Delayed cardioprotection is associated with the sub-cellular relocalisation of ventricular protein kinase C epsilon, but not p42/44MAPK

被引:27
作者
Wilson, S
Song, W
Karoly, K
Ravingerova, T
Vegh, A
Papp, J
Tomisawa, S
Parratt, JR
Pyne, NJ
机构
[1] ALBERT SZENT GYORGYI MED UNIV,H-6701 SZEGED,HUNGARY
[2] SLOVAK ACAD SCI,DEPT PHARMACOL,BRATISLAVA,SLOVAKIA
[3] CHUGAI PHARMACEUT CO LTD,CHUO KU,TOKYO 104,JAPAN
关键词
classical preconditioning; noradrenaline; P42/44MAPK; protein kinase C epsilon; nuclear transcription; heat shock proteins; immediate early genes;
D O I
10.1007/BF00240053
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Both noradrenaline administration to rats and rapid cardiac pacing in dogs induces delayed protection of the heart against ischaemia-induced ventricular arrhythmias. In an attempt to establish molecular mechanisms underlying the delayed cardioprotection, we have examined the potential role of two kinases, PKC epsilon and p42/44MAPK. These protein kinases are expressed in the ventricles of the heart and are characterised by their ability to regulate ion-flux and gene transcription. In the rat p42MAPK is predominantly localised in the high-speed supernatant fraction of the ventricle homogenate, whereas p44MAPK is enriched in the nuclear low speed pellet. A small proportion of the p42MAPK is activated even in hearts from control animals. However, neither kinase is relocalised or activated by noradrenaline administration and this provides preliminary evidence that p42/44MAPK may not play a significant role in delayed protection in this species. In contrast, noradrenaline does induce the translocation of PKC epsilon to cell membranes, a response that is sustained for up to 4 h. However, PKC epsilon is down-regulated from the cytoplasm after 24 h post noradrenaline treatment. PKC epsilon is also translocated to the membrane in dogs that have been classically pre-conditioned and cardiac paced. In the latter case, translocation of PKC epsilon from the cytoplasm to the cell membrane is evident 24 h after pacing. These results indicate that the release of endogenous mediators may either inhibit down-regulation or elicit an increase in PKC epsilon mRNA expression. Therefore, in dog heart the subcellular relocalisation of PKC epsilon persists into the 'second window' and may play a central role in the molecular mechanism governing delayed cardioprotection. It is important in the future to identify either the gene products that are induced or the target protein(s) that are phosphorylated by PKC epsilon.
引用
收藏
页码:225 / 230
页数:6
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