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转录组分析揭示 SR45 是拟南芥中一种中性剪接调节剂和先天免疫抑制剂。

Transcriptome analyses reveal SR45 to be a neutral splicing regulator and a suppressor of innate immunity in Arabidopsis thaliana.

机构信息

Biochemistry Program, Department of Biology, St. Bonaventure University, St. Bonaventure, NY, 14778, USA.

CMNS-Institute for Advanced Computer Studies, University of Maryland, College Park, MD, 20742, USA.

出版信息

BMC Genomics. 2017 Oct 11;18(1):772. doi: 10.1186/s12864-017-4183-7.

Abstract

BACKGROUND

Regulation of pre-mRNA splicing diversifies protein products and affects many biological processes. Arabidopsis thaliana Serine/Arginine-rich 45 (SR45), regulates pre-mRNA splicing by interacting with other regulatory proteins and spliceosomal subunits. Although SR45 has orthologs in diverse eukaryotes, including human RNPS1, the sr45-1 null mutant is viable. Narrow flower petals and reduced seed formation suggest that SR45 regulates genes involved in diverse processes, including reproduction. To understand how SR45 is involved in the regulation of reproductive processes, we studied mRNA from the wild-type and sr45-1 inflorescences using RNA-seq, and identified SR45-bound RNAs by immunoprecipitation.

RESULTS

Using a variety of bioinformatics tools, we identified a total of 358 SR45 differentially regulated (SDR) genes, 542 SR45-dependent alternative splicing (SAS) events, and 1812 SR45-associated RNAs (SARs). There is little overlap between SDR genes and SAS genes, and neither set of genes is enriched for flower or seed development. However, transcripts from reproductive process genes are significantly overrepresented in SARs. In exploring the fate of SARs, we found that a total of 81 SARs are subject to alternative splicing, while 14 of them are known Nonsense-Mediated Decay (NMD) targets. Motifs related to GGNGG are enriched both in SARs and near different types of SAS events, suggesting that SR45 recognizes this motif directly. Genes involved in plant defense are significantly over-represented among genes whose expression is suppressed by SR45, and sr45-1 plants do indeed show enhanced immunity.

CONCLUSION

We find that SR45 is a suppressor of innate immunity. We find that a single motif (GGNGG) is highly enriched in both RNAs bound by SR45 and in sequences near SR45- dependent alternative splicing events in inflorescence tissue. We find that the alternative splicing events regulated by SR45 are enriched for this motif whether the effect of SR45 is activation or repression of the particular event. Thus, our data suggests that SR45 acts to control splice site choice in a way that defies simple categorization as an activator or repressor of splicing.

摘要

背景

前体 mRNA 剪接的调控使蛋白质产物多样化,并影响许多生物过程。拟南芥丝氨酸/精氨酸丰富 45(SR45)通过与其他调节蛋白和剪接体亚基相互作用来调节前体 mRNA 的剪接。尽管 SR45 在包括人类 RNPS1 在内的各种真核生物中有同源物,但 sr45-1 缺失突变体是可行的。窄花瓣和减少的种子形成表明,SR45 调节涉及多种过程的基因,包括生殖。为了了解 SR45 如何参与生殖过程的调节,我们使用 RNA-seq 研究了野生型和 sr45-1 花序中的 mRNA,并通过免疫沉淀鉴定了与 SR45 结合的 RNA。

结果

使用各种生物信息学工具,我们总共鉴定出 358 个 SR45 差异调控(SDR)基因、542 个 SR45 依赖性可变剪接(SAS)事件和 1812 个 SR45 相关 RNA(SAR)。SDR 基因和 SAS 基因之间几乎没有重叠,而且这两组基因都没有富集花或种子发育。然而,生殖过程基因的转录本在 SAR 中显著过表达。在探索 SAR 的命运时,我们发现总共 81 个 SAR 受到可变剪接的影响,而其中 14 个是已知的无义介导的衰变(NMD)靶标。与 GGNGG 相关的基序在 SARs 及其附近的不同类型的 SAS 事件中都丰富,这表明 SR45 直接识别该基序。在 SR45 抑制表达的基因中,植物防御相关基因显著过表达,而 sr45-1 植物确实表现出增强的免疫。

结论

我们发现 SR45 是先天免疫的抑制剂。我们发现,在花序组织中,与 SR45 结合的 RNA 以及与 SR45 依赖的可变剪接事件附近的序列中,高度富集了一个单一的基序(GGNGG)。受 SR45 调节的可变剪接事件是否受到 SR45 的激活或抑制,都富含该基序。因此,我们的数据表明,SR45 以一种超越简单分类为剪接激活或抑制因子的方式来控制剪接位点的选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39a2/5637254/680f15c5b732/12864_2017_4183_Fig1_HTML.jpg

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