Oxidative stress response elicited by mitochondrial dysfunction: Implication in the pathophysiology of aging

被引:252
作者
Wang, Chih-Hao [1 ]
Wu, Shi-Bei [1 ]
Wu, Yu-Ting [1 ]
Wei, Yau-Huei [1 ,2 ]
机构
[1] Natl Yang Ming Univ, Inst Biochem & Mol Biol, Taipei 112, Taiwan
[2] Mackay Med Coll, Dept Med, New Taipei City 252, Taiwan
关键词
Aging; autophagy; caloric restriction; mitochondrial dysfunction; mtDNA mutation; oxidative stress; vicious cycle; LIFE-SPAN DETERMINANT; ACTIVATED PROTEIN-KINASE; FATTY-ACID OXIDATION; 4977 BP DELETION; CALORIE RESTRICTION; SKELETAL-MUSCLE; CELL-DEATH; SIRT3-MEDIATED DEACETYLATION; DIETARY RESTRICTION; MEDIATED AUTOPHAGY;
D O I
10.1177/1535370213493069
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Under normal physiological conditions, reactive oxygen species (ROS) serve as 'redox messengers' in the regulation of intracellular signalling, whereas excess ROS may induce irreversible damage to cellular components and lead to cell death by promoting the intrinsic apoptotic pathway through mitochondria. In the aging process, accumulation of mitochondria DNA mutations, impairment of oxidative phosphorylation as well as an imbalance in the expression of antioxidant enzymes result in further overproduction of ROS. This mitochondrial dysfunction-elicited ROS production axis forms a vicious cycle, which is the basis of mitochondrial free radical theory of aging. In addition, several lines of evidence have emerged recently to demonstrate that ROS play crucial roles in the regulation of cellular metabolism, antioxidant defence and posttranslational modification of proteins. We first discuss the oxidative stress responses, including metabolites redistribution and alteration of the acetylation status of proteins, in human cells with mitochondrial dysfunction and in aging. On the other hand, autophagy and mitophagy eliminate defective mitochondria and serve as a scavenger and apoptosis defender of cells in response to oxidative stress during aging. These scenarios mediate the restoration or adaptation of cells to respond to aging and age-related disorders for survival. In the natural course of aging, the homeostasis in the network of oxidative stress responses is disturbed by a progressive increase in the intracellular level of the ROS generated by defective mitochondria. Caloric restriction, which is generally thought to promote longevity, has been reported to enhance the efficiency of this network and provide multiple benefits to tissue cells. In this review, we emphasize the positive and integrative roles of mild oxidative stress elicited by mitochondria in the regulation of adaptation, anti-aging and scavenging pathway beyond their roles in the vicious cycle of mitochondrial dysfunction in the aging process.
引用
收藏
页码:450 / 460
页数:11
相关论文
共 135 条
[1]   A role for the mitochondrial deacetylase Sirt3 in regulating energy homeostasis [J].
Ahn, Bong-Hyun ;
Kim, Hyun-Seok ;
Song, Shiwei ;
Lee, In Hye ;
Liu, Jie ;
Vassilopoulos, Athanassios ;
Deng, Chu-Xia ;
Finkel, Toren .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2008, 105 (38) :14447-14452
[2]   Mitochondria, oxidants, and aging [J].
Balaban, RS ;
Nemoto, S ;
Finkel, T .
CELL, 2005, 120 (04) :483-495
[3]   Mitochondrial autophagy in neural function, neurodegenerative disease, neuron cell death, and aging [J].
Batlevi, Yakup ;
La Spada, Albert R. .
NEUROBIOLOGY OF DISEASE, 2011, 43 (01) :46-51
[4]   A novel VNTR enhancer within the SIRT3 gene, a human homologue of SIR2, is associated with survival at oldest ages [J].
Bellizzi, D ;
Rose, G ;
Cavalcante, P ;
Covello, G ;
Dato, S ;
De Rango, F ;
Greco, V ;
Maggiolini, M ;
Feraco, E ;
Mari, V ;
Franceschi, C ;
Passarino, G ;
De Benedictis, G .
GENOMICS, 2005, 85 (02) :258-263
[5]   INCREASED GLYCOLYSIS IN AGING CULTURED HUMAN-DIPLOID FIBROBLASTS [J].
BITTLES, AH ;
HARPER, N .
BIOSCIENCE REPORTS, 1984, 4 (09) :751-756
[6]   Calorie restriction, SIRT1 and metabolism: Understanding longevity [J].
Bordone, L ;
Guarente, L .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2005, 6 (04) :298-305
[7]   Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase [J].
Brunet, A ;
Sweeney, LB ;
Sturgill, JF ;
Chua, KF ;
Greer, PL ;
Lin, YX ;
Tran, H ;
Ross, SE ;
Mostoslavsky, R ;
Cohen, HY ;
Hu, LS ;
Cheng, HL ;
Jedrychowski, MP ;
Gygi, SP ;
Sinclair, DA ;
Alt, FW ;
Greenberg, ME .
SCIENCE, 2004, 303 (5666) :2011-2015
[8]   SIRT1 is a redox-sensitive deacetylase that is post-translationally modified by oxidants and carbonyl stress [J].
Caito, Samuel ;
Rajendrasozhan, Saravanan ;
Cook, Suzanne ;
Chung, Sangwoon ;
Yao, Hongwei ;
Friedman, Alan E. ;
Brookes, Paul S. ;
Rahman, Irfan .
FASEB JOURNAL, 2010, 24 (09) :3145-3159
[9]   Endurance training activates AMP-activated protein kinase, increases expression of uncoupling protein 2 and reduces insulin secretion from rat pancreatic islets [J].
Calegari, Vivian Cristine ;
Zoppi, Claudio Cesar ;
Rezende, Luiz Fernando ;
Silveira, Leonardo Reis ;
Carneiro, Everardo Magalhaes ;
Boschero, Antonio Carlos .
JOURNAL OF ENDOCRINOLOGY, 2011, 208 (03) :257-264
[10]   Genetic deletion of p66Shc adaptor protein prevents hyperglycemia-induced endothelial dysfunction and oxidative stress [J].
Camici, Giovanni G. ;
Schiavoni, Marzia ;
Francia, Pietro ;
Bachschmid, Markus ;
Martin-Padura, Ines ;
Hersberger, Martin ;
Tanner, Felix C. ;
Pelicci, PierGiuseppe ;
Volpe, Massimo ;
Anversa, Piero ;
Luescher, Thomas F. ;
Cosentino, Francesco .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (12) :5217-5222