Uncoupled and surviving: individual mice with high metabolism have greater mitochondrial uncoupling and live longer

被引:399
作者
Speakman, JR [1 ]
Talbot, DA
Selman, C
Snart, S
McLaren, JS
Redman, P
Krol, E
Jackson, DM
Johnson, MS
Brand, MD
机构
[1] Univ Aberdeen, Sch Biol Sci, ACERO, Aberdeen AB24 2TZ, Scotland
[2] Rowett Res Inst, Div Energy Balance & Obes, Aberdeen AB21 9SB, Scotland
[3] MRC, Dunn Human Nutr Unit, Cambridge CB2 2XY, England
关键词
adenine nucleotide translocase; energy metabolism; lifespan; mitochondrial uncoupling; mouse; mus; resting metabolism; uncoupling protein 3;
D O I
10.1111/j.1474-9728.2004.00097.x
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Two theories of how energy metabolism should be associated with longevity, both mediated via free-radical production, make completely contrary predictions. The 'rate of living-free-radical theory' (Pearl, 1928; Harman, 1956; Sohal, 2002) suggests a negative association, the 'uncoupling to survive' hypothesis (Brand, 2000) suggests the correlation should be positive. Existing empirical data on this issue is contradictory and extremely confused (Rubner, 1908; Yan Sohal, 2000; Ragland Sohal, 1975; Daan et al., 1996; Wolf & Schmid-Hempel, 1989]. We sought associations between longevity and individual variations in energy metabolism in a cohort of outbred mice. We found a positive association between metabolic intensity (kJ daily food assimilation expressed as g/body mass) and lifespan, but no relationships of lifespan to body mass, fat mass or lean body mass. Mice in the upper quartile of metabolic intensities had greater resting oxygen consumption by 17% and lived 36% longer than mice in the lowest intensity quartile. Mitochondria isolated from the skeletal muscle of mice in the upper quartile had higher proton conductance than mitochondria from mice from the lowest quartile. The higher conductance was caused by higher levels of endogenous activators of proton leak through the adenine nucleotide translocase and uncoupling protein-3. Individuals with high metabolism were therefore more uncoupled, had greater resting and total daily energy expenditures and survived longest supporting the 'uncoupling to survive' hypothesis.
引用
收藏
页码:87 / 95
页数:9
相关论文
共 45 条
[1]   Mitochondrial oxygen radical generation and leak: Sites of production in state 4 and 3, organ specificity, and relation to aging and longevity [J].
Barja, G .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1999, 31 (04) :347-366
[2]   Assessing metabolic activity in aging Caenorhabditis elegans:: concepts and controversies [J].
Braeckman, BP ;
Houthoofd, K ;
Vanfleteren, JR .
AGING CELL, 2002, 1 (02) :82-88
[3]   Rebuttal to Van Voorhies:: 'The influence of metabolic rate on longevity in the nematode Caenorhabditis elegans" [J].
Braeckman, BP ;
Houthoofd, K ;
Vanfleteren, JR .
AGING CELL, 2002, 1 (02) :89-90
[4]   Uncoupling to survive? The role of mitochondrial inefficiency in ageing [J].
Brand, MD .
EXPERIMENTAL GERONTOLOGY, 2000, 35 (6-7) :811-820
[5]   THE PROTON LEAK ACROSS THE MITOCHONDRIAL INNER MEMBRANE [J].
BRAND, MD .
BIOCHIMICA ET BIOPHYSICA ACTA, 1990, 1018 (2-3) :128-133
[6]  
BRAND MD, 1995, BIOENERGETICS PRACTI, P39
[7]   Dwarf mice and the ageing process [J].
BrownBorg, HM ;
Borg, KE ;
Meliska, CJ ;
Bartke, A .
NATURE, 1996, 384 (6604) :33-33
[8]   Effects of magnesium and nucleotides on the proton conductance of rat skeletal-muscle mitochondria [J].
Cadenas, S ;
Brand, MD .
BIOCHEMICAL JOURNAL, 2000, 348 :209-213
[9]   Increased daily work precipitates natural death in the kestrel [J].
Daan, S ;
Deerenberg, C ;
Dijkstra, C .
JOURNAL OF ANIMAL ECOLOGY, 1996, 65 (05) :539-544
[10]   A signalling role for 4-hydroxy-2-nonenal in regulation of mitochondrial uncoupling [J].
Echtay, KS ;
Esteves, TC ;
Pakay, JL ;
Jekabsons, MB ;
Lambert, AJ ;
Portero-Otín, M ;
Pamplona, R ;
Vidal-Puig, AJ ;
Wang, S ;
Roebuck, SJ ;
Brand, MD .
EMBO JOURNAL, 2003, 22 (16) :4103-4110