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用于细胞摄取和直接细胞成像的未保护肽的化学选择性、区域选择性和位置选择性荧光钉合

Chemoselective, regioselective, and positionally selective fluorogenic stapling of unprotected peptides for cellular uptake and direct cell imaging.

作者信息

Dayanara Naysilla L, Froelich Juliette, Roome Pascale, Perrin David M

机构信息

Department of Chemistry, University of British Columbia 2036 Main Mall Vancouver BC V6T1Z1 Canada

出版信息

Chem Sci. 2024 Nov 5;16(2):584-595. doi: 10.1039/d4sc04839c. eCollection 2025 Jan 2.

Abstract

Peptide stapling reactions represent powerful methods for structuring native α-helices to improve their bioactivity in targeting protein-protein interactions (PPIs). In light of a growing need for regio- and positionally selective stapling methods involving natural amino acid residues in their unprotected states, we report a rapid, mild, and highly chemoselective three-component stapling reation using a class of molecular linchpins based on 2-arylketobenzaldehydes (ArKBCHOs) that create a fluorescent staple, hereafter referred to as a Fluorescent Isoindole Crosslink (FlICk). This methodology offers positional selectivity favouring , + 4 helical staples comprising a lysine and cysteine, in the presence of competing nucleophiles on unprotected peptides. In our efforts to further validate this chemistry, we have successfully shown cytotoxicity of a FlICk-ed peptide (IC = 5.10 ± 1.27 μM), equipotent to an olefin-stapled congener. In harnessing the innate fluorescence of the thiol-isoindole, we report new blue-green fluorophores, which arise as a consequence of stapling, with appreciable quantum yields that enable direct cellular imaging in the assessment of cell permeability, thus bridging therapeutic potential with cytological probe development.

摘要

肽链环化反应是构建天然α-螺旋以提高其在靶向蛋白质-蛋白质相互作用(PPI)中的生物活性的有力方法。鉴于对涉及未保护状态下天然氨基酸残基的区域和位置选择性环化方法的需求不断增加,我们报道了一种快速、温和且具有高度化学选择性的三组分环化反应,该反应使用一类基于2-芳基酮苯甲醛(ArKBCHO)的分子关键部件,形成一种荧光环化物,以下简称荧光异吲哚交联物(FlICk)。这种方法在未保护肽上存在竞争性亲核试剂的情况下,提供了有利于包含赖氨酸和半胱氨酸的、 + 4螺旋环化物的位置选择性。在我们进一步验证这种化学方法的过程中,我们成功展示了一种FlICk修饰肽的细胞毒性(IC = 5.10 ± 1.27 μM),与烯烃环化的同类物相当。利用硫醇-异吲哚的固有荧光,我们报道了新的蓝绿色荧光团,它们是环化的结果,具有可观的量子产率,能够在评估细胞通透性时进行直接细胞成像,从而将治疗潜力与细胞学探针开发联系起来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/056b/11694919/8083aa1b0be8/d4sc04839c-f1.jpg

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