Yu Li-Yan, Cheng Wang, Zhou Kang, Li Wei-Fang, Yu Hong-Mei, Gao Xinlei, Shen Xudong, Wu Qingfa, Chen Yuxing, Zhou Cong-Zhao
Hefei National Laboratory for Physical Sciences at the Microscale and School of Life Sciences, University of Science and Technology of China, Hefei, Anhui 230027, China.
School of Information Science and Technology, University of Science and Technology of China, Hefei, Anhui 230027, China.
Nucleic Acids Res. 2016 May 5;44(8):3936-45. doi: 10.1093/nar/gkw133. Epub 2016 Mar 2.
Despite over 3300 protein-DNA complex structures have been reported in the past decades, there remain some unknown recognition patterns between protein and target DNA. The silkgland-specific transcription factor FMBP-1 from the silkworm Bombyx mori contains a unique DNA-binding domain of four tandem STPRs, namely the score and three amino acid peptide repeats. Here we report three structures of this STPR domain (termed BmSTPR) in complex with DNA of various lengths. In the presence of target DNA, BmSTPR adopts a zig-zag structure of three or four tandem α-helices that run along the major groove of DNA. Structural analyses combined with binding assays indicate BmSTPR prefers the AT-rich sequences, with each α-helix covering a DNA sequence of 4 bp. The successive AT-rich DNAs adopt a wider major groove, which is in complementary in shape and size to the tandem α-helices of BmSTPR. Substitutions of DNA sequences and affinity comparison further prove that BmSTPR recognizes the major groove mainly via shape readout. Multiple-sequence alignment suggests this unique DNA-binding pattern should be highly conserved for the STPR domain containing proteins which are widespread in animals. Together, our findings provide structural insights into the specific interactions between a novel DNA-binding protein and a unique deformed B-DNA.
尽管在过去几十年里已经报道了超过3300种蛋白质-DNA复合物结构,但蛋白质与靶DNA之间仍存在一些未知的识别模式。家蚕的丝腺特异性转录因子FMBP-1包含一个由四个串联STPR组成的独特DNA结合结构域,即得分和三个氨基酸肽重复序列。在这里,我们报告了这个STPR结构域(称为BmSTPR)与不同长度DNA形成复合物的三种结构。在靶DNA存在的情况下,BmSTPR采用沿着DNA大沟延伸的三个或四个串联α-螺旋的锯齿状结构。结构分析与结合试验表明,BmSTPR更喜欢富含AT的序列,每个α-螺旋覆盖4个碱基对的DNA序列。连续的富含AT的DNA具有更宽的大沟,其形状和大小与BmSTPR的串联α-螺旋互补。DNA序列的替换和亲和力比较进一步证明,BmSTPR主要通过形状识别来识别大沟。多序列比对表明,这种独特的DNA结合模式对于在动物中广泛存在的含STPR结构域的蛋白质应该是高度保守的。总之,我们的研究结果为一种新型DNA结合蛋白与一种独特的变形B-DNA之间的特异性相互作用提供了结构上的见解。