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Flick(荧光异吲哚交联)用于肽键连接。

FlICk (fluorescent isoindole crosslinking) for peptide stapling.

机构信息

Department of Chemistry, University of British Columbia, Vancouver, BC, Canada.

Department of Chemistry, University of British Columbia, Vancouver, BC, Canada.

出版信息

Methods Enzymol. 2020;639:313-332. doi: 10.1016/bs.mie.2020.04.017. Epub 2020 May 14.

Abstract

The rigidification of peptide secondary structure via stapling is an important and enduring goal in the development of functional peptides for biochemical and pharmaceutical applications. In addition, the incorporation of fluorophores and chromophores has been a sought-after application for creating peptidic probes of cellular function and localization. The combined application of peptide stapling and fluorescent-readout is featured by the reaction of ortho-phthalaldehydes to create isoindole staples, thus transforming inactive linear and monocyclic precursors into fluorescent or visibly colored monocyclic and bicyclic products with noted biological activity. Given its user-friendliness, we have termed this approach FlICk (fluorescent isoindole crosslink) chemistry and we have featured this application on an array of high-affinity macrocyclic α-MSH derivatives as well as for late-stage intra-annular isoindole stapling furnished a bicyclic peptide mimic of α-amanitin that is cytotoxic to CHO cells. The synthetic methods for preparing substituted ortho-phthalaldehydes along with subsequent applications to FlICk stapling are detailed herein.

摘要

通过肽键固定化使肽的二级结构刚性化,是开发用于生化和药物应用的功能性肽的一个重要且持久的目标。此外,荧光团和生色团的掺入一直是用于创建细胞功能和定位的肽探针的热门应用。肽键固定化和荧光读出的联合应用的特点是邻苯二醛的反应,以创建异吲哚键合,从而将非活性的线性和单环前体转化为具有显著生物活性的荧光或可见颜色的单环和双环产物。鉴于其易用性,我们将这种方法称为 FlICk(荧光异吲哚交联)化学,并在一系列高亲和力的大环α-MSH 衍生物以及晚期的内环异吲哚键合中对其进行了功能化,提供了一种对 CHO 细胞具有细胞毒性的α-鹅膏蕈碱的双环肽模拟物。本文详细介绍了取代的邻苯二醛的制备方法以及随后在 FlICk 键合中的应用。

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