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分辨率为1.9埃的Engrailed(Gln50→Lys)同源结构域-DNA复合物:亲和力增强和特异性改变的结构基础。

Engrailed (Gln50-->Lys) homeodomain-DNA complex at 1.9 A resolution: structural basis for enhanced affinity and altered specificity.

作者信息

Tucker-Kellogg L, Rould M A, Chambers K A, Ades S E, Sauer R T, Pabo C O

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge 02139, USA.

出版信息

Structure. 1997 Aug 15;5(8):1047-54. doi: 10.1016/s0969-2126(97)00256-6.

Abstract

BACKGROUND

The homeodomain is one of the key DNA-binding motifs used in eukaryotic gene regulation, and homeodomain proteins play critical roles in development. The residue at position 50 of many homeodomains appears to determine the differential DNA-binding specificity, helping to distinguish among binding sites of the form TAATNN. However, the precise role(s) of residue 50 in the differential recognition of alternative sites has not been clear. None of the previously determined structures of homeodomain-DNA complexes has shown evidence for a stable hydrogen bond between residue 50 and a base, and there has been much discussion, based in part on NMR studies, about the potential importance of water-mediated contacts. This study was initiated to help clarify some of these issues.

RESULTS

The crystal structure of a complex containing the engrailed Gln50-->Lys variant (QK50) with its optimal binding site TAATCC (versus TAATTA for the wild-type protein) has been determined at 1.9 A resolution. The overall structure of the QK50 variant is very similar to that of the wild-type complex, but the sidechain of Lys50 projects directly into the major groove and makes several hydrogen bonds to the O6 and N7 atoms of the guanines at base pairs 5 and 6. Lys50 also makes an additional water-mediated contact with the guanine at base pair 5 and has an alternative conformation that allows a hydrogen bond with the O4 of the thymine at base pair 4.

CONCLUSIONS

The structural context provided by the folding and docking of the engrailed homeodomain allows Lys50 to make remarkably favorable contacts with the guanines at base pairs 5 and 6 of the binding site. Although many different residues occur at position 50 in different homeodomains, and although numerous position 50 variants have been constructed, the most striking examples of altered specificity usually involve introducing or removing a lysine sidechain from position 50. This high-resolution structure also confirms the critical role of Asn51 in homeodomain-DNA recognition and further clarifies the roles of water molecules near residues 50 and 51.

摘要

背景

同源结构域是真核基因调控中使用的关键DNA结合基序之一,同源结构域蛋白在发育过程中发挥着关键作用。许多同源结构域第50位的残基似乎决定了不同的DNA结合特异性,有助于区分TAATNN形式的结合位点。然而,第50位残基在区分不同位点的差异识别中的确切作用尚不清楚。以前确定的同源结构域-DNA复合物的结构均未显示第50位残基与碱基之间存在稳定氢键的证据,并且基于核磁共振研究,人们对水介导的接触的潜在重要性进行了大量讨论。开展本研究以帮助阐明其中的一些问题。

结果

已确定含有engrailed Gln50→Lys变体(QK50)及其最佳结合位点TAATCC(野生型蛋白的结合位点为TAATTA)的复合物的晶体结构,分辨率为1.9 Å。QK50变体的整体结构与野生型复合物非常相似,但Lys50的侧链直接伸入大沟,并与第5和第6碱基对处鸟嘌呤的O6和N7原子形成多个氢键。Lys50还与第5碱基对处的鸟嘌呤形成额外的水介导接触,并具有一种构象异构体,允许与第4碱基对处胸腺嘧啶的O4形成氢键。

结论

engrailed同源结构域的折叠和对接所提供的结构背景使Lys50能够与结合位点第5和第6碱基对处的鸟嘌呤形成非常有利的接触。尽管不同同源结构域的第50位存在许多不同的残基,并且尽管已经构建了许多第50位变体,但特异性改变的最显著例子通常涉及从第50位引入或去除赖氨酸侧链。这种高分辨率结构还证实了Asn51在同源结构域-DNA识别中的关键作用,并进一步阐明了第50和51位残基附近水分子的作用。

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