DNA binding by the plant-specific NAC transcription factors in crystal and solution: a firm link to WRKY and GCM transcription factors

被引:57
|
作者
Welner, Ditte H. [1 ]
Lindemose, Soren [2 ]
Grossmann, J. Guenter [3 ]
Mollegaard, Niels Erik [4 ]
Olsen, Addie N. [2 ]
Helgstrand, Charlotte [1 ]
Skriver, Karen [2 ]
Lo Leggio, Leila [1 ]
机构
[1] Univ Copenhagen, Dept Chem, Biophys Chem Grp, DK-52100 Copenhagen O, Denmark
[2] Univ Copenhagen, Dept Biol, Sect Biomol Sci, DK-2200 Copenhagen N, Denmark
[3] Univ Liverpool, Fac Hlth & Life Sci, Inst Integrat Biol, Mol Biophys Grp, Liverpool L69 7ZB, Merseyside, England
[4] Univ Copenhagen, Fac Hlth Sci, Panum Inst, Dept Cellular & Mol Med, DK-2200 Copenhagen N, Denmark
关键词
crystal; DNA-binding; small angle X-ray scattering (SAXS); transcription factor; uranyl photo-probing; DIFFRACTION DATA; COMPREHENSIVE ANALYSIS; CONSERVED DOMAIN; FAMILY; SCATTERING; PROGRAM; PROTEIN; TOLERANCE; SOFTWARE; COMPLEX;
D O I
10.1042/BJ20111742
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
NAC (NAM/ATAF/CUC) plant transcription factors regulate essential processes in development, stress responses and nutrient distribution in important crop and model plants (rice, Populus, Arabidopsis), which makes them highly relevant in the context of optimization and bioenergy production. The structure of the DNA-binding NAC domain of ANAC019 has previously been determined by X-ray crystallography, revealing a dimeric and predominantly beta-fold structure, but the mode of binding to cognate DNA has remained elusive. In the present study, information from low resolution X-ray structures and small angle X-ray scattering on complexes with oligonucleotides, mutagenesis and (DNase I and uranyl photo-) footprinting, is combined to form a structural view of DNA-binding, and for the first time provide experimental evidence for the speculated relationship between plant-specific NAC proteins, WRKY transcription factors and the mammalian GCM (Glial cell missing) transcription factors, which all use a beta-strand motif for DNA-binding. The structure shows that the NAC domain inserts the edge of its core beta-sheet into the major groove, while leaving the DNA largely undistorted. The structure of the NAC-DNA complex and a new crystal form of the unbound NAC also indicate limited flexibility of the NAC dimer arrangement, which could be important in recognizing suboptimal binding sites.
引用
收藏
页码:395 / 404
页数:10
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