Uncoupling protein-2 overexpression inhibits mitochondrial death pathway in cardiomyocytes

被引:284
作者
Teshima, Y [1 ]
Akao, M [1 ]
Jones, SP [1 ]
Marbán, E [1 ]
机构
[1] Johns Hopkins Univ, Inst Mol Cardiobiol, Baltimore, MD 21205 USA
关键词
heart; mitochondria; membrane potential; calcium; reactive oxygen species;
D O I
10.1161/01.RES.0000085581.60197.4D
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Uncoupling proteins ( UCPs) are located in the mitochondrial inner membrane and partially dissipate the transmembrane proton electrochemical gradient. UCP2 is expressed in various human and rodent tissues, including the heart, where its functional role is unknown. In the present study, we tested the hypothesis that UCP2 overexpression could protect cardiomyocytes from oxidative stress - induced cell death by reducing reactive oxygen species (ROS) production in mitochondria. Using an adenoviral vector containing human UCP2, we investigated the effects of UCP2 overexpression on the mitochondrial death pathway induced by oxidative stress (100 mumol/L H2O2) in cultured neonatal cardiomyocytes. UCP2 overexpression significantly suppressed markers of cell death, including TUNEL positivity, phosphatidylserine exposure, propidium iodide uptake, and caspase-3 cleavage. Furthermore, UCP2 remarkably prevented the catastrophic loss of mitochondrial inner membrane potential induced by H2O2, which is a critical early event in cell death. Ca2+ overload and the production of ROS in mitochondria, both of which contribute to mitochondrial inner membrane potential loss, were dramatically attenuated by UCP2 overexpression. Thus, overexpression of UCP2 attenuates ROS generation and prevents mitochondrial Ca2+ overload, revealing a novel mechanism of cardioprotection.
引用
收藏
页码:192 / 200
页数:9
相关论文
共 43 条
[1]   Differential actions of cardioprotective agents on the mitochondrial death pathway [J].
Akao, M ;
O'Rourke, B ;
Kusuoka, H ;
Teshima, Y ;
Jones, SP ;
Marbán, E .
CIRCULATION RESEARCH, 2003, 92 (02) :195-202
[2]   Mechanistically distinct steps in the mitochondrial death pathway triggered by oxidative stress in cardiac myocytes [J].
Akao, M ;
O'Rourke, B ;
Teshima, Y ;
Seharaseyon, J ;
Marbán, E .
CIRCULATION RESEARCH, 2003, 92 (02) :186-194
[3]   Antiapoptotic Effect of nicorandil mediated by mitochondrial ATP-sensitive potassium channels in cultured cardiac myocytes [J].
Akao, M ;
Teshima, Y ;
Marbán, E .
JOURNAL OF THE AMERICAN COLLEGE OF CARDIOLOGY, 2002, 40 (04) :803-810
[4]   Mitochondrial ATP-sensitive potassium channels inhibit apoptosis induced by oxidative stress in cardiac cells [J].
Akao, M ;
Ohler, A ;
O'Rourke, B ;
Marbán, E .
CIRCULATION RESEARCH, 2001, 88 (12) :1267-1275
[5]   Membrane depolarization of isolated rat liver mitochondria attenuates permeability transition pore opening and oxidant production [J].
Aronis, A ;
Komarnitsky, R ;
Shilo, S ;
Tirosh, O .
ANTIOXIDANTS & REDOX SIGNALING, 2002, 4 (04) :647-654
[6]   Disruption of the uncoupling protein-2 gene in mice reveals a role in immunity and reactive oxygen species production [J].
Arsenijevic, D ;
Onuma, H ;
Pecqueur, C ;
Raimbault, S ;
Manning, BS ;
Miroux, B ;
Couplan, E ;
Alves-Guerra, MC ;
Goubern, M ;
Surwit, R ;
Bouillaud, F ;
Richard, D ;
Collins, S ;
Ricquier, D .
NATURE GENETICS, 2000, 26 (04) :435-439
[7]   Brain mitochondrial uncoupling protein 2 (UCP2): a protective stress signal in neuronal injury [J].
Bechmann, I ;
Diano, S ;
Warden, CH ;
Bartfai, T ;
Nitsch, R ;
Horvath, TL .
BIOCHEMICAL PHARMACOLOGY, 2002, 64 (03) :363-367
[8]   Stable transfection of UCP1 confers resistance to hypoxia/reoxygenation in a heart-derived cell line [J].
Bienengraeber, M ;
Ozcan, C ;
Terzic, A .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2003, 35 (07) :861-865
[9]   Protective role of uncoupling protein 2 in atherosclerosis [J].
Blanc, J ;
Alves-Guerra, MC ;
Esposito, B ;
Rousset, S ;
Gourdy, P ;
Ricquier, D ;
Tedgui, A ;
Miroux, B ;
Mallat, Z .
CIRCULATION, 2003, 107 (03) :388-390
[10]   Overexpression of uncoupling protein 2 inhibits glucose-stimulated insulin secretion from rat islets [J].
Chan, CB ;
MacDonald, PE ;
Saleh, MC ;
Johns, DC ;
Marbàn, E ;
Wheeler, MB .
DIABETES, 1999, 48 (07) :1482-1486