Hizver J, Rozenberg H, Frolow F, Rabinovich D, Shakked Z
Department of Structural Biology, Weizmann Institute of Science, Rehovot 76100, Israel.
Proc Natl Acad Sci U S A. 2001 Jul 17;98(15):8490-5. doi: 10.1073/pnas.151247298. Epub 2001 Jul 3.
To gain insight into the structural basis of DNA bending by adenine-thymine tracts (A-tracts) and their role in DNA recognition by gene-regulatory proteins, we have determined the crystal structure of the high-affinity DNA target of the cancer-associated human papillomavirus E2 protein. The three independent B-DNA molecules of the crystal structure determined at 2.2-A resolution are examples of A-tract-containing helices where the global direction and magnitude of curvature are in accord with solution data, thereby providing insights, at the base pair level, into the mechanism of DNA bending by such sequence motifs. A comparative analysis of E2-DNA conformations with respect to other structural and biochemical studies demonstrates that (i) the A-tract structure of the core region, which is not contacted by the protein, is critical for the formation of the high-affinity sequence-specific protein-DNA complex, and (ii) differential binding affinity is regulated by the intrinsic structure and deformability encoded in the base sequence of the DNA target.
为深入了解腺嘌呤 - 胸腺嘧啶序列(A序列)引起DNA弯曲的结构基础及其在基因调控蛋白识别DNA中的作用,我们测定了癌症相关的人乳头瘤病毒E2蛋白的高亲和力DNA靶标的晶体结构。以2.2埃分辨率测定的晶体结构中的三个独立B - DNA分子是含A序列螺旋的实例,其整体弯曲方向和程度与溶液数据一致,从而在碱基对水平上为这种序列基序引起DNA弯曲的机制提供了见解。对E2 - DNA构象与其他结构和生化研究的比较分析表明:(i)不与蛋白质接触的核心区域的A序列结构对于形成高亲和力序列特异性蛋白质 - DNA复合物至关重要;(ii)差异结合亲和力受DNA靶标碱基序列中编码的固有结构和可变形性调节。