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利用SH3和WW结构域识别脯氨酸的基础:N-取代抑制剂的设计

Exploiting the basis of proline recognition by SH3 and WW domains: design of N-substituted inhibitors.

作者信息

Nguyen J T, Turck C W, Cohen F E, Zuckermann R N, Lim W A

机构信息

Department of Cellular and Molecular Pharmacology, University of California, San Francisco, CA 94143, USA.

出版信息

Science. 1998 Dec 11;282(5396):2088-92. doi: 10.1126/science.282.5396.2088.

Abstract

Src homology 3 (SH3) and WW protein interaction domains bind specific proline-rich sequences. However, instead of recognizing critical prolines on the basis of side chain shape or rigidity, these domains broadly accepted amide N-substituted residues. Proline is apparently specifically selected in vivo, despite low complementarity, because it is the only endogenous N-substituted amino acid. This discriminatory mechanism explains how these domains achieve specific but low-affinity recognition, a property that is necessary for transient signaling interactions. The mechanism can be exploited: screening a series of ligands in which key prolines were replaced by nonnatural N-substituted residues yielded a ligand that selectively bound the Grb2 SH3 domain with 100 times greater affinity.

摘要

Src同源结构域3(SH3)和WW蛋白相互作用结构域结合特定的富含脯氨酸序列。然而,这些结构域并非基于侧链形状或刚性来识别关键脯氨酸,而是广泛接受酰胺N-取代残基。尽管互补性较低,但脯氨酸显然在体内被特异性选择,因为它是唯一的内源性N-取代氨基酸。这种区分机制解释了这些结构域如何实现特异性但低亲和力的识别,这一特性对于瞬时信号相互作用是必要的。该机制可以被利用:筛选一系列其中关键脯氨酸被非天然N-取代残基取代的配体,得到了一种以高100倍的亲和力选择性结合Grb2 SH3结构域的配体。

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