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αvβ6整合素配体中精氨酸-甘氨酸-天冬氨酸螺旋基序的结构-功能分析

Structure-function analysis of Arg-Gly-Asp helix motifs in alpha v beta 6 integrin ligands.

作者信息

DiCara Danielle, Rapisarda Chiara, Sutcliffe Julie L, Violette Shelia M, Weinreb Paul H, Hart Ian R, Howard Mark J, Marshall John F

机构信息

Tumour Biology Centre, Cancer Research UK Clinical Centre, Queen Mary's College, Barts, Charterhouse Square, London EC1M 6BQ, United Kingdom; London Medical and Dental School, John Vane Science Centre, Charterhouse Square, London EC1M 6BQ, United Kingdom.

Protein Science Group, Department of Biosciences, University of Kent, Canterbury, Kent CT2 7NJ, United Kingdom.

出版信息

J Biol Chem. 2007 Mar 30;282(13):9657-9665. doi: 10.1074/jbc.M610461200. Epub 2007 Jan 23.

Abstract

Data relating to the structural basis of ligand recognition by integrins are limited. Here we describe the physical requirements for high affinity binding of ligands to alpha v beta6. By combining a series of structural analyses with functional testing, we show that 20-mer peptide ligands, derived from high affinity ligands of alpha v beta6 (foot-and-mouth-disease virus, latency associated peptide), have a common structure comprising an Arg-Gly-Asp motif at the tip of a hairpin turn followed immediately by a C-terminal helix. This arrangement allows two conserved Leu/Ile residues at Asp(+1) and Asp(+4) to be presented on the outside face of the helix enabling a potential hydrophobic interaction with the alpha v beta6 integrin, in addition to the Arg-Gly-Asp interaction. The extent of the helix determines peptide affinity for alpha v beta6 and potency as an alpha v beta6 antagonist. A major role of this C-terminal helix is likely to be the correct positioning of the Asp(+1) and Asp(+4) residues. These data suggest an explanation for several biological functions of alpha v beta6 and provide a structural platform for design of alpha v beta6 antagonists.

摘要

关于整合素识别配体的结构基础的数据有限。在此,我们描述了配体与αvβ6高亲和力结合的物理要求。通过将一系列结构分析与功能测试相结合,我们表明,源自αvβ6高亲和力配体(口蹄疫病毒、潜伏相关肽)的20聚体肽配体具有共同结构,该结构在发夹转弯末端包含一个精氨酸-甘氨酸-天冬氨酸基序,紧接着是一个C末端螺旋。这种排列使得天冬氨酸(+1)和天冬氨酸(+4)处的两个保守亮氨酸/异亮氨酸残基呈现在螺旋的外表面,除了精氨酸-甘氨酸-天冬氨酸相互作用外,还能与αvβ6整合素进行潜在的疏水相互作用。螺旋的长度决定了肽对αvβ6的亲和力以及作为αvβ6拮抗剂的效力。这个C末端螺旋的主要作用可能是天冬氨酸(+1)和天冬氨酸(+4)残基的正确定位。这些数据为αvβ6的几种生物学功能提供了解释,并为设计αvβ6拮抗剂提供了一个结构平台。

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