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拟南芥剪接因子SF1的RRM结构域对一组特定基因的前体mRNA剪接很重要。

RRM domain of Arabidopsis splicing factor SF1 is important for pre-mRNA splicing of a specific set of genes.

作者信息

Lee Keh Chien, Jang Yun Hee, Kim Soon-Kap, Park Hyo-Young, Thu May Phyo, Lee Jeong Hwan, Kim Jeong-Kook

机构信息

Division of Life Sciences, Korea University, 145 Anam-ro, Seongbuk-gu, Seoul, 02841, Republic of Korea.

Center for Desert Agriculture, Division of Biological and Environmental Sciences and Engineering, King Abdullah University of Science and Technology, Thuwal, 23955-6900, Saudi Arabia.

出版信息

Plant Cell Rep. 2017 Jul;36(7):1083-1095. doi: 10.1007/s00299-017-2140-1. Epub 2017 Apr 11.

Abstract

The RNA recognition motif of Arabidopsis splicing factor SF1 affects the alternative splicing of FLOWERING LOCUS M pre-mRNA and a heat shock transcription factor HsfA2 pre-mRNA. Splicing factor 1 (SF1) plays a crucial role in 3' splice site recognition by binding directly to the intron branch point. Although plant SF1 proteins possess an RNA recognition motif (RRM) domain that is absent in its fungal and metazoan counterparts, the role of the RRM domain in SF1 function has not been characterized. Here, we show that the RRM domain differentially affects the full function of the Arabidopsis thaliana AtSF1 protein under different experimental conditions. For example, the deletion of RRM domain influences AtSF1-mediated control of flowering time, but not the abscisic acid sensitivity response during seed germination. The alternative splicing of FLOWERING LOCUS M (FLM) pre-mRNA is involved in flowering time control. We found that the RRM domain of AtSF1 protein alters the production of alternatively spliced FLM-β transcripts. We also found that the RRM domain affects the alternative splicing of a heat shock transcription factor HsfA2 pre-mRNA, thereby mediating the heat stress response. Taken together, our results suggest the importance of RRM domain for AtSF1-mediated alternative splicing of a subset of genes involved in the regulation of flowering and adaptation to heat stress.

摘要

拟南芥剪接因子SF1的RNA识别基序影响开花位点M前体mRNA和热激转录因子HsfA2前体mRNA的可变剪接。剪接因子1(SF1)通过直接结合内含子分支点在3'剪接位点识别中起关键作用。尽管植物SF1蛋白具有其真菌和后生动物对应物中不存在的RNA识别基序(RRM)结构域,但RRM结构域在SF1功能中的作用尚未得到表征。在这里,我们表明RRM结构域在不同实验条件下对拟南芥AtSF1蛋白的完整功能有不同影响。例如,RRM结构域的缺失影响AtSF1介导的开花时间控制,但不影响种子萌发期间的脱落酸敏感性反应。开花位点M(FLM)前体mRNA的可变剪接参与开花时间控制。我们发现AtSF1蛋白的RRM结构域改变了可变剪接的FLM-β转录本的产生。我们还发现RRM结构域影响热激转录因子HsfA2前体mRNA的可变剪接,从而介导热应激反应。综上所述,我们的结果表明RRM结构域对于AtSF1介导的参与开花调控和热应激适应的一部分基因的可变剪接很重要。

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