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仿生一锅法呋喃-硫醇-胺多组分反应合成杂环及其应用。

Bioinspired one-pot furan-thiol-amine multicomponent reaction for making heterocycles and its applications.

机构信息

Department of Chemistry, Emory University, 30322, Atlanta, GA, USA.

出版信息

Nat Commun. 2023 Jul 10;14(1):4086. doi: 10.1038/s41467-023-39708-7.

Abstract

One-pot multicomponent coupling of different units in a chemoselective manner and their late-stage diversification has wide applicability in varying chemistry fields. Here, we report a simple multicomponent reaction inspired by enzymes that combines thiol and amine nucleophiles in one pot via a furan-based electrophile to generate stable pyrrole heterocycles independent of the diverse functionalities on furans, thiols and amines under physiological conditions. The resulting pyrrole provides a reactive handle to introduce diverse payloads. We demonstrate the application of Furan-Thiol-Amine (FuTine) reaction for the selective and irreversible labeling of peptides, synthesis of macrocyclic and stapled peptides, selective modification of twelve different proteins with varying payloads, homogeneous engineering of proteins, homogeneous stapling of proteins, dual modification of proteins with different fluorophores using the same chemistry and labeling of lysine and cysteine in a complex human proteome.

摘要

一锅法通过化学选择性方式将不同单元偶联,以及在后期对其进行多样化处理,在不同的化学领域具有广泛的适用性。在这里,我们报道了一种受酶启发的简单的多组分反应,它通过基于呋喃的亲电试剂一锅法将硫醇和胺亲核试剂结合,在生理条件下,生成稳定的吡咯杂环,而不受呋喃、硫醇和胺上各种官能团的影响。所得的吡咯为引入各种有效载荷提供了一个反应性的连接点。我们展示了呋喃-硫醇-胺(FuTine)反应在肽的选择性和不可逆标记、大环和订书肽的合成、用不同的有效载荷选择性修饰 12 种不同的蛋白质、蛋白质的均相工程化、蛋白质的均相订书化、用相同的化学方法对蛋白质进行双重修饰以及用不同的荧光团标记赖氨酸和半胱氨酸的应用,以及在复杂的人类蛋白质组中对其进行标记。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9817/10333318/2af055f9b265/41467_2023_39708_Fig1_HTML.jpg

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