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Epigenetic CpG duplex marks probed by an evolved DNA reader via a well-tempered conformational plasticity.
Singh, Himanshu; Das, Chandan K; Buchmuller, Benjamin C; Schäfer, Lars V; Summerer, Daniel; Linser, Rasmus.
Affiliation
  • Singh H; Department of Chemistry and Chemical Biology, Technical University Dortmund, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.
  • Das CK; Theoretical Chemistry, Ruhr University Bochum, Universitätsstr. 150, 44801 Bochum, Germany.
  • Buchmuller BC; Department of Chemistry and Chemical Biology, Technical University Dortmund, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.
  • Schäfer LV; Theoretical Chemistry, Ruhr University Bochum, Universitätsstr. 150, 44801 Bochum, Germany.
  • Summerer D; Department of Chemistry and Chemical Biology, Technical University Dortmund, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.
  • Linser R; Department of Chemistry and Chemical Biology, Technical University Dortmund, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.
Nucleic Acids Res ; 51(12): 6495-6506, 2023 07 07.
Article in En | MEDLINE | ID: mdl-36919612
5-methylcytosine (mC) and its TET-oxidized derivatives exist in CpG dyads of mammalian DNA and regulate cell fate, but how their individual combinations in the two strands of a CpG act as distinct regulatory signals is poorly understood. Readers that selectively recognize such novel 'CpG duplex marks' could be versatile tools for studying their biological functions, but their design represents an unprecedented selectivity challenge. By mutational studies, NMR relaxation, and MD simulations, we here show that the selectivity of the first designer reader for an oxidized CpG duplex mark hinges on precisely tempered conformational plasticity of the scaffold adopted during directed evolution. Our observations reveal the critical aspect of defined motional features in this novel reader for affinity and specificity in the DNA/protein interaction, providing unexpected prospects for further design progress in this novel area of DNA recognition.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA / 5-Methylcytosine / Epigenesis, Genetic Limits: Animals Language: En Journal: Nucleic Acids Res Year: 2023 Document type: Article Affiliation country: Germany Country of publication: United kingdom

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA / 5-Methylcytosine / Epigenesis, Genetic Limits: Animals Language: En Journal: Nucleic Acids Res Year: 2023 Document type: Article Affiliation country: Germany Country of publication: United kingdom