Baskin Jeremy M, Prescher Jennifer A, Laughlin Scott T, Agard Nicholas J, Chang Pamela V, Miller Isaac A, Lo Anderson, Codelli Julian A, Bertozzi Carolyn R
Department of Chemistry, and Howard Hughes Medical Institute, University of California, Berkeley, CA 94720, USA.
Proc Natl Acad Sci U S A. 2007 Oct 23;104(43):16793-7. doi: 10.1073/pnas.0707090104. Epub 2007 Oct 17.
Dynamic imaging of proteins in live cells is routinely performed by using genetically encoded reporters, an approach that cannot be extended to other classes of biomolecules such as glycans and lipids. Here, we report a Cu-free variant of click chemistry that can label these biomolecules rapidly and selectively in living systems, overcoming the intrinsic toxicity of the canonical Cu-catalyzed reaction. The critical reagent, a substituted cyclooctyne, possesses ring strain and electron-withdrawing fluorine substituents that together promote the [3 + 2] dipolar cycloaddition with azides installed metabolically into biomolecules. This Cu-free click reaction possesses comparable kinetics to the Cu-catalyzed reaction and proceeds within minutes on live cells with no apparent toxicity. With this technique, we studied the dynamics of glycan trafficking and identified a population of sialoglycoconjugates with unexpectedly rapid internalization kinetics.
通过使用基因编码报告分子,可常规地对活细胞中的蛋白质进行动态成像,然而这种方法无法应用于其他生物分子类别,如聚糖和脂质。在此,我们报告了一种无铜的点击化学变体,它能够在生命系统中快速且选择性地标记这些生物分子,克服了传统铜催化反应的内在毒性。关键试剂是一种取代环辛炔,它具有环张力和吸电子氟取代基,共同促进与代谢性地安装到生物分子中的叠氮化物发生[3 + 2]偶极环加成反应。这种无铜点击反应具有与铜催化反应相当的动力学,并且在活细胞上几分钟内即可完成,且无明显毒性。利用这项技术,我们研究了聚糖运输的动力学,并鉴定出一群具有意外快速内化动力学的唾液酸糖缀合物。