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The co-occurrence of mt DNA mutations on different oxidative phosphorylation subunits, not detected by haplogroup analysis, affects human longevity and is population specific.

Authors :
Raule, Nicola
Sevini, Federica
Li, Shengting
Barbieri, Annalaura
Tallaro, Federica
Lomartire, Laura
Vianello, Dario
Montesanto, Alberto
Moilanen, Jukka S.
Bezrukov, Vladyslav
Blanché, Hélène
Hervonen, Antti
Christensen, Kaare
Deiana, Luca
Gonos, Efstathios S.
Kirkwood, Tom B. L.
Kristensen, Peter
Leon, Alberta
Pelicci, Pier Giuseppe
Poulain, Michel
Source :
Aging Cell. Jun2014, Vol. 13 Issue 3, p401-407. 7p.
Publication Year :
2014

Abstract

To re-examine the correlation between mt DNA variability and longevity, we examined mt DNAs from samples obtained from over 2200 ultranonagenarians (and an equal number of controls) collected within the framework of the GEHA EU project. The samples were categorized by high-resolution classification, while about 1300 mt DNA molecules (650 ultranonagenarians and an equal number of controls) were completely sequenced. Sequences, unlike standard haplogroup analysis, made possible to evaluate for the first time the cumulative effects of specific, concomitant mt DNA mutations, including those that per se have a low, or very low, impact. In particular, the analysis of the mutations occurring in different OXPHOS complex showed a complex scenario with a different mutation burden in 90+ subjects with respect to controls. These findings suggested that mutations in subunits of the OXPHOS complex I had a beneficial effect on longevity, while the simultaneous presence of mutations in complex I and III (which also occurs in J subhaplogroups involved in LHON) and in complex I and V seemed to be detrimental, likely explaining previous contradictory results. On the whole, our study, which goes beyond haplogroup analysis, suggests that mitochondrial DNA variation does affect human longevity, but its effect is heavily influenced by the interaction between mutations concomitantly occurring on different mt DNA genes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14749718
Volume :
13
Issue :
3
Database :
Academic Search Index
Journal :
Aging Cell
Publication Type :
Academic Journal
Accession number :
96151531
Full Text :
https://doi.org/10.1111/acel.12186