Suppr超能文献

核-线粒体相互作用在全心肌缺血中的变化。时间进程分析。

Nuclear-mitochondrial cross-talk in global myocardial ischemia. A time-course analysis.

机构信息

The Molecular Cardiology and Neuromuscular Institute, 75 Raritan Avenue, Highland Park, NJ 08904, USA.

出版信息

Mol Cell Biochem. 2012 May;364(1-2):225-34. doi: 10.1007/s11010-011-1221-7. Epub 2012 Jan 7.

Abstract

Myocardial ischemia results in early and progressive damage to mitochondrial structure and function, but the molecular events leading to these changes have not been clearly established. We hypothesized that mitochondrial dysfunction and a coordinated expression of nuclear and mitochondrial genes occur in a time-dependent manner by relating the time courses of changes in parameters of mitochondrial bioenergetics after ischemia-reperfusion. Using a Langendorff rat heart model, mitochondrial bioenergetics and protein levels were assessed at different times of ischemia and ischemia/reperfusion. Mitochondrial and nuclear gene expression (super array analysis) and mitochondrial DNA levels were evaluated after late ischemia. Ischemia induced progressive and marked decreases in complex I, III, and V activities. Reperfusion (15, 30, and 60 min) after 45 min of ischemia had little further effect on enzyme activities or respiration. Super array analysis after 45 min ischemia revealed increased levels of the proteins with more pronounced increases in the corresponding mRNAs. Expression of mitochondrial and nuclear genes involved in oxidative phosphorylation increased after 45 min of ischemia but not after reperfusion. Myocardial ischemia induces mitochondrial dysfunction and differential but coordinated expression of nuclear and mitochondrial genes in a time-dependent manner. Our observations are pertinent to the search for molecular stimuli that generate mitochondrial defects and alter mitochondrial and nuclear transcriptional responses that may impact ischemic preconditioning and cardioprotection.

摘要

心肌缺血导致线粒体结构和功能的早期和进行性损伤,但导致这些变化的分子事件尚未明确确立。我们假设,通过与缺血再灌注后线粒体生物能量学参数变化的时间过程相关,线粒体功能障碍和核基因与线粒体基因的协调表达以时间依赖的方式发生。使用 Langendorff 大鼠心脏模型,在不同的缺血和缺血/再灌注时间评估线粒体生物能量学和蛋白质水平。在晚期缺血后评估线粒体和核基因表达(超级数组分析)和线粒体 DNA 水平。缺血诱导复合物 I、III 和 V 活性进行性和显著降低。再灌注(缺血后 15、30 和 60 分钟)对酶活性或呼吸几乎没有进一步的影响。45 分钟缺血后的超级数组分析显示蛋白水平升高,相应的 mRNA 水平升高更为明显。涉及氧化磷酸化的线粒体和核基因的表达在缺血 45 分钟后增加,但再灌注后没有增加。心肌缺血以时间依赖的方式诱导线粒体功能障碍和核基因与线粒体基因的差异但协调表达。我们的观察结果与寻找产生线粒体缺陷并改变可能影响缺血预处理和心脏保护的线粒体和核转录反应的分子刺激有关。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验