Construction of DNA/RNA Triplex Helices Based on GAA/TTC Trinucleotide Repeats

被引:3
|
作者
Zhang, Jiahui [1 ]
Fakharzadeh, Ashkan [1 ]
Pan, Feng [2 ]
Roland, Christopher [1 ]
Sagui, Celeste [1 ]
机构
[1] North Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA
[2] Florida State Univ, Dept Stat, Tallahassee, FL 32306 USA
来源
BIO-PROTOCOL | 2021年 / 11卷 / 18期
关键词
DNA/RNA; Triplex helices; Molecular dynamics; Trinucleotide repeats; RNA DOUBLE HELICES; FORCE-FIELD; DNA; DYNAMICS; MICROSATELLITES; GENE; CAG;
D O I
10.21769/BioProtoc.4155
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Atypical DNA and RNA secondary structures play a crucial role in simple sequence repeat (SSR) diseases, which are associated with a class of neurological and neuromuscular disorders known as "anticipation diseases," where the age of disease onset decreases and the severity of the disease is increased as the intergenerational expansion of the SSR increases. While the mechanisms underlying these diseases are complex and remain elusive, there is a consensus that stable, non-B-DNA atypical secondary structures play an important - if not causative - role. These structures include single-stranded DNA loops and hairpins, G-quartets, Z-DNA, triplex nucleic acid structures, and others. While all of these structures are of interest, structures based on nucleic acid triplexes have recently garnered increased attention as they have been implicated in gene regulation, gene repair, and gene engineering. Our work here focuses on the construction of DNA triplexes and RNA/DNA hybrids formed from GAA/TTC trinucleotide repeats, which underlie Friedreich's ataxia. While there is some software, such as the Discovery Studio Visualizer, that can aid in the initial construction of DNA triple helices, the only option for the triple helix is constrained to be that of an antiparallel pyrimidine for the third strand. In this protocol, we illustrate how to build up more generalized DNA triplexes and DNA/RNA mixed hybrids. We make use of both the Discovery Studio Visualizer and the AMBER simulation package to construct the initial triplexes. Using the steps outlined here, one can - in principle - build up any triple nucleic acid helix with a desired sequence for large-scale molecular dynamics simulation studies.
引用
收藏
页数:13
相关论文
共 7 条
  • [1] Atypical structures of GAA/TTC trinucleotide repeats underlying Friedreich's ataxia: DNA triplexes and RNA/DNA hybrids
    Zhang, Jiahui
    Fakharzadeh, Ashkan
    Pan, Feng
    Roland, Christopher
    Sagui, Celeste
    NUCLEIC ACIDS RESEARCH, 2020, 48 (17) : 9899 - 9917
  • [2] Structure and Dynamics of DNA and RNA Double Helices of CAG and GAC Trinucleotide Repeats
    Pan, Feng
    Viet Hoang Man
    Roland, Christopher
    Sagui, Celeste
    BIOPHYSICAL JOURNAL, 2017, 113 (01) : 19 - 36
  • [3] Structure and Dynamics of DNA and RNA Double Helices Obtained from the CCG and GGC Trinucleotide Repeats
    Pan, Feng
    Viet Hoang Man
    Roland, Christopher
    Sagui, Celeste
    JOURNAL OF PHYSICAL CHEMISTRY B, 2018, 122 (16) : 4491 - 4512
  • [4] Transposon Tn7 Preferentially Inserts into GAA○TTC Triplet Repeats under Conditions Conducive to Y○R○Y Triplex Formation
    Mancuso, Miriam
    Sammarco, Mimi C.
    Grabczyk, Ed
    PLOS ONE, 2010, 5 (06):
  • [5] RNA as a Major-Groove Ligand: RNA-RNA and RNA-DNA Triplexes Formed by GAA and UUC or TTC Sequences
    Zhang, Jiahui
    Fakharzadeh, Ashkan
    Roland, Christopher
    Sagui, Celeste
    ACS OMEGA, 2022, 7 (43): : 38728 - 38743
  • [6] Structure and Dynamics of DNA and RNA Double Helices Obtained from the GGGGCC and CCCCGG Hexanucleotide Repeats That Are the Hallmark of C9FTD/ALS Diseases
    Zhang, Yuan
    Roland, Christopher
    Sagui, Celeste
    ACS CHEMICAL NEUROSCIENCE, 2017, 8 (03): : 578 - 591
  • [7] Construction of Tandem Repeats of DNA Fragments by a Polymerase Chain Reaction-Based Method
    Chen, Ji-Ren
    Deng, Zi-Niu
    Chen, Yan-Bin
    Hu, Bo-Wen
    Lu, Jing-Jing
    Long, Yue-Lin
    Xiong, Xing-Yao
    DNA AND CELL BIOLOGY, 2012, 31 (04) : 600 - 606