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A KH-Domain RNA-Binding Protein Interacts with FIERY2/CTD Phosphatase-Like 1 and Splicing Factors and Is Important for Pre-mRNA Splicing in Arabidopsis

机译:KH域RNA结合蛋白与FIERY2 / CTD磷酸酶样1和剪接因子相互作用,并且对于拟南芥中的pre-mRNA剪接很重要

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摘要

Eukaryotic genomes encode hundreds of RNA-binding proteins, yet the functions of most of these proteins are unknown. In a genetic study of stress signal transduction in Arabidopsis, we identified a K homology (KH)-domain RNA-binding protein, HOS5 (High Osmotic Stress Gene Expression 5), as required for stress gene regulation and stress tolerance. HOS5 was found to interact with FIERY2/RNA polymerase II (RNAP II) carboxyl terminal domain (CTD) phosphatase-like 1 (FRY2/CPL1) both in vitro and in vivo. This interaction is mediated by the first double-stranded RNA-binding domain of FRY2/CPL1 and the KH domains of HOS5. Interestingly, both HOS5 and FRY2/CPL1 also interact with two novel serine-arginine (SR)-rich splicing factors, RS40 and RS41, in nuclear speckles. Importantly, FRY2/CPL1 is required for the recruitment of HOS5. In fry2 mutants, HOS5 failed to be localized in nuclear speckles but was found mainly in the nucleoplasm. hos5 mutants were impaired in mRNA export and accumulated a significant amount of mRNA in the nuclei, particularly under salt stress conditions. Arabidopsis mutants of all these genes exhibit similar stress-sensitive phenotypes. RNA-seq analyses of these mutants detected significant intron retention in many stress-related genes under salt stress but not under normal conditions. Our study not only identified several novel regulators of pre-mRNA processing as important for plant stress response but also suggested that, in addition to RNAP II CTD that is a well-recognized platform for the recruitment of mRNA processing factors, FRY2/CPL1 may also recruit specific factors to regulate the co-transcriptional processing of certain transcripts to deal with environmental challenges. © 2013 Chen et al.
机译:真核基因组编码数百种RN​​A结合蛋白,但大多数这些蛋白的功能尚不清楚。在拟南芥中胁迫信号转导的遗传研究中,我们确定了K基因同源性(KH)域RNA结合蛋白HOS5(高渗透胁迫基因表达5),这是应激基因调控和胁迫耐受性所必需的。发现在体外和体内,HOS5与FIERY2 / RNA聚合酶II(RNAP II)羧基末端域(CTD)磷酸酶样1(FRY2 / CPL1)相互作用。这种相互作用是由FRY2 / CPL1的第一个双链RNA结合结构域和HOS5的KH结构域介导的。有趣的是,HOS5和FRY2 / CPL1都与两个新的富含丝氨酸-精氨酸(SR)的剪接因子RS40和RS41相互作用。重要的是,要招募HOS5,需要FRY2 / CPL1。在fry2突变体中,HOS5未能定位在核斑中,但主要在核质中发现。 hos5突变体的mRNA输出受损,并且在细胞核中积累了大量的mRNA,特别是在盐胁迫条件下。所有这些基因的拟南芥突变体表现出相似的胁迫敏感性表型。这些突变体的RNA-seq分析在盐胁迫下但在正常条件下未检测到许多胁迫相关基因中显着的内含子保留。我们的研究不仅确定了几种新型的前mRNA加工调节剂对于植物逆境响应很重要,而且还表明,除了RNAP II CTD是公认的招募mRNA加工因子的平台外,FRY2 / CPL1还可招募特定因素来规范某些转录本的共转录​​处理以应对环境挑战。 ©2013 Chen等。

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