SRSF6 Regulates the Alternative Splicing of the Apoptotic Fas Gene by Targeting a Novel RNA Sequence

被引:14
|
作者
Choi, Namjeong [1 ]
Jang, Ha Na [1 ]
Oh, Jagyeong [1 ]
Ha, Jiyeon [1 ]
Park, Hyungbin [1 ]
Zheng, Xuexiu [1 ]
Lee, Sunjae [1 ]
Shen, Haihong [1 ]
机构
[1] Gwangju Inst Sci & Technol, Sch Life Sci, Gwangju 61005, South Korea
基金
新加坡国家研究基金会;
关键词
alternative splicing; SRSF6; Fas; EXON; RECOGNITION; DOMAINS; SRP55; RS; IDENTIFICATION; CONTACT; COMPLEX; ASF/SF2; MOTIFS;
D O I
10.3390/cancers14081990
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
Simple Summary Alternative splicing (AS) produces multiple mRNA isoforms from a gene to make a large number of proteins. Fas (Apo-1/CD95) pre-mRNA, a member of TNF receptor family that mediates apoptosis, can generate pro-apoptotic and anti-apoptotic proteins through AS. Here, we identified SRSF6 as an essential regulator protein in Fas AS. We further located a new functional target sequence of SRSF6 in Fas splicing. In addition, our large-scale RNA-seq analysis using GTEX and TCGA indicated that while SRSF6 expression was correlated with Fas expression in normal tissues, the correlation was disrupted in tumors. Our results suggest a novel regulatory mechanisms of Fas AS. Alternative splicing (AS) is a procedure during gene expression that allows the production of multiple mRNAs from a single gene, leading to a larger number of proteins with various functions. The alternative splicing (AS) of Fas (Apo-1/CD95) pre-mRNA can generate membrane-bound or soluble isoforms with pro-apoptotic and anti-apoptotic functions. SRSF6, a member of the Serine/Arginine-rich protein family, plays essential roles in both constitutive and alternative splicing. Here, we identified SRSF6 as an important regulatory protein in Fas AS. The cassette exon inclusion of Fas was decreased by SRSF6-targeting shRNA treatment, but increased by SRSF6 overexpression. The deletion and substitution mutagenesis of the Fas minigene demonstrated that the UGCCAA sequence in the cassette exon of the Fas gene causes the functional disruption of SRSF6, indicating that these sequences are essential for SRSF6 function in Fas splicing. In addition, biotin-labeled RNA-pulldown and immunoblotting analysis showed that SRSF6 interacted with these RNA sequences. Mutagenesis in the splice-site strength alteration demonstrated that the 5 ' splice-site, but not the 3 ' splice-site, was required for the SRSF6 regulation of Fas pre-mRNA. In addition, a large-scale RNA-seq analysis using GTEX and TCGA indicated that while SRSF6 expression was correlated with Fas expression in normal tissues, the correlation was disrupted in tumors. Furthermore, high SRSF6 expression was linked to the high expression of pro-apoptotic and immune activation genes. Therefore, we identified a novel RNA target with 5 ' splice-site dependence of SRSF6 in Fas pre-mRNA splicing, and a correlation between SRSF6 and Fas expression.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Targeting Splicing Factor SRSF6 for Cancer Therapy
    She, Wenting
    Shao, Jun
    Jia, Rong
    FRONTIERS IN CELL AND DEVELOPMENTAL BIOLOGY, 2021, 9
  • [2] SRSF6 regulates alternative splicing of genes involved in DNA damage response and DNA repair in HeLa cells
    Yang, Xiao
    Zhan, Peng
    Feng, Shuqiang
    Ji, He
    Tian, Wenjie
    Wang, Mengdi
    Cheng, Chao
    Song, Bin
    ONCOLOGY REPORTS, 2020, 44 (05) : 1851 - 1862
  • [3] Poison cassette exon splicing of SRSF6 regulates nuclear speckle dispersal and the response to hypoxia
    Machado, Camila de Oliveira Freitas
    Schafranek, Michal
    Brueggemann, Mirko
    Canas, Maria Clara Hernandez
    Keller, Mario
    Di Liddo, Antonella
    Brezski, Andre
    Bluemel, Nicole
    Arnold, Benjamin
    Bremm, Anja
    Wittig, Ilka
    Jae, Nicolas
    McNicoll, Francois
    Dimmeler, Stefanie
    Zarnack, Kathi
    Mueller-McNicoll, Michaela
    NUCLEIC ACIDS RESEARCH, 2023, 51 (02) : 870 - 890
  • [4] The RNA-binding profile of the splicing factor SRSF6 in immortalized human pancreatic β-cells
    Alvelos, Maria Ines
    Brueggemann, Mirko
    Sutandy, F. X. Reymond
    Juan-Mateu, Jonas
    Colli, Maikel Luis
    Busch, Anke
    Lopes, Miguel
    Aartsma-Rus, Annemieke
    Koenig, Julian
    Zarnack, Kathi
    Eizirik, Decio L.
    Castela, Angela
    LIFE SCIENCE ALLIANCE, 2021, 4 (03)
  • [5] SRSF6 balances mitochondrial-driven innate immune outcomes through alternative splicing of BAX
    Wagner, Allison R.
    Weindel, Chi G.
    West, Kelsi O.
    Scott, Haley M.
    Watson, Robert O.
    Patrick, Kristin L.
    Lynch, Kristen W.
    ELIFE, 2022, 11
  • [6] Angiogenic factor AGGF1 is a general splicing factor regulating angiogenesis and vascular development by alternative splicing of SRSF6
    Lv, Wenchao
    Zhang, Jingwen
    Lyu, Dayin
    Zhang, Rui
    Xu, Chengqi
    Ning, Kang
    Li, Mian
    Zhao, Yan
    Han, Jinxiang
    Wang, Qing K.
    FASEB JOURNAL, 2025, 39 (05):
  • [7] Silencing Srsf6 does not modulate incomplete splicing of the huntingtin gene in Huntington’s disease models
    Michael A. Mason
    Casandra Gomez-Paredes
    Kirupa Sathasivam
    Andreas Neueder
    Aikaterini-Smaragdi Papadopoulou
    Gillian P. Bates
    Scientific Reports, 10
  • [8] USP39 promotes hepatocellular carcinogenesis through regulating alternative splicing in cooperation with SRSF6/HNRNPC
    Jingyi Zheng
    Shasha Wu
    Mao Tang
    Shaoyan Xi
    Yanchen Wang
    Jun Ren
    Hao Luo
    Pengchao Hu
    Liangzhan Sun
    Yuyang Du
    Hui Yang
    Fenfen Wang
    Han Gao
    Ziwei Dai
    Xijun Ou
    Yan Li
    Cell Death & Disease, 14
  • [9] USP39 promotes hepatocellular carcinogenesis through regulating alternative splicing in cooperation with SRSF6/HNRNPC
    Zheng, Jingyi
    Wu, Shasha
    Tang, Mao
    Xi, Shaoyan
    Wang, Yanchen
    Ren, Jun
    Luo, Hao
    Hu, Pengchao
    Sun, Liangzhan
    Du, Yuyang
    Yang, Hui
    Wang, Fenfen
    Gao, Han
    Dai, Ziwei
    Ou, Xijun
    Li, Yan
    CELL DEATH & DISEASE, 2023, 14 (10)
  • [10] Silencing Srsf6 does not modulate incomplete splicing of the huntingtin gene in Huntington's disease models
    Mason, Michael A.
    Gomez-Paredes, Casandra
    Sathasivam, Kirupa
    Eueder, Andreas N.
    Apadopoulou, Aikaterini-Smaragdi P.
    Bates, Gillian P.
    SCIENTIFIC REPORTS, 2020, 10 (01)