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KR-31378, a novel benzopyran analog, attenuates hypoxia-induced cell death via mitochondrial KATP channel and protein kinase C-epsilon in heart-derived H9c2 cells.

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dc.contributor.authorMoon, CH-
dc.contributor.authorKim, MY-
dc.contributor.authorKim, MJ-
dc.contributor.authorKim, MH-
dc.contributor.authorLee, S-
dc.contributor.authorYi, KY-
dc.contributor.authorYoo, SE-
dc.contributor.authorLee, DH-
dc.contributor.authorLim, H-
dc.contributor.authorKim, HS-
dc.contributor.authorLee, SH-
dc.contributor.authorBaik, EJ-
dc.contributor.authorJung, YS-
dc.date.accessioned2011-06-23T05:57:37Z-
dc.date.available2011-06-23T05:57:37Z-
dc.date.issued2004-
dc.identifier.issn0014-2999-
dc.identifier.urihttp://repository.ajou.ac.kr/handle/201003/3016-
dc.description.abstractA novel compound KR-31378 [(2S,3S,4R)-N''-cyano-N-(6-amino-3,4-dihydro-3-hydroxy-2-methly-2-dimethoxy-methly-2H-benzo-pyran-4-yl)-N-benzylguanidine] has been demonstrated as an anti-ischemic agent in rat heart and brain. Here, we report the effects of this compound on hypoxia-induced cell death and possible signaling pathways in heart-derived H9c2 cells. Treatment with KR-31378 (3-30 microM) 1 h before and during hypoxia significantly reduced hypoxia-induced cell death in a concentration-dependent manner. In addition, increase in hypoxia-induced transferase UTP nick end labeling (TUNEL)-positive cells was reduced by KR-31378, suggesting its antiapoptotic potential in H9c2 cells. The protective effect conferred by KR-31378 (10 microM) was abolished by cotreatment with 5-hydroxydecanoate (5HD), a specific blocker of the mitochondrial KATP (mtKATP) channel, but not by HMR-1883 (1-[[5-[2-(5-chloro-o-anisamido)ethyl]-methoxyphenyl]sulfonyl]-3-methylthiourea), a specific blocker of the sarcolemmal KATP channel. We observed that the treatment with KR-31378 could increase the expression of protein kinase C (PKC)-epsilon protein, but not other PKC isotypes (-alpha, -beta, -delta, -zeta), in the particulate fraction. This increased level of PKC-epsilon was sustained during the hypoxic period up to 8 h. In addition, our results showed that treatment with KR-31378 induced the expression of PKC-epsilon mRNA as early as 15 min after the treatment. A specific inhibitor for PKC-epsilon isoform, epsilonV1-2, completely blocked the protective effect of KR-31378 against hypoxia-induced cell death. In conclusion, our results suggest that KR-31378 can protect cultured H9c2 cells from hypoxia-induced death via the mtKATP channel and PKC-epsilon.-
dc.language.isoen-
dc.subject.MESHAnimals-
dc.subject.MESHApoptosis-
dc.subject.MESHBlotting, Western-
dc.subject.MESHCell Hypoxia-
dc.subject.MESHCell Line-
dc.subject.MESHDecanoic Acids-
dc.subject.MESHDose-Response Relationship, Drug-
dc.subject.MESHGuanidines-
dc.subject.MESHHydroxy Acids-
dc.subject.MESHIn Situ Nick-End Labeling-
dc.subject.MESHMembrane Proteins-
dc.subject.MESHMitochondria, Heart-
dc.subject.MESHMyocytes, Cardiac-
dc.subject.MESHPotassium Channels-
dc.subject.MESHProtein Kinase C-
dc.subject.MESHProtein Kinase C-epsilon-
dc.subject.MESHPyrans-
dc.subject.MESHSulfonamides-
dc.subject.MESHThiourea-
dc.subject.MESHTime Factors-
dc.titleKR-31378, a novel benzopyran analog, attenuates hypoxia-induced cell death via mitochondrial KATP channel and protein kinase C-epsilon in heart-derived H9c2 cells.-
dc.typeArticle-
dc.identifier.pmid15588621-
dc.identifier.urlhttp://linkinghub.elsevier.com/retrieve/pii/S0014-2999(04)01222-1-
dc.contributor.affiliatedAuthor문, 창현-
dc.contributor.affiliatedAuthor이, 수환-
dc.contributor.affiliatedAuthor백, 은주-
dc.contributor.affiliatedAuthor정, 이숙-
dc.type.localJournal Papers-
dc.identifier.doi10.1016/j.ejphar.2004.10.037-
dc.citation.titleEuropean journal of pharmacology-
dc.citation.volume506-
dc.citation.number1-
dc.citation.date2004-
dc.citation.startPage27-
dc.citation.endPage35-
dc.identifier.bibliographicCitationEuropean journal of pharmacology, 506(1). : 27-35, 2004-
dc.identifier.eissn1879-0712-
dc.relation.journalidJ000142999-
Appears in Collections:
Journal Papers > School of Medicine / Graduate School of Medicine > Physiology
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