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Transcriptome-Wide Identification of RNA Targets of Arabidopsis SERINE/ARGININE-RICH45 Uncovers the Unexpected Roles of This RNA Binding Protein in RNA Processing

机译:拟南芥SERINE / ARGININE-RICH45的RNA靶标的转录组全域识别揭示了该RNA结合蛋白在RNA加工中的意外作用

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摘要

Plant SR45 and its metazoan ortholog RNPS1 are serine/arginine-rich (SR)-like RNA binding proteins that function in splicing/postsplicing events and regulate diverse processes in eukaryotes. Interactions of SR45 with both RNAs and proteins are crucial for regulating RNA processing. However, in vivo RNA targets of SR45 are currently unclear. Using RNA immunoprecipitation followed by high-throughput sequencing, we identified over 4000 Arabidopsis thaliana RNAs that directly or indirectly associate with SR45, designated as SR45-associated RNAs (SARs). Comprehensive analyses of these SARs revealed several roles for SR45. First, SR45 associates with and regulates the expression of 30% of abscisic acid (ABA) signaling genes at the postsplicing level. Second, although most SARs are derived from intron-containing genes, surprisingly, 340 SARs are derived from intronless genes. Expression analysis of the SARs suggests that SR45 differentially regulates intronless and intron-containing SARs. Finally, we identified four overrepresented RNA motifs in SARs that likely mediate SR45's recognition of its targets. Therefore, SR45 plays an unexpected role in mRNA processing of intronless genes, and numerous ABA signaling genes are targeted for regulation at the posttranscriptional level. The diverse molecular functions of SR45 uncovered in this study are likely applicable to other species in view of its conservation across eukaryotes.
机译:植物SR45及其后生直系同源物RNPS1是富含丝氨酸/精氨酸(SR)的RNA结合蛋白,在剪接/剪接后起作用,并调节真核生物的各种过程。 SR45与RNA和蛋白质的相互作用对于调节RNA加工至关重要。然而,目前尚不清楚SR45的体内RNA靶标。使用RNA免疫沉淀,然后进行高通量测序,我们鉴定了4000多个与SR45直接或间接相关的拟南芥RNA,称为SR45相关RNA(SAR)。对这些SAR的综合分析揭示了SR45的几个作用。首先,SR45在后拼接水平上与30%的脱落酸(ABA)信号基因相关并调节其表达。其次,尽管大多数SAR都源自含内含子的基因,但令人惊讶的是,340 SAR却源自无内含子的基因。 SAR的表达分析表明SR45差异调节无内含子和含内含子的SAR。最后,我们在SAR中鉴定了四个过度表达的RNA基序,这些基序可能介导了SR45对其靶标的识别。因此,SR45在无内含子基因的mRNA加工中起着意想不到的作用,并且许多ABA信号转导基因被靶向在转录后水平进行调控。鉴于跨真核生物的保守性,本研究中发现的SR45的多种分子功能可能适用于其他物种。

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