Read C M, Cary P D, Preston N S, Lnenicek-Allen M, Crane-Robinson C
Biophysics Laboratories, University of Portsmouth, UK.
EMBO J. 1994 Dec 1;13(23):5639-46. doi: 10.1002/j.1460-2075.1994.tb06902.x.
To establish the basis of sequence-specific DNA recognition by HMG boxes we separately transferred the minor and major wings from the sequence-specific HMG box of TCF1 alpha into their equivalent position in the non-sequence-specific box 2 of HMG1. Thus chimera THT1 contains the minor wing (of 11 N-terminal and 25 C-terminal residues) from the HMG box of TCF1 alpha and the major wing (the 45 residue central section) from HMG1 box 2, whilst the situation is reversed in chimera HTH1. The structural integrity of the two chimeric proteins was established by CD, NMR and their binding to four-way junction DNA. Gel retardation and circular permutation assays showed that only chimera THT1, containing the TCF1 alpha minor wing, formed a sequence-specific complex and bent the DNA. The bend angle was estimated to be 59 degrees for chimera THT1 and 52 degrees for the HMG box of TCF1 alpha. Our results, in combination with mutagenesis and other data, suggests a model for the DNA binding of HMG boxes in which the N-terminal residues and part of helix 1 contact the minor groove on the outside of a bent DNA duplex.
为了建立HMG框对序列特异性DNA识别的基础,我们分别将TCF1α序列特异性HMG框的小翼和大翼转移到HMG1非序列特异性框2中的相应位置。因此,嵌合体THT1包含来自TCF1α HMG框的小翼(11个N端和25个C端残基)和来自HMG1框2的大翼(45个残基的中央部分),而在嵌合体HTH1中情况则相反。通过圆二色光谱(CD)、核磁共振(NMR)以及它们与四向连接DNA的结合来确定这两种嵌合蛋白的结构完整性。凝胶阻滞和环状置换分析表明,只有含有TCF1α小翼的嵌合体THT1形成了序列特异性复合物并使DNA弯曲。嵌合体THT1的弯曲角度估计为59度,TCF1α的HMG框的弯曲角度为52度。我们的结果与诱变及其他数据相结合,提出了一个HMG框与DNA结合的模型,其中N端残基和螺旋1的一部分在弯曲的DNA双链体外接触小沟。