Recent findings demonstrate that multiple mRNAs are co-regulated by one or more sequence-specific RNA-binding proteins that orchestrate their splicing, export, stability, localization and translation. These and other observations have given rise to a model in which mRNAs that encode functionally related proteins are coordinately regulated during cell growth and differentiation as post-transcriptional RNA operons or regulons, through a ribonucleoprotein-driven mechanism. Here I describe several recently discovered examples of RNA operons in budding yeast, fruitfly and mammalian cells, and their potential importance in processes such as immune response, oxidative metabolism, stress response, circadian rhythms and disease. I close by considering the evolutionary wiring and rewiring of these combinatorial post-transcriptional gene-expression networks.

译文

最近的发现表明,多种mrna由一种或多种序列特异性RNA结合蛋白共同调控,这些蛋白协调了它们的剪接,输出,稳定性,定位和翻译。这些和其他观察结果产生了一个模型,在该模型中,编码功能相关蛋白的mrna在细胞生长和分化过程中通过核糖核蛋白驱动的机制作为转录后RNA操纵子或调控子被协同调控。在这里,我描述了最近发现的几个在发芽的酵母,果蝇和哺乳动物细胞中的RNA操纵子的例子,以及它们在免疫反应,氧化代谢,应激反应,昼夜节律和疾病等过程中的潜在重要性。最后,我考虑了这些组合转录后基因表达网络的进化和重新布线。

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