四嗪
荧光显微镜
环加成
生物正交化学
荧光
蛋白质标签
点击化学
超分辨显微术
化学
遗传密码
显微镜
活体细胞成像
氨基酸
生物物理学
纳米技术
组合化学
生物化学
材料科学
细胞
生物
融合蛋白
物理
有机化学
量子力学
光学
基因
重组DNA
催化作用
作者
Ivana Nikić,Tilman Plass,Oliver Schraidt,Jędrzej Szymański,John A. G. Briggs,Carsten Schultz,Edward A. Lemke
标识
DOI:10.1002/anie.201309847
摘要
Abstract The growing demands of advanced fluorescence and super‐resolution microscopy benefit from the development of small and highly photostable fluorescent probes. Techniques developed to expand the genetic code permit the residue‐specific encoding of unnatural amino acids (UAAs) armed with novel clickable chemical handles into proteins in living cells. Here we present the design of new UAAs bearing strained alkene side chains that have improved biocompatibility and stability for the attachment of tetrazine‐functionalized organic dyes by the inverse‐electron‐demand Diels–Alder cycloaddition (SPIEDAC). Furthermore, we fine‐tuned the SPIEDAC click reaction to obtain an orthogonal variant for rapid protein labeling which we termed selectivity enhanced (se) SPIEDAC. seSPIEDAC and SPIEDAC were combined for the rapid labeling of live mammalian cells with two different fluorescent probes. We demonstrate the strength of our method by visualizing insulin receptors (IRs) and virus‐like particles (VLPs) with dual‐color super‐resolution microscopy.
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