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本文引用的文献

1
PKC epsilon has an alcohol-binding site in its second cysteine-rich regulatory domain.蛋白激酶Cε在其富含半胱氨酸的第二个调节结构域中有一个酒精结合位点。
Biochem J. 2009 Jul 15;421(3):405-13. doi: 10.1042/BJ20082271.
2
Transgenic overexpression of aldehyde dehydrogenase-2 rescues chronic alcohol intake-induced myocardial hypertrophy and contractile dysfunction.醛脱氢酶-2的转基因过表达可挽救慢性酒精摄入诱导的心肌肥大和收缩功能障碍。
Circulation. 2009 Apr 14;119(14):1941-9. doi: 10.1161/CIRCULATIONAHA.108.823799. Epub 2009 Mar 30.
3
Mechanistic insights into nitrite-induced cardioprotection using an integrated metabolomic/proteomic approach.使用综合代谢组学/蛋白质组学方法对亚硝酸盐诱导的心脏保护作用的机制性见解。
Circ Res. 2009 Mar 27;104(6):796-804. doi: 10.1161/CIRCRESAHA.108.187005. Epub 2009 Feb 19.
4
Time-dependent and ethanol-induced cardiac protection from ischemia mediated by mitochondrial translocation of varepsilonPKC and activation of aldehyde dehydrogenase 2.ε蛋白激酶C的线粒体易位和乙醛脱氢酶2的激活介导的时间依赖性及乙醇诱导的心脏对缺血的保护作用。
J Mol Cell Cardiol. 2009 Feb;46(2):278-84. doi: 10.1016/j.yjmcc.2008.09.713. Epub 2008 Oct 17.
5
Myocardial ischaemia inhibits mitochondrial metabolism of 4-hydroxy-trans-2-nonenal.心肌缺血会抑制4-羟基反式-2-壬烯醛的线粒体代谢。
Biochem J. 2009 Jan 15;417(2):513-24. doi: 10.1042/BJ20081615.
6
Activation of aldehyde dehydrogenase-2 reduces ischemic damage to the heart.醛脱氢酶-2的激活可减轻心脏的缺血损伤。
Science. 2008 Sep 12;321(5895):1493-5. doi: 10.1126/science.1158554.
7
Ethanol abolishes ischemic preconditioning in humans.乙醇可消除人类的缺血预处理。
J Am Coll Cardiol. 2008 Jan 22;51(3):271-5. doi: 10.1016/j.jacc.2007.09.042.
8
To drink or not to drink? That is the question.喝还是不喝?这是个问题。
Circulation. 2007 Sep 11;116(11):1306-17. doi: 10.1161/CIRCULATIONAHA.106.678375.
9
Inactivation of the proteasome by 4-hydroxy-2-nonenal is site specific and dependant on 20S proteasome subtypes.4-羟基-2-壬烯醛对蛋白酶体的失活具有位点特异性,且依赖于20S蛋白酶体亚型。
Arch Biochem Biophys. 2006 Sep 1;453(1):135-42. doi: 10.1016/j.abb.2006.02.003. Epub 2006 Feb 24.
10
Inhibition of human mitochondrial aldehyde dehydrogenase by 4-hydroxynon-2-enal and 4-oxonon-2-enal.4-羟基壬-2-烯醛和4-氧代壬-2-烯醛对人线粒体醛脱氢酶的抑制作用。
Chem Res Toxicol. 2006 Jan;19(1):102-10. doi: 10.1021/tx0501839.

醛脱氢酶 2 (ALDH2) 的激活赋予蛋白激酶 C ɛ (PKCɛ) 敲除小鼠心脏保护作用。

Activation of aldehyde dehydrogenase 2 (ALDH2) confers cardioprotection in protein kinase C epsilon (PKCvarepsilon) knockout mice.

机构信息

Department of Chemical and Systems Biology, Stanford University School of Medicine, CCSR, Rm 3145A, 269 Campus Drive, Stanford, CA 94305-5174, USA.

出版信息

J Mol Cell Cardiol. 2010 Apr;48(4):757-64. doi: 10.1016/j.yjmcc.2009.10.030. Epub 2009 Nov 11.

DOI:10.1016/j.yjmcc.2009.10.030
PMID:19913552
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2837767/
Abstract

Acute administration of ethanol can reduce cardiac ischemia/reperfusion injury. Previous studies demonstrated that the acute cytoprotective effect of ethanol on the myocardium is mediated by protein kinase C epsilon (PKCvarepsilon). We recently identified aldehyde dehydrogenase 2 (ALDH2) as a PKCvarepsilon substrate, whose activation is necessary and sufficient to confer cardioprotection in vivo. ALDH2 metabolizes cytotoxic reactive aldehydes, such as 4-hydroxy-2-nonenal (4-HNE), which accumulate during cardiac ischemia/reperfusion. Here, we used a combination of PKCvarepsilon knockout mice and a direct activator of ALDH2, Alda-44, to further investigate the interplay between PKCvarepsilon and ALDH2 in cardioprotection. We report that ethanol preconditioning requires PKCvarepsilon, whereas direct activation of ALDH2 reduces infarct size in both wild type and PKCvarepsilon knockout hearts. Our data suggest that ALDH2 is downstream of PKCvarepsilon in ethanol preconditioning and that direct activation of ALDH2 can circumvent the requirement of PKCvarepsilon to induce cytoprotection. We also report that in addition to ALDH2 activation, Alda-44 prevents 4-HNE induced inactivation of ALDH2 by reducing the formation of 4-HNE-ALDH2 protein adducts. Thus, Alda-44 promotes metabolism of cytotoxic reactive aldehydes that accumulate in ischemic myocardium. Taken together, our findings suggest that direct activation of ALDH2 may represent a method of harnessing the cardioprotective effect of ethanol without the side effects associated with alcohol consumption.

摘要

急性给予乙醇可以减少心脏缺血/再灌注损伤。先前的研究表明,乙醇对心肌的急性细胞保护作用是通过蛋白激酶 C ɛ (PKCɛ)介导的。我们最近发现醛脱氢酶 2 (ALDH2)是 PKCɛ的底物,其激活对于体内的心脏保护作用是必需和充分的。ALDH2 代谢细胞毒性反应性醛,如 4-羟基-2-壬烯醛 (4-HNE),这些醛在心脏缺血/再灌注期间积累。在这里,我们使用 PKCɛ 敲除小鼠和 ALDH2 的直接激活剂 Alda-44 的组合,进一步研究 PKCɛ 和 ALDH2 在心脏保护中的相互作用。我们报告说,乙醇预处理需要 PKCɛ,而 ALDH2 的直接激活可减少野生型和 PKCɛ 敲除心脏的梗死面积。我们的数据表明,ALDH2 是乙醇预处理中 PKCɛ 的下游,而 ALDH2 的直接激活可以绕过 PKCɛ 诱导细胞保护的需要。我们还报告说,除了 ALDH2 的激活外,Alda-44 通过减少 4-HNE-ALDH2 蛋白加合物的形成来防止 4-HNE 诱导的 ALDH2 失活。因此,Alda-44 促进了在缺血心肌中积累的细胞毒性反应性醛的代谢。总之,我们的发现表明,ALDH2 的直接激活可能代表一种利用乙醇的心脏保护作用而不产生与饮酒相关的副作用的方法。