KR-31466, a benzopyranylindol analog, attenuates hypoxic injury through mitochondrial KATP channel and protein kinase C activation in heart-derived H9c2 cells

被引:0
作者
Jung, YS
Jung, YS
Kim, MY
Kim, MH
Lee, S
Yi, KY
Yoo, SE
Lee, SH
Baik, EJ
Moon, CH
Cho, JP [1 ]
机构
[1] Korea Res Inst Chem Technol, Div Med Sci, Taejon 305600, South Korea
[2] Ajou Univ, Sch Med, Dept Physiol, Suwon 442749, South Korea
[3] Ajou Univ, Sch Med, Dept Emergency Med, Suwon 442749, South Korea
关键词
KR-31466; potassium channel; cardiac cell; hypoxia; protein kinase C;
D O I
暂无
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
In the present study, we investigated whether a novel benzopyranylindol analogue, KR-31466 (KR466) (1-[(2S,3R,4S)-3,4-dihydro-2-dimethoxymethyl-3-hydroxy-2-methyl-6-nitro2H-1-benzopyran-4-yl]-1H-indole-2-carboxylic acid ethyl ester) can attenuate hypoxic injury in heart-derived H9c2 cells and, if so, whether the protective effect of KR466 is mediated through mitochondrial ATP-sensitive potassium (mtK(ATP)) opening. The treatment of H9c2 cells with KR466 (3 - 30 muM) significantly reduced hypoxia-induced cell death in a concentration-dependent manner, as shown by lactate dehydrogenase release and propidium iodide-uptake. In addition, KR466 (10 muM) significantly reduced the increase in hypoxia-induced TUNEL-positive cells, suggesting its anti-apoptotic potential in H9c2 cells. The protective effects of KR466 were abolished by 5-hydroxydecanoate, a specific blocker of the mtK(ATP) channel, suggesting the involvement of the mtK(ATP) channel in the protective effect of KR466. A specific inhibitor of protein kinase C (PKC), chelerythrine (3 muM), significantly attenuated the protective effect of KR466 against hypoxia-induced cardiac cell death. In conclusion, our results suggest that KR466 can protect H9c2 cells from hypoxia-induced death through mtK(ATP) channel opening and PKC activation.
引用
收藏
页码:13 / 18
页数:6
相关论文
共 28 条
[1]   ATP-REGULATED K+ CHANNELS PROTECT THE MYOCARDIUM AGAINST ISCHEMIA REPERFUSION DAMAGE [J].
COLE, WC ;
MCPHERSON, CD ;
SONTAG, D .
CIRCULATION RESEARCH, 1991, 69 (03) :571-581
[2]   Diazoxide-induced cardioprotection requires signaling through a redox-sensitive mechanism [J].
Forbes, RA ;
Steenbergen, C ;
Murphy, E .
CIRCULATION RESEARCH, 2001, 88 (08) :802-809
[3]  
Garlid KD, 1997, CIRC RES, V81, P1072
[4]   The mitochondrial K-ATP channel as a receptor for potassium channel openers [J].
Garlid, KD ;
Paucek, P ;
YarovYarovoy, V ;
Sun, XC ;
Schindler, PA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (15) :8796-8799
[5]   Evidence for mitochondrial KATP channels as effectors of human myocardial preconditioning [J].
Ghosh, S ;
Standen, NB ;
Galiñanes, M .
CARDIOVASCULAR RESEARCH, 2000, 45 (04) :934-940
[6]   A selective ε-protein kinase C antagonist inhibits protection of cardiac myocytes from hypoxia-induced cell death [J].
Gray, MO ;
Karliner, JS ;
Mochly-Rosen, D .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (49) :30945-30951
[7]   Sarcolemmal versus mitochondrial ATP-sensitive K+ channels and myocardial preconditioning [J].
Gross, GJ ;
Fryer, RM .
CIRCULATION RESEARCH, 1999, 84 (09) :973-979
[8]  
Hide EJ, 1996, CARDIOVASC RES, V31, P941
[9]   Pharmacological and histochemical distinctions between molecularly defined sarcolemmal KATP channels and native cardiac mitochondrial KATP channels [J].
Hu, H ;
Sato, T ;
Seharaseyon, J ;
Liu, YG ;
Johns, DC ;
O'Rourke, B ;
Marbán, E .
MOLECULAR PHARMACOLOGY, 1999, 55 (06) :1000-1005
[10]   Cardioprotective effects of KR-30450, a novel K+ATP opener, and its major metabolite KR-30818 on isolated rat hearts [J].
Jung, YS ;
Moon, CH ;
Cho, TS ;
Yoo, SE ;
Shin, HS .
JAPANESE JOURNAL OF PHARMACOLOGY, 1998, 76 (01) :65-73