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加速生物正交共轭:一种将多种功能分子连接到多价病毒支架上的实用方法。

Accelerated bioorthogonal conjugation: a practical method for the ligation of diverse functional molecules to a polyvalent virus scaffold.

作者信息

Sen Gupta Sayam, Kuzelka Jane, Singh Pratik, Lewis Warren G, Manchester Marianne, Finn M G

机构信息

Department of Chemistry and The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, California 92037, USA.

出版信息

Bioconjug Chem. 2005 Nov-Dec;16(6):1572-9. doi: 10.1021/bc050147l.

Abstract

Covalent bond formation to proteins is made difficult by their multiple unprotected functional groups and normally low concentrations. A water-soluble sulfonated bathophenanthroline ligand (2) was used to promote a highly efficient Cu(I)-mediated azide-alkyne cycloaddition (CuAAC) reaction for the chemoselective attachment of biologically relevant molecules to cowpea mosaic virus (CPMV). The ligated substrates included complex sugars, peptides, poly(ethylene oxide) polymers, and the iron carrier protein transferrin, with routine success even for cases that were previously resistant to azide-alkyne coupling using the conventional ligand tris(triazolyl)amine (1). The use of 4-6 equiv of substrate was sufficient to achieve loadings of 60-115 molecules/virion in yields of 60-85%. Although it is sensitive to oxygen, the reliably efficient performance of the Cu.2 system makes it a useful tool for demanding bioconjugation applications.

摘要

蛋白质形成共价键存在困难,这是由于其多个未受保护的官能团以及通常较低的浓度。一种水溶性磺化二氮杂菲配体(2)被用于促进高效的铜(I)介导的叠氮化物 - 炔烃环加成反应(CuAAC),以实现生物相关分子与豇豆花叶病毒(CPMV)的化学选择性连接。连接的底物包括复合糖、肽、聚环氧乙烷聚合物以及铁转运蛋白转铁蛋白,即使对于先前使用传统配体三(三唑基)胺(1)时对叠氮化物 - 炔烃偶联有抗性的情况,也能常规成功实现连接。使用4 - 6当量的底物足以实现每病毒粒子60 - 115个分子的负载量,产率为60 - 85%。尽管Cu.2系统对氧气敏感,但其可靠高效的性能使其成为用于苛刻生物共轭应用的有用工具。

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