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环肽作为药物设计的基础。

Cyclotides as a basis for drug design.

机构信息

The University of Queensland, Institute for Molecular Bioscience, Brisbane, Australia.

出版信息

Expert Opin Drug Discov. 2012 Mar;7(3):179-94. doi: 10.1517/17460441.2012.661554. Epub 2012 Feb 21.

Abstract

INTRODUCTION

Cyclotides are plant-made defence proteins with a head-to-tail cyclic backbone combined with a conserved, six cystine knot. They have a range of biological activities, including uterotonic and anti-HIV activity, which have attracted attention to their potential pharmaceutical applications. Furthermore, their unique structures and high stability make them appealing as peptide-based templates for drug design applications. Methods have been developed for their production, including solid phase peptide synthesis as well as recombinant methods.

AREAS COVERED

This article reviews the recent literature associated with therapeutic applications of naturally occurring and synthetically modified cyclotides. It includes applications of cyclotides and cyclotide-like molecules as peptide-based drug leads and diagnostic agents.

EXPERT OPINION

The ultra-stable cyclotides are promising templates for drug development applications and are currently being assessed for the potential breadth of their applications. For synthetic versions of cyclotides to enter human clinical trials further studies to examine their biopharmaceutical properties and toxicities are required. However, several promising proof-of-concept studies have established that pharmaceutically relevant bioactive peptide sequences can be grafted into cyclotide frameworks and thereby stabilised, while maintaining biological activity. These studies include examples directed at cancer, cardiovascular disease and infectious diseases. Solid phase peptide synthesis has been the preferred approach for making pharmaceutically modified cyclotides so far, but promising progress is being made in biological approaches to cyclotide production.

摘要

简介

环肽是植物制造的防御蛋白,具有首尾相连的环式骨架,结合保守的六半胱氨酸结。它们具有多种生物活性,包括子宫收缩和抗 HIV 活性,这引起了人们对其潜在药物应用的关注。此外,它们独特的结构和高稳定性使它们成为基于肽的药物设计应用的有吸引力的模板。已经开发出了多种生产方法,包括固相肽合成和重组方法。

涵盖领域

本文综述了与天然和合成修饰的环肽的治疗应用相关的最新文献。它包括环肽和环肽样分子作为基于肽的药物先导物和诊断剂的应用。

专家意见

超稳定的环肽是药物开发应用的有前途的模板,目前正在评估它们应用的广泛程度。为了使合成版本的环肽进入人体临床试验,需要进一步研究来检查它们的生物制药特性和毒性。然而,一些有前途的概念验证研究已经证实,可以将具有治疗意义的生物活性肽序列嫁接到环肽框架中,并保持其生物活性。这些研究包括针对癌症、心血管疾病和传染病的例子。到目前为止,固相肽合成一直是制备药用修饰环肽的首选方法,但在环肽生产的生物学方法方面也取得了有希望的进展。

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