Home LiteratureArticle Details
PMID: 15692733 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Protein restriction without strong caloric restriction decreases mitochondrial oxygen radical production and oxidative DNA damage in rat liver.

Journal of bioenergetics and biomembranes ·Vol. 36 ·No. 6 ·2004-12-00 ·Pages 545-52

Sanz A, Caro P, Barja G

Abstract

Previous studies have shown that caloric restriction decreases mitochondrial oxygen radical production and oxidative DNA damage in rat organs, which can be linked to the slowing of aging rate induced by this regime. These two characteristics are also typical of long-lived animals. However, it has never been investigated if those decreases are linked to the decrease in the intake of calories themselves or to decreases in specific dietary components. In this study the possible role of the dietary protein was investigated. Using semipurified diets, the ingestion of proteins of Wistar rats was decreased by 40% below that of controls while the other dietary components were ingested at the same level as in animals fed ad libitum. After seven weeks in this regime the liver of the protein restricted animals showed 30-40% decreases in mitochondrial production of reactive oxygen species (ROS) and in oxidative damage to nuclear and mitochondrial DNA. The decreases in ROS generation occurred specifically at complex I. They also occurred without changes in mitochondrial oxygen consumption. Instead, there was a decrease in the percent free radical leak (the percentage of total electron flow leading to ROS generation in the respiratory chain). These results are strikingly similar to those previously obtained after 40% caloric restriction in the liver of Wistar rats. Thus, the results suggest that part of the decrease in aging rate induced by caloric restriction can be due to the decreased intake of proteins acting through decreases in mitochondrial ROS production and oxidative DNA damage. Interestingly, these tissue oxidative stress-linked parameters can be lowered by restricting only the intake of dietary protein, probably a more feasible option than caloric restriction for adult humans.

MeSH Terms
Animals Chromatography, High Pressure Liquid DNA Damage Diet, Protein-Restricted Energy Intake/physiology Hydrogen Peroxide/metabolism Liver/metabolism,pathology Male Mitochondria/metabolism Oxygen Consumption/physiology Rats Rats, Wistar Reactive Oxygen Species/metabolism
Chemicals
Reactive Oxygen Species Hydrogen Peroxide
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Sanz Alberto
Department of Animal Physiology-II, Faculty of Biological Sciences, Complutense University, Madrid, 28040, Spain.
Caro Pilar
Barja Gustavo
References (41)
41 references, click to expand
  1. The effects of diet, overfeeding and moderate dietary restriction on Sprague-Dawley rat survival, disease and toxicology.
    J Nutr. 1997 May;127(5 Suppl):851S-856S PMID: 9164252
  2. Influence of aging and long-term caloric restriction on oxygen radical generation and oxidative DNA damage in rat liver mitochondria.
    Free Radic Biol Med. 2002 May 1;32(9):882-9 PMID: 11978489
  3. Retardation of the aging processes in rats by food restriction.
    Ann N Y Acad Sci. 1991;621:337-52 PMID: 1859095
  4. Mitochondrial oxygen radical generation and leak: sites of production in states 4 and 3, organ specificity, and relation to aging and longevity.
    J Bioenerg Biomembr. 1999 Aug;31(4):347-66 PMID: 10665525
  5. Aging in vertebrates, and the effect of caloric restriction: a mitochondrial free radical production-DNA damage mechanism?
    Biol Rev Camb Philos Soc. 2004 May;79(2):235-51 PMID: 15191224
  6. Dietary protein, life-span, and biochemical variables in female mice.
    J Gerontol. 1976 Mar;31(2):144-8 PMID: 1249402
  7. Nutritional influences on aging of Fischer 344 rats: II. Pathology.
    J Gerontol. 1985 Nov;40(6):671-88 PMID: 4056322
  8. Low-protein diet suppresses serum insulin-like growth factor-1 and decelerates the progression of growth hormone-induced glomerulosclerosis.
    Am J Nephrol. 2001 Jul-Aug;21(4):331-9 PMID: 11509807
  9. Oxidative damage to mitochondrial DNA is inversely related to maximum life span in the heart and brain of mammals.
    FASEB J. 2000 Feb;14(2):312-8 PMID: 10657987
  10. The effect of low protein-high dextrin diet and subsequent food restriction upon life prolongation in Fischer 344 male rats.
    Mech Ageing Dev. 1988 Oct;45(1):1-7 PMID: 3216725
  11. Caloric restriction and body weight independently affect longevity in Wistar rats.
    Int J Obes Relat Metab Disord. 2004 Mar;28(3):357-62 PMID: 14724654
  12. The effects of diet, ad Libitum feeding, and moderate and severe dietary restriction on body weight, survival, clinical pathology parameters, and cause of death in control Sprague-Dawley rats.
    Toxicol Sci. 2000 Nov;58(1):195-207 PMID: 11053556
  13. Caloric restriction decreases mitochondrial free radical generation at complex I and lowers oxidative damage to mitochondrial DNA in the rat heart.
    FASEB J. 2001 Jul;15(9):1589-91 PMID: 11427495
  14. Endogenous oxidative stress: relationship to aging, longevity and caloric restriction.
    Ageing Res Rev. 2002 Jun;1(3):397-411 PMID: 12067594
  15. Protein restriction (PR) and caloric restriction (CR) compared: effects on DNA damage, carcinogenesis, and oxidative damage.
    Mutat Res. 1993 Dec;295(4-6):165-79 PMID: 7507555
  16. Calorie restriction in rhesus monkeys.
    Exp Gerontol. 2003 Jan-Feb;38(1-2):35-46 PMID: 12543259
  17. Differential effects of dietary caloric and protein restriction in the aging rat.
    Exp Gerontol. 1983;18(6):427-35 PMID: 6673988
  18. Response of oxidative phosphorylation in liver of protein-energy malnourished rats.
    Nutr Metab. 1979;23(3):235-40 PMID: 106343
  19. The quantitative measurement of H2O2 generation in isolated mitochondria.
    J Bioenerg Biomembr. 2002 Jun;34(3):227-33 PMID: 12171072
  20. Effect of time of restriction on the decrease in mitochondrial H2O2 production and oxidative DNA damage in the heart of food-restricted rats.
    Microsc Res Tech. 2002 Nov 15;59(4):273-7 PMID: 12424788
  21. Mitochondrial glutathione oxidation correlates with age-associated oxidative damage to mitochondrial DNA.
    FASEB J. 1996 Feb;10(2):333-8 PMID: 8641567
  22. Influence of diet on survival of mice.
    Proc Natl Acad Sci U S A. 1976 Apr;73(4):1279-83 PMID: 1063408
  23. Source of dietary carbohydrate affects life span of Fischer 344 rats independent of caloric restriction.
    J Gerontol A Biol Sci Med Sci. 1995 May;50(3):B148-54 PMID: 7743394
  24. Protein synthesis, development, growth and life span.
    Growth. 1975 Dec;39(4):525-33 PMID: 1205236
  25. Nutritional control of aging.
    Exp Gerontol. 2003 Jan-Feb;38(1-2):47-52 PMID: 12543260
  26. Body weight increment and length of life: the effect of genetic constitution and dietary protein.
    J Gerontol. 1978 Mar;33(2):184-90 PMID: 627702
  27. Mitochondrial dysfunctions during aging: vitamin E deficiency or caloric restriction--two different ways of modulating stress.
    J Bioenerg Biomembr. 2003 Apr;35(2):181-91 PMID: 12887016
  28. Free radicals in the physiological control of cell function.
    Physiol Rev. 2002 Jan;82(1):47-95 PMID: 11773609
  29. The retardation of aging by caloric restriction: its significance in the transgenic era.
    Exp Gerontol. 2003 Nov-Dec;38(11-12):1343-51 PMID: 14698815
  30. The free radical theory of aging matures.
    Physiol Rev. 1998 Apr;78(2):547-81 PMID: 9562038
  31. Protein oxidation associated with aging is reduced by dietary restriction of protein or calories.
    Proc Natl Acad Sci U S A. 1992 Oct 1;89(19):9112-6 PMID: 1409611
  32. Does dietary sugar and fat influence longevity?
    Med Hypotheses. 2003 Jun;60(6):924-9 PMID: 12699727
  33. Evolution of mitochondrial DNA in Drosophila subobscura.
    Proc Natl Acad Sci U S A. 1986 Nov;83(22):8649-53 PMID: 16578796
  34. Methionine restriction increases blood glutathione and longevity in F344 rats.
    FASEB J. 1994 Dec;8(15):1302-7 PMID: 8001743
  35. Effects of life-long dietary protein restriction on mortality, growth, organ weights, blood counts, liver aldolase and kidney catalase in Balb/C mice.
    Growth. 1977 Dec;41(4):337-48 PMID: 604178
  36. Nutritional influences on aging of Fischer 344 rats: I. Physical, metabolic, and longevity characteristics.
    J Gerontol. 1985 Nov;40(6):657-70 PMID: 4056321
  37. Markers of oxidative damage to DNA: antioxidants and molecular damage.
    Methods Enzymol. 1999;300:166-84 PMID: 9919520
  38. Effect of varying caloric restriction levels on female rat growth and 5-hydroxymethyl-2'-deoxyuridine in DNA.
    Toxicol Sci. 2002 Mar;66(1):125-30 PMID: 11861979
  39. Liver response to low-hexachlorobenzene exposure in protein- or energy-restricted rats.
    Food Chem Toxicol. 1991 Nov;29(11):757-64 PMID: 1761255
  40. Effect of short-term caloric restriction on H2O2 production and oxidative DNA damage in rat liver mitochondria and location of the free radical source.
    J Bioenerg Biomembr. 2001 Aug;33(4):279-87 PMID: 11710804
  41. Physiological casein and gluten protein requirements of growing rats.
    Physiol Bohemoslov. 1984;33(4):320-35 PMID: 6484024
Article Info
Journal
Journal of bioenergetics and biomembranes
Abbr.
J Bioenerg Biomembr
ISSN
0145-479X
Published
2004-12-00
Pages
545-52
Language
English
Region
United States
NLM ID
7701859
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com