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钙诱导富含AU的短寿命mRNA的稳定是一种常见的默认反应。

Calcium-induced stabilization of AU-rich short-lived mRNAs is a common default response.

作者信息

Klein N, Curatola A M, Schneider R J

机构信息

Department of Biochemistry and Microbiology, Kaplan Cancer Center, NYU Medical School, New York, NY 10016, USA.

出版信息

Gene Expr. 1999;7(4-6):357-65.

Abstract

The AU-rich element (AUUUA)n, found in the 3' noncoding region of many short-lived cytokine and proto-oncogene mRNAs, is sufficient to specifically target these mRNAs for rapid degradation in mammalian cells. The mechanism by which the AU-rich element promotes rapid mRNA decay is not known. Previous studies have shown that release of intracellular stored calcium by ionophore treatment of thymocytes and mast cells inhibits the rapid turnover of AU-rich interleukin mRNAs. Increased cytoplasmic half-life of interleukin mRNAs was linked to calcium-induced activation of the N-terminal c-Jun kinase. In this report we have characterized the calcium-induced stabilization of AU-rich mRNAs. We show that calcium induces stabilization of mRNAs with canonical AU-rich elements in all cell types tested. These results indicate that short-lived mRNA stabilization by calcium is not unique to immune cells nor interleukin mRNAs, but is a widespread default response that includes generic AU-rich mRNAs. Stabilization is shown to be rapid but transient, and to act without altering nuclear transcription or cytoplasmic translation rates. These data support the view that calcium release likely stabilizes short-lived mRNAs by altering trans-acting decay factors that promote AU-rich mRNA turnover.

摘要

富含AU元件(AUUUA)n存在于许多短寿命细胞因子和原癌基因mRNA的3'非编码区,足以特异性地靶向这些mRNA,使其在哺乳动物细胞中快速降解。富含AU元件促进mRNA快速降解的机制尚不清楚。先前的研究表明,用离子载体处理胸腺细胞和肥大细胞释放细胞内储存的钙会抑制富含AU的白细胞介素mRNA的快速周转。白细胞介素mRNA细胞质半衰期的延长与钙诱导的N端c-Jun激酶激活有关。在本报告中,我们对钙诱导的富含AU的mRNA的稳定性进行了表征。我们表明,在所有测试的细胞类型中,钙都会诱导具有典型富含AU元件的mRNA的稳定。这些结果表明,钙对短寿命mRNA的稳定作用并非免疫细胞和白细胞介素mRNA所特有,而是一种广泛存在的默认反应,包括一般的富含AU的mRNA。已证明这种稳定作用迅速但短暂,且在不改变核转录或细胞质翻译速率的情况下起作用。这些数据支持这样一种观点,即钙释放可能通过改变促进富含AU的mRNA周转的反式作用衰变因子来稳定短寿命mRNA。

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