首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >JNK Activation Decreases PP2A Regulatory Subunit B56α Expression and mRNA Stability and Increases AUF1 Expression in Cardiomyocytes
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JNK Activation Decreases PP2A Regulatory Subunit B56α Expression and mRNA Stability and Increases AUF1 Expression in Cardiomyocytes

机译:JNK激活减少心肌细胞中PP2A调节亚基B56α表达和mRNA稳定性并增加AUF1表达

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摘要

A central feature of heart disease is a molecular remodeling of signaling pathways in cardiac myocytes. This study focused on novel molecular elements of MAP kinase-mediated alterations in the pattern of gene expression of the protein phosphatase, PP2A. In an established model of sustained JNK activation a 70% decrease in expression of the targeting subunit of PP2A, B56α, was observed in either neonatal or adult cardiomyocytes. This loss in protein abundance was accompanied by a decrease of 69% in B56α mRNA steady-state levels. Given that the 3′-untranslated region of this transcript contains AU-rich elements known to regulate mRNA degradation, experiments explored the notion that instability of B56α mRNA accounts for the response. mRNA time course analyses with real time PCR methods showed that B56α transcript was transformed from a stable (no significant decay over 1 hr) to a labile form that rapidly degraded within minutes. These results were supported by complementary experiments that revealed that the RNA-binding protein AUF1, known to destabilize target mRNA, was increased 4-fold in JNK-activated cells. A variety of other stress-related stimuli, such as p38 MAP kinase activation and phorbol ester, upregulated AUF1 expression in cultured cardiac cells as well. In addition, gel mobility shift assays demonstrated that p37AUF1 binds with nanomolar affinity to segments of the B56α 3′-untranslated region. Thus, these studies provide new evidence that signaling-induced mRNA instability is an important mechanism that underlies the changes in the pattern of gene expression evoked by stress-activated pathways in cardiac cells.
机译:心脏病的主要特征是心肌细胞中信号通路的分子重塑。这项研究集中于MAP激酶介导的蛋白磷酸酶PP2A基因表达模式改变的新分子元素。在已建立的持续JNK激活模型中,在新生或成年心肌细胞中均观察到PP2A靶向亚基B56α的表达降低了70%。蛋白质丰度的下降伴随着B56αmRNA稳态水平下降69%。考虑到该转录本的3'-非翻译区包含已知可调节mRNA降解的富AU元件,因此实验探索了B56αmRNA的不稳定性是反应的原因。实时PCR方法对mRNA进行时程分析表明,B56α转录物从稳定的(在1小时内无明显衰减)转变为不稳定的形式,在几分钟内迅速降解。这些结果得到了补充实验的支持,这些实验揭示了RNA结合蛋白AUF1(已知会破坏目标mRNA的稳定性)在JNK激活的细胞中增加了4倍。各种其他与压力相关的刺激,例如p38 MAP激酶激活和佛波酯,也可以上调培养的心脏细胞中AUF1的表达。此外,凝胶迁移率迁移分析证明p37 AUF1 以纳摩尔亲和力结合到B56α3'-非翻译区的片段上。因此,这些研究提供了新的证据,即信号诱导的mRNA不稳定性是重要的机制,是心肌细胞应力激活途径引起的基因表达模式改变的基础。

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