mtDNA sequencing was performed on three MS patients.
- Eight unusual mtDNA variants were identified after excluding silent mutations and common polymorphisms.
- Two specific mutations were further investigated in a larger cohort of MS patients and controls.
Findings:
- An A to G transition at nt 13966 in the ND-5 gene was found in two MS patients but not in controls.
- A T to C transition at nt 14798 in the cytochrome b gene, a known polymorphism, showed a tendency towards prominent optic nerve involvement in MS patients.
- Multiple sclerosis can occur without primary pathogenic mtDNA abnormalities.
Implications:
- mtDNA alterations may contribute to genetic susceptibility or phenotypic diversity in specific MS subgroups.
- Further research is warranted to explore the nuanced role of mtDNA in MS pathogenesis.
- These findings advance our understanding of the genetic factors influencing multiple sclerosis and optic nerve involvement.