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首页> 外文期刊>The Plant Cell >SKIP is a component of the spliceosome linking alternative splicing and the circadian clock in Arabidopsis.
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SKIP is a component of the spliceosome linking alternative splicing and the circadian clock in Arabidopsis.

机译:SKIP是拟南芥中剪接体连接替代剪接和生物钟的组成部分。

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Circadian clocks generate endogenous rhythms in most organisms from cyanobacteria to humans and facilitate entrainment to environmental diurnal cycles, thus conferring a fitness advantage. Both transcriptional and posttranslational mechanisms are prominent in the basic network architecture of circadian systems. Posttranscriptional regulation, including mRNA processing, is emerging as a critical step for clock function. However, little is known about the molecular mechanisms linking RNA metabolism to the circadian clock network. Here, we report that a conserved SNW/Ski-interacting protein (SKIP) domain protein, SKIP, a splicing factor and component of the spliceosome, is involved in posttranscriptional regulation of circadian clock genes in Arabidopsis thaliana. Mutation in SKIP lengthens the circadian period in a temperature-sensitive manner and affects light input and the sensitivity of the clock to light resetting. SKIP physically interacts with the spliceosomal splicing factor Ser/Arg-rich protein45 and associates with the pre-mRNA of clock genes, such as PSEUDORESPONSE REGULATOR7 (PRR7) and PRR9, and is necessary for the regulation of their alternative splicing and mRNA maturation. Genome-wide investigations reveal that SKIP functions in regulating alternative splicing of many genes, presumably through modulating recognition or cleavage of 5' and 3' splice donor and acceptor sites. Our study addresses a fundamental question on how the mRNA splicing machinery contributes to circadian clock function at a posttranscriptional level.
机译:昼夜节律在从蓝细菌到人类的大多数生物体中产生内源性节律,并促进了环境昼夜循环的夹带,因此具有健身优势。在昼夜节律系统的基本网络体系结构中,转录机制和翻译后机制都非常重要。转录后调控,包括mRNA加工,正在成为时钟功能的关键步骤。但是,关于将RNA代谢与生物钟网络联系起来的分子机制知之甚少。在这里,我们报告一个保守的SNW / Ski相互作用蛋白(SKIP)域蛋白,SKIP,一个剪接因子和剪接体的组件,参与拟南芥中生物钟基因的转录后调控。 SKIP的突变以对温度敏感的方式延长了昼夜节律周期,并影响了光输入和时钟对光复位的敏感性。 SKIP与剪接体剪接因子富含Ser / Arg的蛋白质45发生物理相互作用,并与时钟基因的前mRNA结合,例如PSEUDORESPONSE REGULATOR7(PRR7)和PRR9,对于调节其选择性剪接和mRNA成熟是必不可少的。全基因组研究表明,SKIP可能通过调节5'和3'剪接供体和受体位点的识别或切割来调控许多基因的可变剪接。我们的研究解决了一个基本问题,即mRNA剪接机制如何在转录后水平上促进昼夜节律功能。

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