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铜-炔络合反应负责通过点击反应标记的四链体核酸药物的核仁定位。

Copper-Alkyne Complexation Responsible for the Nucleolar Localization of Quadruplex Nucleic Acid Drugs Labeled by Click Reactions.

机构信息

Research unit "Chemistry, Modelling and Imaging for Biology", CNRS/UMR9187-INSERM/U1196, Institut Curie, Centre de recherché, Campus universitaire Paris-Sud, 91405, Orsay, France.

出版信息

Angew Chem Int Ed Engl. 2017 Sep 11;56(38):11365-11369. doi: 10.1002/anie.201703783. Epub 2017 Aug 7.

Abstract

G-Quadruplex(es) (G4) are noncanonical nucleic-acid structures found in guanine-rich sequences. They can be targeted with small molecules (G4 ligands) acting as reporters, for tracking both in vitro and in cells. We explored the cellular localization of PhenDC , one of the most powerful G4 ligands, by synthesizing two clickable azide and alkyne derivatives (PhenDC -alk, PhenDC -az) and labeling them in situ with the corresponding Cy5 click partners. A careful comparison of the results obtained for the copper-based CuAAC and copper-free SPAAC methodologies in fixed cells implicated Cu /alkyne intermediates in the nonspecific localization of ligands (and fluorophores) to the nucleoli. By contrast, SPAAC yielded similar nucleoplasmic labeling patterns in fixed and live cells. Our findings demonstrate the need for great care when using CuAAC to localize drugs in cells, and show that SPAAC gives results that are more consistent between fixed and live cells.

摘要

G-四链体(G4)是在富含鸟嘌呤的序列中发现的非经典核酸结构。可以用小分子(G4 配体)作为报告分子来靶向它们,用于体外和细胞内的追踪。我们通过合成两个可点击的叠氮化物和炔烃衍生物(PhenDC-alk、PhenDC-az),并将相应的 Cy5 点击物原位标记,来探索 PhenDC,一种最强大的 G4 配体之一的细胞定位。仔细比较固定细胞中基于铜的 CuAAC 和无铜 SPAAC 方法获得的结果表明,铜/炔烃中间体将配体(和荧光团)非特异性定位到核仁中。相比之下,SPAAC 在固定和活细胞中产生相似的核质标记模式。我们的研究结果表明,在使用 CuAAC 定位细胞内药物时需要非常小心,并表明 SPAAC 给出的结果在固定和活细胞之间更加一致。

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