Literature DB >> 25684655

The Splicing Factor PRP31 Is Involved in Transcriptional Gene Silencing and Stress Response in Arabidopsis.

Jin-Lu Du1, Su-Wei Zhang2, Huan-Wei Huang2, Tao Cai2, Lin Li2, She Chen2, Xin-Jian He3.   

Abstract

Although DNA methylation is known to play an important role in the silencing of transposable elements (TEs) and introduced transgenes, the mechanisms that generate DNA methylation-independent transcriptional silencing are poorly understood. Previous studies suggest that RNA-directed DNA methylation (RdDM) is required for the silencing of the RD29A-LUC transgene in the Arabidopsis ros1 mutant background with defective DNA demethylase. Loss of function of ARGONAUTE 4 (AGO4) gene, which encodes a core RdDM component, partially released the silencing of RD29A-LUC in the ros1/ago4 double mutant plants. A forward genetic screen was performed to identify the mutants with elevated RD29A-LUC transgene expression in the ros1/ago4 mutant background. We identified a mutation in the homologous gene of PRP31, which encodes a conserved pre-mRNA splicing factor that regulates the formation of the U4/U6.U5 snRNP complex in fungi and animals. We previously demonstrated that the splicing factors ZOP1 and STA1 contribute to transcriptional gene silencing. Here, we reveal that Arabidopsis PRP31 associates with ZOP1, STA1, and several other splicing-related proteins, suggesting that these splicing factors are both physically and functionally connected. We show that Arabidopsis PRP31 participates in transcriptional gene silencing. Moreover, we report that PRP31, STA1, and ZOP1 are required for development and stress response. Under cold stress, PRP31 is not only necessary for pre-mRNA splicing but also for regulation of cold-responsive gene expression. Our results suggest that the splicing machinery has multiple functions including pre-mRNA splicing, gene regulation, transcriptional gene silencing, and stress response.
Copyright © 2015 The Author. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  DNA methylation; PRP31; splicing factor; stress response; transcriptional gene silencing

Mesh:

Substances:

Year:  2015        PMID: 25684655     DOI: 10.1016/j.molp.2015.02.003

Source DB:  PubMed          Journal:  Mol Plant        ISSN: 1674-2052            Impact factor:   13.164


  17 in total

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3.  Spliceosomal protein U1A is involved in alternative splicing and salt stress tolerance in Arabidopsis thaliana.

Authors:  Jinbao Gu; Zhiqiang Xia; Yuehua Luo; Xingyu Jiang; Bilian Qian; He Xie; Jian-Kang Zhu; Liming Xiong; Jianhua Zhu; Zhen-Yu Wang
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4.  Arabidopsis SME1 Regulates Plant Development and Response to Abiotic Stress by Determining Spliceosome Activity Specificity.

Authors:  Raul Huertas; Rafael Catalá; José M Jiménez-Gómez; M Mar Castellano; Pedro Crevillén; Manuel Piñeiro; José A Jarillo; Julio Salinas
Journal:  Plant Cell       Date:  2019-01-29       Impact factor: 11.277

5.  Environment-dependent regulation of spliceosome activity by the LSM2-8 complex in Arabidopsis.

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Journal:  Nucleic Acids Res       Date:  2017-07-07       Impact factor: 16.971

6.  A Lipid-Anchored NAC Transcription Factor Is Translocated into the Nucleus and Activates Glyoxalase I Expression during Drought Stress.

Authors:  Mei Duan; Rongxue Zhang; Fugui Zhu; Zhenqian Zhang; Lanming Gou; Jiangqi Wen; Jiangli Dong; Tao Wang
Journal:  Plant Cell       Date:  2017-07-06       Impact factor: 11.277

7.  The Rice Serine/Arginine Splicing Factor RS33 Regulates Pre-mRNA Splicing during Abiotic Stress Responses.

Authors:  Haroon Butt; Jeremie Bazin; Kasavajhala V S K Prasad; Nourelislam Awad; Martin Crespi; Anireddy S N Reddy; Magdy M Mahfouz
Journal:  Cells       Date:  2022-05-30       Impact factor: 7.666

8.  DEAD-Box RNA Helicase 42 Plays a Critical Role in Pre-mRNA Splicing under Cold Stress.

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Review 9.  Engineering salinity tolerance in plants: progress and prospects.

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Review 10.  Pre-mRNA Splicing in Plants: In Vivo Functions of RNA-Binding Proteins Implicated in the Splicing Process.

Authors:  Katja Meyer; Tino Koester; Dorothee Staiger
Journal:  Biomolecules       Date:  2015-07-24
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