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二炔-栋梁型双功能拉曼活性α-螺旋肽的研制。

Development of Bifunctional, Raman Active Diyne-Girder Stapled α-Helical Peptides.

机构信息

School of Chemistry, Advanced Research Centre, University of Glasgow, 11 Chapel Lane, Glasgow, G11 6EW, UK.

出版信息

Chemistry. 2023 Jul 20;29(41):e202300855. doi: 10.1002/chem.202300855. Epub 2023 Jun 13.

Abstract

Stapled peptides are a unique class of cyclic α-helical peptides that are conformationally constrained via their amino acid side-chains. They have been transformative to the field of chemical biology and peptide drug discovery through addressing many of the physicochemical limitations of linear peptides. However, there are several issues with current chemical strategies to produce stapled peptides. For example, two distinct unnatural amino acids are required to synthesize i, i+7 alkene stapled peptides, leading to high production costs. Furthermore, low purified yields are obtained due to cis/trans isomers produced during ring-closing metathesis macrocyclisation. Here we report the development of a new i, i+7 diyne-girder stapling strategy that addresses these issues. The asymmetric synthesis of nine unnatural Fmoc-protected alkyne-amino acids facilitated a systematic study to determine the optimal (S,S)-stereochemistry and 14-carbon diyne-girder bridge length. Diyne-girder stapled T-STAR peptide 29 was demonstrated to have excellent helicity, cell permeability and stability to protease degradation. Finally, we demonstrate that the diyne-girder constraint is a Raman chromophore with potential use in Raman cell microscopy. Development of this highly effective, bifunctional diyne-girder stapling strategy leads us to believe that it can be used to produce other stapled peptide probes and therapeutics.

摘要

订书肽是一类独特的环状 α-螺旋肽,其构象通过氨基酸侧链受到限制。它们通过解决线性肽的许多物理化学限制,对化学生物学和肽类药物发现领域产生了变革性的影响。然而,目前生产订书肽的化学策略存在几个问题。例如,合成 i, i+7 烯键订书肽需要两种不同的非天然氨基酸,导致生产成本高。此外,由于在环 closing metathesis 大环化过程中产生顺式/反式异构体,导致纯化收率低。在这里,我们报告了一种新的 i, i+7 二炔-大梁订书策略的开发,该策略解决了这些问题。九个非天然 Fmoc 保护的炔基氨基酸的不对称合成促进了一项系统研究,以确定最佳的 (S, S)-立体化学和 14 碳二炔-大梁桥长度。证明二炔-大梁订书肽 T-STAR 29 具有优异的螺旋性、细胞通透性和对蛋白酶降解的稳定性。最后,我们证明二炔-大梁约束是一种拉曼发色团,具有在拉曼细胞显微镜中应用的潜力。这种高效、双功能的二炔-大梁订书策略的发展使我们相信它可以用于生产其他订书肽探针和治疗剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/267e/10946806/d7053e9e6edf/CHEM-29-0-g001.jpg

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