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生物活性肽设计中的构象和拓扑学考量

Conformational and topographical considerations in the design of biologically active peptides.

作者信息

Hruby V J

机构信息

Department of Chemistry, University of Arizona, Tucson 85721.

出版信息

Biopolymers. 1993 Jul;33(7):1073-82. doi: 10.1002/bip.360330709.

Abstract

An outline of the basic considerations that are under development for the rational design of biologically active peptides and peptidomimetics is given. The necessary interplay of biophysical, chemical, and biological considerations is emphasized. The importance of properly designed biological assays to provide chemical information analogous to that from biophysical studies is discussed. The development of asymmetric synthesis in conjunction with conformational considerations for the preparation of specialized amino acids and amino acid mimetics is a critical aspect of the approach. The overall approach is illustrated with three examples from our laboratory: (1) the redesign of somatostatin to a highly potent and selective mu-opioid receptor antagonist using conformational and topographical considerations in design and for obtaining insights into the pharmacophor; (2) the use of topographical considerations for obtaining oxytocin antagonists; and (3) the application of designer amino acids prepared by asymmetric synthesis to obtain insight into the topographical requirements at delta-opioid receptors.

摘要

本文给出了关于生物活性肽和拟肽合理设计的基本考量的概述。强调了生物物理、化学和生物学考量之间必要的相互作用。讨论了合理设计生物测定以提供类似于生物物理研究的化学信息的重要性。结合构象考量进行不对称合成以制备特殊氨基酸和氨基酸模拟物是该方法的一个关键方面。通过我们实验室的三个例子说明了整体方法:(1)利用设计中的构象和拓扑学考量,将生长抑素重新设计为一种高效且选择性的μ-阿片受体拮抗剂,并深入了解药效基团;(2)利用拓扑学考量获得催产素拮抗剂;(3)应用通过不对称合成制备的设计型氨基酸,以深入了解δ-阿片受体的拓扑学要求。

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