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生物活性小分子的生物素化合成策略。

Synthetic strategies for the biotinylation of bioactive small molecules.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, Texas Tech University Health Sciences Center, Amarillo, TX, USA.

出版信息

ChemMedChem. 2013 Feb;8(2):190-203. doi: 10.1002/cmdc.201200498. Epub 2013 Jan 9.

Abstract

Biotinylation, the functional appendage of a biotin moiety to a bioactive compound (including small molecules and biological macromolecules), represents a common technique for identification of the intracellular binding partners that underlie the foundation of observed biological activity. Introduction of an attachment tether to the framework of a compound of interest must be planned at an early stage of development, and many considerations apply: 1) region of attachment, so as not to impede the pharmacophore; 2) stability of the parent molecular architecture to biotinylation conditions; 3) regioselectivity for the chosen tethering location over other reactive functionalities; 4) toxicity of reagents if biotinylation is to be performed in vitro; and 5) overall ease of synthesis. This review is intended to serve as a guide for the selection of appropriate tethering modalities. Examples of the common techniques used to affix biotin, including amide bond formation, [3+2] cycloadditions through "click" chemistry, Staudinger ligation, and thioether formation will be discussed, along with analysis of the wider applications of synthetic methodology that have been applied toward the biotinylation of small molecules.

摘要

生物素化,即将生物素部分连接到生物活性化合物(包括小分子和生物大分子)上的功能附属物,是鉴定潜在生物活性的细胞内结合伴侣的常用技术。在开发的早期阶段,必须计划在感兴趣的化合物的框架中引入附着系绳,并且有许多因素需要考虑:1)附着区域,以免阻碍药效团;2)生物素化条件下母体分子结构的稳定性;3)选择的连接位置相对于其他反应性功能的区域选择性;4)如果要在体外进行生物素化,则试剂的毒性;5)总体合成的便利性。本文旨在作为选择合适连接方式的指南。将讨论常见的用于固定生物素的技术,包括酰胺键形成、通过“点击”化学的[3+2]环加成、斯塔德林格连接和硫醚形成,以及分析已应用于小分子生物素化的更广泛的合成方法应用。

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