Plant Stress Signaling, Instituto Gulbenkian de Ciência, Rua da Quinta Grande - 6, 2780-156 Oeiras, Portugal.
Department of Molecular Biology, Max Planck Institute for Developmental Biology, D-72076 Tübingen, Germany.
Mol Plant. 2015 Feb;8(2):261-75. doi: 10.1016/j.molp.2014.10.003. Epub 2014 Dec 11.
MicroRNAs (miRNAs) control gene expression mostly post-transcriptionally by guiding transcript cleavage and/or translational repression of complementary mRNA targets, thereby regulating developmental processes and stress responses. Despite the remarkable expansion of the field, the mechanisms underlying miRNA activity are not fully understood. In this article, we describe a transient expression system in Arabidopsis mesophyll protoplasts, which is highly amenable for the dissection of miRNA pathways. We show that by transiently overexpressing primary miRNAs and target mimics, we can manipulate miRNA levels and consequently impact on their targets. Furthermore, we developed a set of luciferase-based sensors for quantifying miRNA activity that respond specifically to both endogenous and overexpressed miRNAs and target mimics. We demonstrate that these miRNA sensors can be used to test the impact of putative components of the miRNA pathway on miRNA activity, as well as the impact of specific mutations, by either overexpression or the use of protoplasts from the corresponding mutants. We further show that our miRNA sensors can be used for investigating the effect of chemicals on miRNA activity. Our cell-based transient expression system is fast and easy to set up, and generates quantitative results, being a powerful tool for assaying miRNA activity in vivo.
microRNAs(miRNAs)通过引导互补 mRNA 靶标的转录本切割和/或翻译抑制,主要在后转录水平上控制基因表达,从而调节发育过程和应激反应。尽管该领域取得了显著的扩展,但 miRNA 活性的机制仍未完全理解。在本文中,我们描述了一个在拟南芥叶肉原生质体中的瞬时表达系统,该系统非常适合解析 miRNA 途径。我们表明,通过瞬时过表达初级 miRNA 和靶标模拟物,我们可以操纵 miRNA 水平,从而影响其靶标。此外,我们开发了一套基于荧光素酶的传感器,用于定量 miRNA 活性,这些传感器可以特异性地响应内源性和过表达的 miRNA 及其靶标模拟物。我们证明,这些 miRNA 传感器可用于测试 miRNA 途径的假定成分对 miRNA 活性的影响,以及通过过表达或使用相应突变体的原生质体测试特定突变对 miRNA 活性的影响。我们进一步表明,我们的 miRNA 传感器可用于研究化学物质对 miRNA 活性的影响。我们基于细胞的瞬时表达系统快速且易于建立,并产生定量结果,是在体内测定 miRNA 活性的有力工具。