首页> 外文期刊>The Plant Cell >The m(6)A Reader ECT2 Controls Trichome Morphology by Affecting mRNA Stability in Arabidopsis([OPEN])
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The m(6)A Reader ECT2 Controls Trichome Morphology by Affecting mRNA Stability in Arabidopsis([OPEN])

机译:M(6)通过影响拟南芥MRNA稳定性来控制培养体形态([打开])

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摘要

The epitranscriptomic mark N-6-methyladenosine (m(6)A) can be written, read, and erased via the action of a complex network of proteins. m(6)A binding proteins read m(6)A marks and transduce their downstream regulatory effects by altering RNA metabolic processes. The characterization of m(6)A readers is an essential prerequisite for understanding the roles of m(6)A in plants, but the identities of m(6)A readers have been unclear. Here, we characterized the YTH-domain family protein ECT2 as an Arabidopsis thaliana m(6)A reader whose m(6)A binding function is required for normal trichome morphology. We developed the formaldehyde cross-linking and immunoprecipitation method to identify ECT2-RNA interaction sites at the transcriptome-wide level. This analysis demonstrated that ECT2 binding sites are strongly enriched in the 3' untranslated regions (3' UTRs) of target genes and led to the identification of a plant-specific m(6)A motif. Sequencing analysis suggested that ECT2 plays dual roles in regulating 3' UTR processing in the nucleus and facilitating mRNA stability in the cytoplasm. Disruption of ECT2 accelerated the degradation of three ECT2 binding transcripts related to trichome morphogenesis, thereby affecting trichome branching. The results shed light on the underlying mechanisms of the roles of m(6)A in RNA metabolism, as well as plant development and physiology.
机译:通过复杂的蛋白质的作用,可以写入,读取和擦除eAtrAstmadomic标记N-6-甲基碳糖苷酸(M(6)a)。 M(6)结合蛋白质读取M(6)A标记并通过改变RNA代谢过程来转换其下游调节效果。 M(6)读者的表征是了解M(6)A在植物中的角色,而是M(6)读者的身份尚不清楚的是必要的先决条件。在此,我们将Yth-Comainse Family蛋白Ect2作为拟南芥M(6)读者,其M(6)是正常培养体形态所需的读取器。我们开发了甲醛交联和免疫沉淀方法,以鉴定转录组宽水平的Ect2-RNA相互作用位点。该分析表明,靶基因的3'未转换区域(3'UTRS)强烈富集Ect2结合位点,并导致鉴定植物特异性的M(6)基序。测序分析表明,ECT2在调节核中的3'UTR加工方面发挥双重作用,并促进细胞质中的mRNA稳定性。 Ect2的破坏加速了与滴毛组形态发生相关的三种Ect2结合转录物的降解,从而影响毛状体的分支。结果阐明了脊髓碱基的潜在机制,以及植物发育和生理学。

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    《The Plant Cell》 |2018年第5期|共18页
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  • 正文语种 eng
  • 中图分类 植物细胞学;
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