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一种非常规的依赖RDR2的小RNA对玉米HD-ZIP IV转录因子的调控

Regulation of a maize HD-ZIP IV transcription factor by a non-conventional RDR2-dependent small RNA.

作者信息

Klein-Cosson Catherine, Chambrier Pierre, Rogowsky Peter M, Vernoud Vanessa

机构信息

Unité Reproduction et Développement des Plantes, Université de Lyon, Ecole Normale Supérieure de Lyon, Université Lyon 1, F-69364, Lyon, France; Institut National de la Recherche Agronomique, UMR879 Reproduction et Développement des Plantes, F-69364, Lyon, France; Centre National de la Recherche Scientifique, UMR5667 Reproduction et Développement des Plantes, F-69364, Lyon, France.

出版信息

Plant J. 2015 Mar;81(5):747-58. doi: 10.1111/tpj.12771.

Abstract

Small non-coding RNAs are versatile riboregulators that control gene expression at the transcriptional or post-transcriptional level, governing many facets of plant development. Here we present evidence for the existence of a 24 nt small RNA (named small1) that is complementary to the 3' UTR of OCL1 (Outer Cell Layer1), the founding member of the maize HD-ZIP IV gene family encoding plant-specific transcription factors that are mainly involved in epidermis differentiation and specialization. The biogenesis of small1 depends on DICER-like 3 (DCL3), RNA-dependent RNA polymerase 2 (RDR2) and RNA polymerase IV, components that are usually required for RNA-dependent DNA-methylation. Unexpectedly, GFP sensor experiments in transient and stable transformation systems revealed that small1 may regulate its target at the post-transcriptional level, mainly through translational repression. This translational repression is attenuated in an rdr2 mutant background in which small1 does not accumulate. Our experiments further showed the possible involvement of a secondary stem-loop structure present in the 3' UTR of OCL1 for efficient target repression, suggesting the existence of several regulatory mechanisms affecting OCL1 mRNA stability and translation.

摘要

小非编码RNA是多功能的核糖调节因子,可在转录或转录后水平控制基因表达,调控植物发育的多个方面。在此,我们提供证据证明存在一种24个核苷酸的小RNA(命名为small1),它与OCL1(外层细胞层1)的3'UTR互补,OCL1是玉米HD-ZIP IV基因家族的创始成员,该家族编码主要参与表皮分化和特化的植物特异性转录因子。small1的生物合成依赖于Dicer样3(DCL3)、RNA依赖性RNA聚合酶2(RDR2)和RNA聚合酶IV,这些是RNA依赖性DNA甲基化通常所需的成分。出乎意料的是,在瞬时和稳定转化系统中的绿色荧光蛋白传感器实验表明,small1可能主要通过翻译抑制在转录后水平调节其靶标。在small1不积累的rdr2突变体背景中,这种翻译抑制作用减弱。我们的实验进一步表明,OCL1的3'UTR中存在的二级茎环结构可能参与有效的靶标抑制,这表明存在多种影响OCL1 mRNA稳定性和翻译的调控机制。

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