Lowering DNA binding affinity of SssI DNA methyltransferase does not enhance the specificity of targeted DNA methylation in E. coli

被引:0
|
作者
Krystyna Ślaska-Kiss
Nikolett Zsibrita
Mihály Koncz
Pál Albert
Ákos Csábrádi
Sarolta Szentes
Antal Kiss
机构
[1] Eötvös Loránd Research Network (ELKH),Biological Research Centre, Institute of Biochemistry, Laboratory of DNA
[2] University of Szeged,Protein Interactions
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Targeted DNA methylation is a technique that aims to methylate cytosines in selected genomic loci. In the most widely used approach a CG-specific DNA methyltransferase (MTase) is fused to a sequence specific DNA binding protein, which binds in the vicinity of the targeted CG site(s). Although the technique has high potential for studying the role of DNA methylation in higher eukaryotes, its usefulness is hampered by insufficient methylation specificity. One of the approaches proposed to suppress methylation at unwanted sites is to use MTase variants with reduced DNA binding affinity. In this work we investigated how methylation specificity of chimeric MTases containing variants of the CG-specific prokaryotic MTase M.SssI fused to zinc finger or dCas9 targeting domains is influenced by mutations affecting catalytic activity and/or DNA binding affinity of the MTase domain. Specificity of targeted DNA methylation was assayed in E. coli harboring a plasmid with the target site. Digestions of the isolated plasmids with methylation sensitive restriction enzymes revealed that specificity of targeted DNA methylation was dependent on the activity but not on the DNA binding affinity of the MTase. These results have implications for the design of strategies of targeted DNA methylation.
引用
收藏
相关论文
共 50 条
  • [31] Engineering a Tunable DNA Loop in E. coli
    Becker, Nicole A.
    Schwab, Tanya L.
    Clark, Karl J.
    Maher, L. James, III
    BIOPHYSICAL JOURNAL, 2018, 114 (03) : 443A - 443A
  • [32] DNA methylation by wheat cytosine DNA methyltransferase: Modulation by protease inhibitor E-64
    Vlasova, TI
    Vanyushin, BF
    BIOCHEMISTRY AND MOLECULAR BIOLOGY INTERNATIONAL, 1998, 45 (01): : 145 - 153
  • [33] Bridging DNA contacts allow Dps from E. coli to condense DNA
    Shahu, Sneha
    Vtyurina, Natalia
    Das, Moumita
    Meyer, Anne S.
    Ganji, Mahipal
    Abbondanzieri, Elio A.
    NUCLEIC ACIDS RESEARCH, 2024, 52 (08) : 4456 - 4465
  • [34] DNA unwinding and single stranded DNA translocation by E. coli RecBCD helicase
    Lohman, Timothy M.
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2013, 246
  • [35] Non-DNA-binding cofactors enhance DNA-binding specificity of a transcriptional regulatory complex
    Siggers, Trevor
    Duyzend, Michael H.
    Reddy, Jessica
    Khan, Sidra
    Bulyk, Martha L.
    MOLECULAR SYSTEMS BIOLOGY, 2011, 7
  • [36] DNA structure dependent thermodynamics of DNA binding by E-coli and Taq DNA polymerases
    Wowor, A
    Datta, K
    LiCata, VJ
    FASEB JOURNAL, 2005, 19 (04): : A855 - A855
  • [37] Determining the basis of E. coli DinB and human pol kappa DNA damage specificity
    Stern, Hannah
    Coulther, Timothy
    Winters, Jenifer
    Mills, Caitlyn
    Ondrechen, Mary
    Beuning, Penny
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2018, 256
  • [38] Binding Sites of the E. Coli DNA Recombinase Protein to the ssDNA: A Computational Study
    Carra, Claudio
    Cucinotta, Francis A.
    JOURNAL OF BIOMOLECULAR STRUCTURE & DYNAMICS, 2010, 27 (04): : 407 - 427
  • [39] Affinity and sequence specificity of DNA binding and site selection for primer synthesis by Escherichia coli primase
    Khopde, S
    Biswas, EE
    Biswas, SB
    BIOCHEMISTRY, 2002, 41 (50) : 14820 - 14830
  • [40] Structural dynamics of E. coli single-stranded DNA binding protein reveal DNA wrapping and unwrapping pathways
    Suksombat, Sukrit
    Khafizov, Rustem
    Kozlov, Alexander G.
    Lohman, Timothy M.
    Chemla, Yann R.
    ELIFE, 2015, 4