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微型同源结构域:无N端臂的高特异性。

Miniature homeodomains: high specificity without an N-terminal arm.

作者信息

Montclare Jin Kim, Schepartz Alanna

机构信息

Department of Chemistry, Yale University, P.O. Box 208217, New Haven, Connecticut 06520-8107, USA.

出版信息

J Am Chem Soc. 2003 Mar 26;125(12):3416-7. doi: 10.1021/ja028628s.

Abstract

Recently, we described a strategy for the design of miniature proteins that bind DNA and protein surfaces with high affinity and selectivity. This strategy involves identifying the functional epitope required for macromolecular recognition by a natural protein and presenting it on a small, stable protein scaffold. In previous work, high-affinity DNA recognition was achieved only when the miniature protein contained the complete functional epitope. Here we report a miniature homeodomain that recognizes its 6-bp target site in the nanomolar concentration range at 25 degrees C, despite the absence of DNA contact residues located along the homeodomain N-terminal arm. We conclude that miniature proteins can achieve high affinity and selectivity for DNA by design even when the functional epitope is incomplete by using pre-organization to effectively compensate for lost protein-DNA contacts. In this case it has been possible to miniaturize both the recognition surface and the structural framework of a globular protein fold.

摘要

最近,我们描述了一种设计微型蛋白质的策略,这些微型蛋白质能够以高亲和力和选择性结合DNA和蛋白质表面。该策略包括确定天然蛋白质进行大分子识别所需的功能表位,并将其呈现在一个小的、稳定的蛋白质支架上。在之前的工作中,只有当微型蛋白质包含完整的功能表位时,才能实现高亲和力的DNA识别。在这里,我们报告了一种微型同源结构域,尽管其同源结构域N端臂上没有与DNA接触的残基,但在25摄氏度下,它仍能在纳摩尔浓度范围内识别其6碱基对的靶位点。我们得出结论,即使功能表位不完整,微型蛋白质也可以通过设计实现对DNA的高亲和力和选择性,即利用预组织有效地补偿失去的蛋白质-DNA接触。在这种情况下,有可能使球状蛋白质折叠的识别表面和结构框架都实现小型化。

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