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RNA 降解组分析显示 DNE1 内切核酸酶在拟南芥多种 mRNA 底物的周转中是必需的。

RNA degradome analysis reveals DNE1 endoribonuclease is required for the turnover of diverse mRNA substrates in Arabidopsis.

机构信息

Delaware Biotechnology Institute, University of Delaware, Newark, DE 19713-1316, USA.

Bio-Imaging Center, Delaware Biotechnology Institute, University of Delaware, Newark, DE 19713-1316, USA.

出版信息

Plant Cell. 2023 May 29;35(6):1936-1955. doi: 10.1093/plcell/koad085.

Abstract

In plants, cytoplasmic mRNA decay is critical for posttranscriptionally controlling gene expression and for maintaining cellular RNA homeostasis. Arabidopsis DCP1-ASSOCIATED NYN ENDORIBONUCLEASE 1 (DNE1) is a cytoplasmic mRNA decay factor that interacts with proteins involved in mRNA decapping and nonsense-mediated mRNA decay (NMD). There is limited information on the functional role of DNE1 in RNA turnover, and the identities of its endogenous targets are unknown. In this study, we utilized RNA degradome approaches to globally investigate DNE1 substrates. Monophosphorylated 5' ends, produced by DNE1, should accumulate in mutants lacking the cytoplasmic exoribonuclease XRN4, but be absent from DNE1 and XRN4 double mutants. In seedlings, we identified over 200 such transcripts, most of which reflect cleavage within coding regions. While most DNE1 targets were NMD-insensitive, some were upstream ORF (uORF)-containing and NMD-sensitive transcripts, indicating that this endoribonuclease is required for turnover of a diverse set of mRNAs. Transgenic plants expressing DNE1 cDNA with an active-site mutation in the endoribonuclease domain abolished the in planta cleavage of transcripts, demonstrating that DNE1 endoribonuclease activity is required for cleavage. Our work provides key insights into the identity of DNE1 substrates and enhances our understanding of DNE1-mediated mRNA decay.

摘要

在植物中,细胞质 mRNA 衰减对于转录后控制基因表达和维持细胞 RNA 稳态至关重要。拟南芥 DCP1 相关 NYN 内切核糖核酸酶 1(DNE1)是一种细胞质 mRNA 降解因子,与参与 mRNA 去帽和无意义介导的 mRNA 降解(NMD)的蛋白质相互作用。关于 DNE1 在 RNA 周转中的功能作用的信息有限,其内源性靶标的身份尚不清楚。在这项研究中,我们利用 RNA 降解组学方法全面研究 DNE1 的底物。DNE1 产生的单磷酸化 5' 末端应该在缺乏细胞质外切核糖核酸酶 XRN4 的突变体中积累,但在 DNE1 和 XRN4 双突变体中不存在。在幼苗中,我们鉴定了超过 200 个这样的转录本,其中大多数反映了编码区域内的切割。虽然大多数 DNE1 靶标对 NMD 不敏感,但有些是含有上游 ORF(uORF)且对 NMD 敏感的转录本,这表明这种内切核糖核酸酶是多种 mRNA 周转所必需的。在植物中表达具有内切核糖核酸酶结构域活性位点突变的 DNE1 cDNA 的转基因植物消除了转录本的体内切割,证明 DNE1 内切核糖核酸酶活性是切割所必需的。我们的工作提供了对 DNE1 底物身份的关键见解,并增强了我们对 DNE1 介导的 mRNA 降解的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4804/10226599/041eda888e18/koad085f1.jpg

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