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与DNA结合的威尔姆斯肿瘤抑制蛋白锌指结构域的结构。

Structure of the Wilms tumor suppressor protein zinc finger domain bound to DNA.

作者信息

Stoll Raphael, Lee Brian M, Debler Erik W, Laity John H, Wilson Ian A, Dyson H Jane, Wright Peter E

机构信息

Department of Molecular Biology and Skaggs Institute for Chemical Biology, The Scripps Research Institute, La Jolla, CA 92037, USA.

出版信息

J Mol Biol. 2007 Oct 5;372(5):1227-45. doi: 10.1016/j.jmb.2007.07.017. Epub 2007 Jul 21.

Abstract

The zinc finger domain of the Wilms tumor suppressor protein (WT1) contains four canonical Cys(2)His(2) zinc fingers. WT1 binds preferentially to DNA sequences that are closely related to the EGR-1 consensus site. We report the structure determination by both X-ray crystallography and NMR spectroscopy of the WT1 zinc finger domain in complex with DNA. The X-ray structure was determined for the complex with a cognate 14 base-pair oligonucleotide, and composite X-ray/NMR structures were determined for complexes with both the 14 base-pair and an extended 17 base-pair DNA. This combined approach allowed unambiguous determination of the position of the first zinc finger, which is influenced by lattice contacts in the crystal structure. The crystal structure shows the second, third and fourth zinc finger domains inserted deep into the major groove of the DNA where they make base-specific interactions. The DNA duplex is distorted in the vicinity of the first zinc finger, with a cytidine twisted and tilted out of the base stack to pack against finger 1 and the tip of finger 2. By contrast, the composite X-ray/NMR structures show that finger 1 continues to follow the major groove in the solution complexes. However, the orientation of the helix is non-canonical, and the fingertip and the N terminus of the helix project out of the major groove; as a consequence, the zinc finger side-chains that are commonly involved in base recognition make no contact with the DNA. We conclude that finger 1 helps to anchor WT1 to the DNA by amplifying the binding affinity although it does not contribute significantly to binding specificity. The structures provide molecular level insights into the potential consequences of mutations in zinc fingers 2 and 3 that are associated with Denys-Drash syndrome and nephritic syndrome. The mutations are of two types, and either destabilize the zinc finger structure or replace key base contact residues.

摘要

威尔姆斯瘤抑制蛋白(WT1)的锌指结构域包含四个典型的Cys(2)His(2)锌指。WT1优先结合与早期生长反应因子-1(EGR-1)共有序列密切相关的DNA序列。我们报告了WT1锌指结构域与DNA复合物的X射线晶体学和核磁共振波谱结构测定结果。确定了与同源14碱基对寡核苷酸复合物的X射线结构,以及与14碱基对和延伸的17碱基对DNA复合物的复合X射线/核磁共振结构。这种联合方法能够明确确定第一个锌指的位置,其在晶体结构中受晶格接触的影响。晶体结构显示,第二、第三和第四锌指结构域深深插入DNA的大沟中,在那里它们进行碱基特异性相互作用。在第一个锌指附近,DNA双链发生扭曲,一个胞嘧啶扭曲并从碱基堆积中倾斜出来,与锌指1和锌指2的末端堆积在一起。相比之下,复合X射线/核磁共振结构表明,在溶液复合物中锌指1继续沿着大沟延伸。然而,螺旋的方向是非典型的,螺旋的指尖和N末端伸出大沟;因此,通常参与碱基识别的锌指侧链不与DNA接触。我们得出结论,锌指1通过增强结合亲和力帮助将WT1锚定到DNA上,尽管它对结合特异性没有显著贡献。这些结构为与迪尼斯-德拉什综合征和肾炎综合征相关的锌指2和3突变的潜在后果提供了分子水平的见解。这些突变有两种类型,要么使锌指结构不稳定,要么取代关键的碱基接触残基。

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