Genetic and physiological analysis of the role of uncoupling proteins in human energy homeostasis

被引:71
作者
Pecqueur, C [1 ]
Couplan, E [1 ]
Bouillaud, F [1 ]
Ricquier, D [1 ]
机构
[1] CEREMOD, CNRS UPR 9078, F-92190 Meudon, France
来源
JOURNAL OF MOLECULAR MEDICINE-JMM | 2001年 / 79卷 / 01期
关键词
mitochondria; thermogenesis; energy expenditure; metabolic disease; obesity;
D O I
10.1007/s001090000150
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The metabolic utilization of substrates results in ATP synthesis and energy loss as heat. In tissues and cells the mitochondria reoxidize reduced coenzymes and phosphorylate ADP A significant proportion of the energy is released through thermogenesis by mitochondria. This is due to a less than perfect coupling of cellular respiration to ATP synthesis. Previous studies of brown adipocytes, which are cells specialized in regulatory thermogenesis, have shown that heat production is due to the regulated activity and synthesis of a particular proton transporter in the inner membrane of brown adipocyte mitochondria - uncoupling protein (UCP) 1. UCP homologues have recently been identified. UCP2 is widely ex pressed in human tissues, whereas UCP3 is expressed predominantly in human skeletal muscles. These novel UCPs represent genes which are potentially important for regulation of metabolic pathways and energy expenditure in humans. Biochemical and genetic studies support a role for these novel UCPs in metabolic regulations in humans. However, several physiological studies question such a role. Importantly, UCP2 and UCP3 seem to be able to control the activity of mitochondria in response to oxidants.
引用
收藏
页码:48 / 56
页数:9
相关论文
共 57 条
  • [31] Expression of uncoupling protein-3 and mitochondrial activity in the transition from hypothyroid to hyperthyroid state in rat skeletal muscle
    Lanni, A
    Beneduce, L
    Lombardi, A
    Moreno, M
    Boss, O
    Muzzin, P
    Giacobino, JP
    Goglia, F
    [J]. FEBS LETTERS, 1999, 444 (2-3) : 250 - 254
  • [32] Tumor necrosis factor increases mitochondrial oxidant production and induces expression of uncoupling protein-2 in the regenerating rat liver
    Lee, FYJ
    Li, YB
    Zhu, H
    Yang, SQ
    Lin, HZ
    Trush, M
    Diehl, AM
    [J]. HEPATOLOGY, 1999, 29 (03) : 677 - 687
  • [33] CHANGES IN ENERGY-EXPENDITURE RESULTING FROM ALTERED BODY-WEIGHT
    LEIBEL, RL
    ROSENBAUM, M
    HIRSCH, J
    [J]. NEW ENGLAND JOURNAL OF MEDICINE, 1995, 332 (10) : 621 - 628
  • [34] Hyperthyroidism and mitochondrial uncoupling
    Luvisetto, S
    [J]. BIOSCIENCE REPORTS, 1997, 17 (01) : 17 - 21
  • [35] AtPUMP:: an Arabidopsis gene encoding a plant uncoupling mitochondrial protein
    Maia, IG
    Benedetti, CE
    Leite, A
    Turcinelli, SR
    Vercesi, AE
    Arruda, P
    [J]. FEBS LETTERS, 1998, 429 (03) : 403 - 406
  • [36] UCP4, a novel brain-specific mitochondrial protein that reduces membrane potential in mammalian cells
    Mao, WG
    Yu, XX
    Zhong, A
    Li, WL
    Brush, J
    Sherwood, SW
    Adams, SH
    Pan, GH
    [J]. FEBS LETTERS, 1999, 443 (03) : 326 - 330
  • [37] Increased uncoupling protein-2 and -3 mRNA expression during fasting in obese and lean humans
    Millet, L
    Vidal, H
    Andreelli, F
    Larrouy, D
    Riou, JP
    Ricquier, D
    Laville, M
    Langin, D
    [J]. JOURNAL OF CLINICAL INVESTIGATION, 1997, 100 (11) : 2665 - 2670
  • [38] Role for uncoupling protein-2 as a regulator of mitochondrial hydrogen peroxide generation
    NegreSalvayre, A
    Hirtz, C
    Carrera, G
    Cazenave, R
    Troly, M
    Salvayre, R
    Penicaud, L
    Casteilla, L
    [J]. FASEB JOURNAL, 1997, 11 (10) : 809 - 815
  • [39] THERMOGENIC MECHANISMS IN BROWN FAT
    NICHOLLS, DG
    LOCKE, RM
    [J]. PHYSIOLOGICAL REVIEWS, 1984, 64 (01) : 1 - 64
  • [40] OPPERT JM, 1994, INT J OBESITY, V18, P526