Payne J W, Grail B M, Gupta S, Ladbury J E, Marshall N J, O'Brien R, Payne G M
School of Biological Sciences, University of Wales Bangor, Gwynedd, United Kingdom.
Arch Biochem Biophys. 2000 Dec 1;384(1):9-23. doi: 10.1006/abbi.2000.2084.
Our objective in this work was to identify the structural basis for the molecular recognition of peptides by peptide transporters. Various assays for dipeptide transport by the dipeptide and tripeptide permeases of Escherichia coli were performed, together with measurements of thermodynamic parameters of substrate binding to the dipeptide binding protein using isothermal titration calorimetry. Computer-based conformational analysis of the test dipeptides was performed to define the repertoire of conformers that each dipeptide adopts in solution. Strict correlations were identified between the complement of particular conformers adopted by a peptide and its bioactivity as a substrate for each transporter. Details of the structural and electronic parameters that define the molecular recognition templates (MRTs) of the dipeptide substrates of these transporters are presented; similar MRTs are likely to apply with dipeptidases. These MRTs provide the essential information for the rational design of peptide-based drugs tailored for exploitation of peptide transporters in microorganisms and man.
我们开展这项研究的目的是确定肽转运蛋白对肽进行分子识别的结构基础。我们对大肠杆菌的二肽和三肽通透酶进行了多种二肽转运测定,并使用等温滴定量热法测量了底物与二肽结合蛋白结合的热力学参数。对测试二肽进行了基于计算机的构象分析,以确定每种二肽在溶液中所采用的构象种类。我们发现,一种肽所采用的特定构象与其作为每种转运蛋白底物的生物活性之间存在严格的相关性。本文介绍了定义这些转运蛋白二肽底物分子识别模板(MRT)的结构和电子参数细节;类似的MRT可能也适用于二肽酶。这些MRT为合理设计基于肽的药物提供了关键信息,这类药物旨在利用微生物和人体中的肽转运蛋白。