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使用 Pd 介导的半胱氨酸烯丙基化来约束和修饰肽。

Constraining and Modifying Peptides Using Pd-Mediated Cysteine Allylation.

机构信息

Institute of Biological Chemistry, Faculty of Chemistry, University of Vienna, 1090, Vienna, Austria.

Institute of Organic Chemistry, Graz University of Technology, 8010, Graz, Austria.

出版信息

Chembiochem. 2023 Jul 3;24(13):e202300098. doi: 10.1002/cbic.202300098. Epub 2023 May 4.

Abstract

Over the past decades, several strategies for inducing and stabilizing secondary structure formation in peptides have been developed to increase their proteolytic stability and their binding affinity to specific interaction partners. Here, we report how our recently introduced chemoselective Pd-catalyzed cysteine allylation reaction can be extended to stapling and how the resulting alkene-containing staples themselves can be further modified to introduce additional probes into such stabilized peptides. The latter is demonstrated by introducing a fluorophore as well as a PEG moiety into different stapled peptides using bioorthogonal thiol-ene and Diels-Alder reactions. Furthermore, we investigated structural implications of our allyl staples when used to replace conformationally relevant disulfide bridges. To this end, we chose a selective binder of integrin α β (LXY3), which is only active in its cyclic disulfide form. We replaced the disulfide bridge by different stapling reagents in order to increase stability and binding affinity towards integrin α β .

摘要

在过去的几十年中,已经开发出了几种诱导和稳定肽中二级结构形成的策略,以提高它们的蛋白水解稳定性和与特定相互作用伙伴的结合亲和力。在这里,我们报告了我们最近引入的选择性钯催化半胱氨酸烯丙基化反应如何扩展到订书钉,以及由此产生的含烯烃的订书钉本身如何进一步修饰,以在这些稳定的肽中引入其他探针。这一点通过使用生物正交硫醇-烯和 Diels-Alder 反应将荧光团和 PEG 部分引入不同的订书钉来证明。此外,我们研究了当使用我们的烯丙基订书钉替代构象相关的二硫键时的结构影响。为此,我们选择了整合素 α β 的选择性结合物(LXY3),它仅在其环状二硫键形式下具有活性。我们用不同的订书钉试剂取代二硫键,以提高稳定性和对整合素 α β 的结合亲和力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a0da/10947015/b6d2fd261e7c/CBIC-24-0-g009.jpg

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