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Structure of the human FOXO4-DBD-DNA complex at 1.9 A resolution reveals new details of FOXO binding to the DNA

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    SYSNO ASEP0354847
    Document TypeJ - Journal Article
    R&D Document TypeJournal Article
    Subsidiary JČlánek ve WOS
    TitleStructure of the human FOXO4-DBD-DNA complex at 1.9 A resolution reveals new details of FOXO binding to the DNA
    Author(s) Bouřa, E. (CZ)
    Řežábková, L. (CZ)
    Brynda, Jiří (UMG-J) RID
    Obšilová, Veronika (FGU-C) RID, ORCID, SAI
    Obšil, T. (CZ)
    Source TitleActa Crystallographica Section D-Biological Crystallography. - : WILEY-BLACKWELL - ISSN 0907-4449
    Roč. 66, č. 12 (2010), s. 1351-1357
    Number of pages7 s.
    Languageeng - English
    CountryDK - Denmark
    Keywordstranscription factor AFX ; posttranslational modification ; specificity
    Subject RIVEB - Genetics ; Molecular Biology
    R&D ProjectsIAA501110801 GA AV ČR - Academy of Sciences of the Czech Republic (AV ČR)
    LC554 GA MŠMT - Ministry of Education, Youth and Sports (MEYS)
    CEZAV0Z50520514 - UMG-J (2005-2011)
    AV0Z50110509 - FGU-C (2005-2011)
    UT WOS000284881300012
    DOI10.1107/S0907444910042228
    AnnotationHere, the 1.9 A resolution crystal structure of the DNA-binding domain of human FOXO4 (FOXO4-DBD) bound to a 13 bp DNA duplex containing a FOXO consensus binding sequence is reported. The structure shows a similar recognition of the core sequence as has been shown for two other FOXO proteins. Helix H3 is docked into the major groove and provides all of the base-specific contacts, while the N-terminus and wing W1 make additional contacts with the phosphate groups of DNA. In contrast to other FOXO-DBD-DNA structures, the loop between helices H2 and H3 has a different conformation and participates in DNA binding. In addition, the structure of the FOXO4-DBD-DNA complex suggests that both direct water-DNA base contacts and the unique water-DNA base contacts and the unique water-network interactions contribute to FOXO-DBD binding to the DNA in a sequence-specific manner.
    WorkplaceInstitute of Molecular Genetics
    ContactNikol Škňouřilová, nikol.sknourilova@img.cas.cz, Tel.: 241 063 217
    Year of Publishing2011
Number of the records: 1  

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