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巯基和二硫键:在合成肽和聚合物中化学选择性形成不对称二硫键的方法。

Of Thiols and Disulfides: Methods for Chemoselective Formation of Asymmetric Disulfides in Synthetic Peptides and Polymers.

机构信息

Institute of Organic Chemistry, Johannes Gutenberg University Mainz, Duesbergweg 10-14, 55128, Mainz, Germany.

出版信息

Chemistry. 2018 Aug 22;24(47):12131-12142. doi: 10.1002/chem.201800681. Epub 2018 Jul 6.

Abstract

In protein or peptide chemistry, thiols are frequently chosen as a chemical entity for chemoselective modification reactions. Although it is a well-established methodology to address cysteines and homocysteines in aqueous media to form S-C bonds, possibilities for the chemoselective formation of asymmetric disulfides have been less approached. Focusing on bioreversibility in conjugation chemistry, the formation of disulfide bonds is highly desirable for the attachment of thiol-containing bioactive agents to proteins or in cross-linking reactions, because disulfide bonds can combine stability in blood with degradability inside cells. In this Concept article, recent approaches in the field of activating groups for thiol moieties incorporated in peptide and polymer materials are highlighted. Advantageous combinations of stability during synthesis of the material with high reactivity towards thiols are explored focusing on simplification and prevention of side reactions as well as additional deprotection and activation steps prior to disulfide formation. Moreover, applications of this chemistry are highlighted and future perspectives are envisioned.

摘要

在蛋白质或肽化学中,巯基经常被选为用于化学选择性修饰反应的化学实体。虽然在水相介质中形成 S-C 键以解决半胱氨酸和高半胱氨酸的问题是一种成熟的方法,但不对称二硫键的化学选择性形成的可能性较少被涉及。在结合化学中关注生物可逆性,形成二硫键对于将含硫醇的生物活性物质附着到蛋白质或用于交联反应中是非常理想的,因为二硫键可以使在血液中的稳定性与在细胞内的可降解性相结合。在这篇概念文章中,突出了在肽和聚合物材料中掺入巯基的活化基团领域的最新方法。重点探讨了在材料合成过程中稳定性的有利组合,以及对巯基的高反应性,同时侧重于简化和防止副反应以及在形成二硫键之前的额外脱保护和活化步骤。此外,还强调了这种化学的应用,并设想了未来的前景。

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