Alternative splicing regulates vesicular trafficking genes in cardiomyocytes during postnatal heart development

被引:0
|
作者
Jimena Giudice
Zheng Xia
Eric T. Wang
Marissa A. Scavuzzo
Amanda J. Ward
Auinash Kalsotra
Wei Wang
Xander H. T. Wehrens
Christopher B. Burge
Wei Li
Thomas A. Cooper
机构
[1] Baylor College of Medicine,Department of Pathology and Immunology
[2] Baylor College of Medicine,Department of Molecular and Cellular Biology
[3] Dan L Duncan Cancer Center,Division of Biostatistics
[4] Baylor College of Medicine,Department of Biology
[5] Massachusetts Institute of Technology,Department of Molecular Physiology and Biophysics
[6] Koch Institute for Integrative Cancer Research,Department of Medicine
[7] Massachusetts Institute of Technology,undefined
[8] Baylor College of Medicine,undefined
[9] Baylor College of Medicine,undefined
[10] Present address: Isis Pharmaceuticals,undefined
[11] Carlsbad,undefined
[12] California 92010,undefined
[13] USA,undefined
[14] Present address: Departments of Biochemistry and Medical Biochemistry,undefined
[15] University of Illinois,undefined
[16] Urbana-Champaign,undefined
[17] Illinois 61801,undefined
[18] USA,undefined
来源
Nature Communications | / 5卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
During postnatal development the heart undergoes a rapid and dramatic transition to adult function through transcriptional and post-transcriptional mechanisms, including alternative splicing (AS). Here we perform deep RNA-sequencing on RNA from cardiomyocytes and cardiac fibroblasts to conduct a high-resolution analysis of transcriptome changes during postnatal mouse heart development. We reveal extensive changes in gene expression and AS that occur primarily between postnatal days 1 and 28. Cardiomyocytes and cardiac fibroblasts show reciprocal regulation of gene expression reflecting differences in proliferative capacity, cell adhesion functions and mitochondrial metabolism. We further demonstrate that AS plays a role in vesicular trafficking and membrane organization. These AS transitions are enriched among targets of two RNA-binding proteins, Celf1 and Mbnl1, which undergo developmentally regulated changes in expression. Vesicular trafficking genes affected by AS during normal development (when Celf1 is downregulated) show a reversion to neonatal splicing patterns after Celf1 re-expression in adults. Short-term Celf1 induction in adult animals results in disrupted transverse tubule organization and calcium handling. These results identify potential roles for AS in multiple aspects of postnatal heart maturation, including vesicular trafficking and intracellular membrane dynamics.
引用
收藏
相关论文
共 50 条
  • [1] Alternative splicing regulates vesicular trafficking genes in cardiomyocytes during postnatal heart development
    Giudice, Jimena
    Xia, Zheng
    Wang, Eric T.
    Scavuzzo, Marissa A.
    Ward, Amanda J.
    Kalsotra, Auinash
    Wang, Wei
    Wehrens, Xander H. T.
    Burge, Christopher B.
    Li, Wei
    Cooper, Thomas A.
    NATURE COMMUNICATIONS, 2014, 5
  • [2] MicroRNAs coordinate an alternative splicing network during mouse postnatal heart development
    Kalsotra, Auinash
    Wang, Kun
    Li, Pei-Feng
    Cooper, Thomas A.
    GENES & DEVELOPMENT, 2010, 24 (07) : 653 - 658
  • [3] Alternative splicing regulation of membrane trafficking genes during myogenesis
    Hinkle, Emma R.
    Wiedner, Hannah J.
    Torres, Eduardo, V
    Jackson, Micaela
    Black, Adam J.
    Blue, R. Eric
    Harris, Sarah E.
    Guzman, Bryan B.
    Gentile, Gabrielle M.
    Lee, Eunice Y.
    Tsai, Yi-Hsuan
    Parker, Joel
    Dominguez, Daniel
    Giudice, Jimena
    RNA, 2022, 28 (04) : 523 - 540
  • [4] Protein Kinase C regulates alternative splicing transitions during heart development
    Verma, Sunil K.
    Deshmukh, Vaibhav
    Kuyumcu-Martinez, Muge N.
    CIRCULATION RESEARCH, 2013, 113 (04)
  • [5] Alternative Splicing of Four Trafficking Genes Regulates Myofiber Structure and Skeletal Muscle Physiology
    Giudice, Jimena
    Loehr, James A.
    Rodney, George G.
    Cooper, Thomas A.
    CELL REPORTS, 2016, 17 (08): : 1923 - 1933
  • [6] Alternative Splicing Networks During Postnatal Mouse Atria Development
    Gentile, Gabrielle
    Blue, Eric
    Giudice, Jimena
    CIRCULATION RESEARCH, 2023, 133
  • [7] Alternative splicing of genes expressed during early embryonic development
    Revil, Timothee
    Gaffney, Daniel
    Dias, Christel
    Majewski, Jacek
    Jerome-Majewska, Loydie A.
    DEVELOPMENTAL BIOLOGY, 2009, 331 (02) : 427 - 428
  • [8] Insights into alternative splicing of sarcomeric genes in the heart
    Weeland, Cornelis J.
    van den Hoogenhof, Maarten M.
    Beqqali, Abdelaziz
    Creemers, Esther E.
    JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2015, 81 : 107 - 113
  • [9] Dynamic balance between activation and repression regulates pre-mRNA alternative splicing during heart development
    Ladd, AN
    Stenberg, MG
    Swanson, MS
    Cooper, TA
    DEVELOPMENTAL DYNAMICS, 2005, 233 (03) : 783 - 793
  • [10] Metabolic Signaling Regulates Alternative Splicing during Photomorphogenesis
    Farquharson, Kathleen L.
    PLANT CELL, 2016, 28 (11): : 2697 - 2697