Genome-Wide Analysis of RNA Secondary Structure

被引:164
作者
Bevilacqua, Philip C. [1 ,2 ,3 ]
Ritchey, Laura E. [1 ,3 ]
Su, Zhao [4 ]
Assmann, Sarah M. [4 ]
机构
[1] Penn State Univ, Dept Chem, University Pk, PA 16802 USA
[2] Penn State Univ, Dept Biochem & Mol Biol, University Pk, PA 16802 USA
[3] Penn State Univ, Ctr RNA Mol Biol, University Pk, PA 16802 USA
[4] Penn State Univ, Dept Biol, University Pk, PA 16802 USA
来源
ANNUAL REVIEW OF GENETICS, VOL 50 | 2016年 / 50卷
基金
美国国家科学基金会;
关键词
DMS-seq; genome-wide; in vivo RNA folding; RNA structurome; SHAPE; Structure-seq; NEAREST-NEIGHBOR PARAMETERS; LIVING CELLS; THERMODYNAMIC PARAMETERS; TRANSLATION INITIATION; STRUCTURE PREDICTION; PROTEIN INTERACTION; GENE-EXPRESSION; GLOBAL ANALYSIS; BASE-PAIRS; MOD-SEQ;
D O I
10.1146/annurev-genet-120215-035034
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Single-stranded RNA molecules fold into extraordinarily complicated secondary and tertiary structures as a result of intramolecular base pairing. In vivo, these RNA structures are not static. Instead, they are remodeled in response to changes in the prevailing physicochemical environment of the cell and as a result of intermolecular base pairing and interactions with RNA binding proteins. Remarkable technical advances now allow us to probe RNA secondary structure at single-nucleotide resolution and genome-wide, both in vitro and in vivo. These data sets provide new glimpses into the RNA universe. Analyses of RNA structuromes in HIV, yeast, Arabidopsis, and mammalian cells and tissues have revealed regulatory effects of RNA structure on messenger RNA (mRNA) polyadenylation, splicing, translation, and turnover. Application of new methods for genome-wide identification of mRNA modifications, particularly methylation and pseudouridylation, has shown that the RNA "epitranscriptome" both influences and is influenced by RNA structure. In this review, we describe newly developed genome-wide RNA structure-probing methods and synthesize the information emerging from their application.
引用
收藏
页码:235 / 266
页数:32
相关论文
共 131 条
  • [1] Incorporation of pseudouridine into mRNA enhances translation by diminishing PKR activation
    Anderson, Bart R.
    Muramatsu, Hiromi
    Nallagatla, Subba R.
    Bevilacqua, Philip C.
    Sansing, Lauren H.
    Weissman, Drew
    Kariko, Katalin
    [J]. NUCLEIC ACIDS RESEARCH, 2010, 38 (17) : 5884 - 5892
  • [2] Long-Range Architecture in a Viral RNA Genome
    Archer, Eva J.
    Simpson, Mark A.
    Watts, Nicholas J.
    O'Kane, Rory
    Wang, Bangchen
    Erie, Dorothy A.
    McPherson, Alex
    Weeks, Kevin M.
    [J]. BIOCHEMISTRY, 2013, 52 (18) : 3182 - 3190
  • [3] In Vivo Mapping of Eukaryotic RNA Interactomes Reveals Principles of Higher-Order Organization and Regulation
    Aw, Jong Ghut Ashley
    Shen, Yang
    Wilm, Andreas
    Sun, Miao
    Lim, Xin Ni
    Boon, Kum-Loong
    Tapsin, Sidika
    Chan, Yun-Shen
    Tan, Cheng-Peow
    Sim, Adelene Y. L.
    Zhang, Tong
    Susanto, Teodorus Theo
    Fu, Zhiyan
    Nagarajan, Niranjan
    Wan, Yue
    [J]. MOLECULAR CELL, 2016, 62 (04) : 603 - 617
  • [4] PROTON MAGNETIC RESONANCE STUDIES OF RIBOSE DINUCLEOSIDE MONOPHOSPHATES IN AQUEOUS SOLUTION .2. NATURE OF BASE-STACKING INTERACTION IN ADENYLYL-(3'-]5')-CYTIDINE AND CYTIDYLYL-(3'-]5')-ADENOSINE
    BANGERTE.BW
    CHAN, SI
    [J]. JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1969, 91 (14) : 3910 - &
  • [5] Efficient translation initiation dictates codon usage at gene start
    Bentele, Kajetan
    Saffert, Paul
    Rauscher, Robert
    Ignatova, Zoya
    Bluethgen, Nils
    [J]. MOLECULAR SYSTEMS BIOLOGY, 2013, 9
  • [6] RNA Structures as Mediators of Neurological Diseases and as Drug Targets
    Bernat, Viachaslau
    Disney, Matthew D.
    [J]. NEURON, 2015, 87 (01) : 28 - 46
  • [7] Profiling of Ribose Methylations in RNA by High-Throughput Sequencing
    Birkedal, Ulf
    Christensen-Dalsgaard, Mikkel
    Krogh, Nicolai
    Sabarinathan, Radhakrishnan
    Gorodkin, Jan
    Nielsen, Henrik
    [J]. ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2015, 54 (02) : 451 - 455
  • [8] The RNA-binding domain of ribosomal protein L11 recognizes an rRNA tertiary structure stabilized by both thiostrepton and magnesium ion
    Blyn, Lawrence B.
    Risen, Lisa M.
    Griffey, Richard H.
    Draper, David E.
    [J]. NUCLEIC ACIDS RESEARCH, 2000, 28 (08) : 1778 - 1784
  • [9] Prospects for Riboswitch Discovery and Analysis
    Breaker, Ronald R.
    [J]. MOLECULAR CELL, 2011, 43 (06) : 867 - 879
  • [10] Influence of RNA secondary structure on the pre-mRNA splicing process
    Buratti, E
    Baralle, FE
    [J]. MOLECULAR AND CELLULAR BIOLOGY, 2004, 24 (24) : 10505 - 10514