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Activation of endoplasmic reticulum stress response during the development of ischemic heart disease

机译:缺血性心脏病发展过程中内质网应激反应的激活

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摘要

Endoplasmic reticulum (ER) stress has been found to be associated with neurodegenerative diseases and diabetes mellitus. Whether ER stress is involved in the development of heart disease is not known. Cardiac-specific expression of monocyte chemoattractant protein-1 (MCP-1) in mice causes the development of ischemic heart disease. Here we report that microarray analysis of gene expression changes in the heart of these transgenic mice revealed that a cluster of ER stress-related genes was transcriptionally activated in the heart during the development of ischemic heart disease. The gene array results were verified by quantitative real-time PCR that showed highly elevated transcript levels of genes involved in unfolded protein response such as ER and cytoplasmic chaperones, oxidoreductases, protein disulfide isomerase (PDI) family, and ER-associated degradation system such as ubiquitin. Immunoblot analysis confirmed the expression of chaperones, PDI, and ubiquitin. Immunohistochemical analyses showed that ER stress proteins were associated mainly with the degenerating cardiomyocytes. A novel ubiquitin fold modifier (Ufm1) that has not been previously associated with ER stress and not found to be induced under any condition was also found to be upregulated in the hearts of MCP mice (transgenic mice that express MCP-1 specifically in the heart). The present results strongly suggest that activation of ER stress response is involved in the development of ischemic heart disease in this murine model.
机译:内质网(ER)应激已发现与神经退行性疾病和糖尿病有关。 ER应激是否参与心脏病的发展尚不清楚。小鼠中单核细胞趋化蛋白-1(MCP-1)的心脏特异性表达引起缺血性心脏病的发展。在这里,我们报道了对这些转基因小鼠心脏中的基因表达变化进行的微阵列分析显示,在缺血性心脏病的发展过程中,一组与内质网应激相关的基因在心脏中被转录激活。基因阵列结果通过定量实时PCR验证,结果显示参与未折叠的蛋白质反应的基因(例如ER和细胞质伴侣,氧化还原酶,蛋白质二硫键异构酶(PDI)家族)以及与ER相关的降解系统(例如泛素。免疫印迹分析证实了伴侣蛋白,PDI和泛素的表达。免疫组织化学分析表明,ER应激蛋白主要与变性的心肌细胞有关。还发现一种新的遍在蛋白倍数修饰剂(Ufm1)以前未与ER应激相关并且在任何条件下均未发现可在MCP小鼠的心脏中表达上调(在心脏中专门表达MCP-1的转基因小鼠) )。目前的结果强烈表明,在该鼠模型中,ER应激反应的激活与缺血性心脏病的发展有关。

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