Activation of mitochondrial ATP-sensitive K+ channel for cardiac protection against ischemic injury is dependent on protein kinase C activity

被引:177
作者
Wang, YG [1 ]
Hirai, K [1 ]
Ashraf, M [1 ]
机构
[1] Univ Cincinnati, Med Ctr, Dept Pathol & Lab Med, Cincinnati, OH 45267 USA
关键词
mitochondrial K-ATP channel; preconditioning; ischemia; protein kinase C; ATP;
D O I
10.1161/01.RES.85.8.731
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Protein kinase C (PKC) is involved in the second messenger signaling cascade during ischemic and Ca2+ preconditioning. Given that the pharmacological activation of mitochondrial ATP-sensitive K+ (mitoK(ATP)) channels also mimics preconditioning, the mechanisms linking PKC activation and mitoK(ATP) channels remain to be established. We hypothesize that PKC activity is important for the opening of the mitoK(ATP) channel. To examine this, a specific opener of the mitoK(ATP) channel, diazoxide, was used in conjunction with subcellular distribution of PKC in a model of ischemia/reperfusion (I/R). Langendorff-perfused rat hearts were subjected to 40-minute ischemia followed by 30-minute reperfusion. Effects of activation of the mitoK(ATP) channel and other interventions on functional, biochemical, and pathological changes in ischemic hearts were assessed. In hearts treated with diazoxide, left ventricular end-diastolic pressure and coronary flow were significantly improved after IIR; lactate dehydrogenase release was also significantly decreased. The morphology was well preserved in diazoxide-treated hearts compared with nontreated ischemic control hearts. The salutary effects of diazoxide on the ischemic injury were similar to those of Ca2+ preconditioning. Administration of sodium 5-hydroxydecanoate, an effective blocker of the mitoK(ATP) channel, or chelerythrine or calphostin C, an inhibitor of PKC, during diazoxide pretreatment or during continuous presence of diazoxide in the ischemic period, completely abolished the beneficial effects of the diazoxide on the VR injury, Blockade of Ca2+ entry during diazoxide treatment by inhibiting the L-type Ca2+ channel with verapamil also completely reversed the beneficial effect of diazoxide during I/R. PKC-alpha was translocated to sarcolemma, whereas PKC-delta was translocated to the mitochondria and intercalated disc, and PKC-epsilon was translocated to the intercalated disc of the diazoxide pretreated hearts. Colocalization studies for mitochondrial distribution with tetramethylrhodamine ethyl ester (TMRE) and PKC isoforms by immunoconfocal microscopy revealed that PKC-delta antibody specifically stained the mitochondria. ATP was significantly increased in the diazoxide-treated hearts. Moreover, the data suggest that activation and translocation of PKC to mitochondria appear to be important for the protection mediated by mitoK(ATP) channel.
引用
收藏
页码:731 / 741
页数:11
相关论文
共 52 条
  • [11] DEWEILLE JR, 1989, P NATL ACAD SCI USA, V86, P2971
  • [12] Garlid KD, 1997, CIRC RES, V81, P1072
  • [13] The mitochondrial K-ATP channel as a receptor for potassium channel openers
    Garlid, KD
    Paucek, P
    YarovYarovoy, V
    Sun, XC
    Schindler, PA
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (15) : 8796 - 8799
  • [14] CARDIOPROTECTIVE EFFECTS OF NICORANDIL
    GROSS, GJ
    AUCHAMPACH, JA
    MARUYAMA, M
    WARLTIER, DC
    PIEPER, GM
    [J]. JOURNAL OF CARDIOVASCULAR PHARMACOLOGY, 1992, 20 : S22 - S28
  • [15] GROSS GJ, 1994, ISCHEMIC PRECONDITIO, V148, P125
  • [16] BENEFICIAL-EFFECTS OF TRIMETAZIDINE ON MITOCHONDRIAL-FUNCTION AND SUPEROXIDE PRODUCTION IN THE CARDIAC-MUSCLE OF MONOCROTALINE-TREATED RATS
    GUARNIERI, C
    MUSCARI, C
    [J]. BIOCHEMICAL PHARMACOLOGY, 1988, 37 (24) : 4685 - 4688
  • [17] MECHANISMS BY WHICH MITOCHONDRIA TRANSPORT CALCIUM
    GUNTER, TE
    PFEIFFER, DR
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 258 (05): : C755 - C786
  • [18] ALLOSTERIC INHIBITION OF THE CA2+-ACTIVATED HYDROPHILIC CHANNEL OF THE MITOCHONDRIAL INNER MEMBRANE BY NUCLEOTIDES
    HAWORTH, RA
    HUNTER, DR
    [J]. JOURNAL OF MEMBRANE BIOLOGY, 1980, 54 (03) : 231 - 236
  • [19] ATP-SENSITIVE K+ CHANNEL IN THE MITOCHONDRIAL INNER MEMBRANE
    INOUE, I
    NAGASE, H
    KISHI, K
    HIGUTI, T
    [J]. NATURE, 1991, 352 (6332) : 244 - 247
  • [20] JANCZEWSKI AM, 1992, CIRCULATION, V86, P1