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Structural basis for DNMT3A-mediated de novo DNA methylation.
Zhang, Zhi-Min; Lu, Rui; Wang, Pengcheng; Yu, Yang; Chen, Dongliang; Gao, Linfeng; Liu, Shuo; Ji, Debin; Rothbart, Scott B; Wang, Yinsheng; Wang, Gang Greg; Song, Jikui.
Afiliación
  • Zhang ZM; Department of Biochemistry, University of California, Riverside, California 92521, USA.
  • Lu R; The Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina 27599, USA.
  • Wang P; Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina 27599, USA.
  • Yu Y; Environmental Toxicology Graduate Program, University of California, Riverside, California 92521, USA.
  • Chen D; Environmental Toxicology Graduate Program, University of California, Riverside, California 92521, USA.
  • Gao L; The Lineberger Comprehensive Cancer Center, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina 27599, USA.
  • Liu S; Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina 27599, USA.
  • Ji D; Environmental Toxicology Graduate Program, University of California, Riverside, California 92521, USA.
  • Rothbart SB; Environmental Toxicology Graduate Program, University of California, Riverside, California 92521, USA.
  • Wang Y; Department of Chemistry, University of California, Riverside, California 92521, USA.
  • Wang GG; Department of Biochemistry and Biophysics, University of North Carolina at Chapel Hill School of Medicine, Chapel Hill, North Carolina 27599, USA.
  • Song J; Center for Epigenetics, Van Andel Research Institute, Grand Rapids, Michigan 49503, USA.
Nature ; 554(7692): 387-391, 2018 02 15.
Article en En | MEDLINE | ID: mdl-29414941
ABSTRACT
DNA methylation by de novo DNA methyltransferases 3A (DNMT3A) and 3B (DNMT3B) at cytosines is essential for genome regulation and development. Dysregulation of this process is implicated in various diseases, notably cancer. However, the mechanisms underlying DNMT3 substrate recognition and enzymatic specificity remain elusive. Here we report a 2.65-ångström crystal structure of the DNMT3A-DNMT3L-DNA complex in which two DNMT3A monomers simultaneously attack two cytosine-phosphate-guanine (CpG) dinucleotides, with the target sites separated by 14 base pairs within the same DNA duplex. The DNMT3A-DNA interaction involves a target recognition domain, a catalytic loop, and DNMT3A homodimeric interface. Arg836 of the target recognition domain makes crucial contacts with CpG, ensuring DNMT3A enzymatic preference towards CpG sites in cells. Haematological cancer-associated somatic mutations of the substrate-binding residues decrease DNMT3A activity, induce CpG hypomethylation, and promote transformation of haematopoietic cells. Together, our study reveals the mechanistic basis for DNMT3A-mediated DNA methylation and establishes its aetiological link to human disease.
Asunto(s)

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: ADN / Metilación de ADN / ADN (Citosina-5-)-Metiltransferasas Límite: Humans Idioma: En Revista: Nature Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: ADN / Metilación de ADN / ADN (Citosina-5-)-Metiltransferasas Límite: Humans Idioma: En Revista: Nature Año: 2018 Tipo del documento: Article País de afiliación: Estados Unidos