Low Mitochondrial Free Radical Production Per Unit O2Consumption Can Explain the Simultaneous Presence of High Longevity and High Aerobic Metabolic Rate in Birds

Низкая продукция митохондриальных свободных радикалов на единицу потребления O2 может объяснить одновременное наличие высокой продолжительности жизни и высокой аэробной скорости метаболизма у птиц
Gustavo Barja, Susana Cadenas, C. Rojas, R. Pérez‐Campo, Mónica Lopez‐Torres
1994-01-01

free radical leakfree radical theory of agingmaximum life spanmitochondrial free radical productionoxygen consumption
Birds are unique since they can combine a high rate of oxygen consumption at rest with a high maximum life span (MLSP). The reasons for this capacity are unknown. A similar situation is present in primates including humans which show MLSPs higher than predicted from their rates of O2 consumption. In this work rates of oxygen radical production and O2 consumption by mitochondria were compared between adult male rats (MLSP = 4 years) and adult pigeons (MLSP = 35 years), animals of similar body size. Both the O2 consumption of the whole animal at rest and the O2 consumption of brain, lung and liver mitochondria were higher in the pigeon than in the rat. Nevertheless, mitochondrial free radical production was 2-4 times lower in pigeon than in rat tissues. This is possible because pigeon mitochondria show a rate of free radical production per unit O2 consumed one order of magnitude lower than rat mitochondria: bird mitochondria show a lower free radical leak at the respiratory chain. This result, described here for the first time, can possibly explain the capacity of birds to simultaneously increase maximum longevity and basal metabolic rate. It also suggests that the main factor relating oxidative stress to aging and longevity is not the rate of oxygen consumption but the rate of oxygen radical production. Previous inconsistencies of the rate of living theory of aging can be explained by a free radical theory of aging which focuses on the rate of oxygen radical production and on local damage to targets relevant for aging situated near the places where free radicals are continuously generated.
1
A free-radical aging framework emphasizing local damage near sites of radical generation may reconcile inconsistencies in the rate-of-living theory.
2
Despite higher oxygen consumption, pigeon mitochondria produce 2–4 times fewer free radicals than rat mitochondria in brain, lung, and liver tissues.
3
Pigeon mitochondria generate approximately one order of magnitude fewer free radicals per unit of oxygen consumed, indicating lower respiratory-chain free radical leak.
4
Pigeons combine higher resting whole-animal and mitochondrial oxygen consumption with substantially greater maximum lifespan than similarly sized rats.
5
The findings suggest that oxidative stress and longevity are more closely related to oxygen radical production than to oxygen consumption itself.

Mitochondria from adult male pigeons and rats, including brain, lung, and liver mitochondria

The relationship between mitochondrial O2 consumption, free-radical production, and free-radical leak in relation to aerobic metabolic rate and maximum life span

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1994-01-01
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Gustavo Barja
Susana Cadenas
C. Rojas
R. Pérez‐Campo
Mónica Lopez‐Torres
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