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Cellular mutants define a common mRNA degradation pathway targeting cytokine AU-rich elements.

机译:细胞突变体定义了针对富含细胞因子AU的元素的常见mRNA降解途径。

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摘要

To functionally classify AU-rich elements (AREs) from six different cytokine mRNAs, we made use of two previously described HT1080-derived cellular mutants (slowA, slowC) that lack a function required for the rapid degradation of interleukin-3 (IL-3) mRNA. Here we show that the defect is specific for ARE-containing mRNAs, whereas nonsense-mediated decay is intact. Degradation of beta-globin reporter transcripts mediated by the AREs of IL-3, GM-CSF, and TNFalpha, as well as by the structurally different and less potent AREs of IL-2 and IL-6, is impaired in both mutants. All these reporter transcripts are also sensitive to decay induced by ectopic expression of the RNA-binding protein tristetraprolin in the slowC background. Thus, we concluded that the mutants slowA and slowC define a common mRNA degradation pathway that targets cytokine AREs. In NIH3T3 cells, this decay pathway becomes incapacitated by upstream signaling from p38 MAP- or PI3-kinases, which independently stabilize cytokine ARE-containingtranscripts. In contrast, c-fos ARE-directed mRNA degradation proceeds through a different pathway not affected by these kinases.
机译:为了从六个不同的细胞因子mRNAs功能上分类富含AU的元件(ARE),我们利用了两个先前描述的HT1080衍生的细胞突变体(slowA,slowC),它们缺乏白介素3(IL-3)快速降解所需的功能。 )mRNA。在这里,我们表明该缺陷是特定于含ARE的mRNA,而无意义介导的衰变是完整的。在两个突变体中,IL-3,GM-CSF和TNFalpha的AREs介导的β-珠蛋白报道转录的降解,以及IL-2和IL-6的结构不同且效力较低的AREs的降解均受到损害。所有这些报告物都对在slowC背景下RNA结合蛋白tristetraprolin的异位表达诱导的衰变敏感。因此,我们得出的结论是,突变体slowA和slowC定义了靶向细胞因子ARE的常见mRNA降解途径。在NIH3T3细胞中,该衰变途径被来自p38 MAP激酶或PI3激酶的上游信号转导失效,后者独立稳定含有细胞因子ARE的转录物。相反,c-fos ARE指导的mRNA降解通过不受这些激酶影响的不同途径进行。

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