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荧光聚合物-AS1411-适体探针用于 dSTORM 超分辨率成像内源性核仁素。

Fluorescent Polymer-AS1411-Aptamer Probe for dSTORM Super-Resolution Imaging of Endogenous Nucleolin.

机构信息

Univ Lyon, CNRS, UMR 5223, Ingénierie des Matériaux Polymères, Université Claude Bernard Lyon 1, INSA Lyon, F-69622 Villeurbanne Cédex, France.

Univ Lyon, Centre Léon Bérard, UMR INSERM 1052 CNRS 5286, Centre de recherche en cancérologie de Lyon, Lyon F-69008, France.

出版信息

Biomacromolecules. 2022 Jun 13;23(6):2302-2314. doi: 10.1021/acs.biomac.1c01706. Epub 2022 May 12.

DOI:10.1021/acs.biomac.1c01706
PMID:35549176
Abstract

Nucleolin is a multifunctional protein involved in essential biological processes. To precisely localize it and unravel its different roles in cells, fluorescence imaging is a powerful tool, especially super-resolution techniques. Here, we developed polymer-aptamer probes, both small and bright, adapted to direct stochastic optical reconstruction microscopy (dSTORM). Well-defined fluorescent polymer chains bearing fluorophores (AlexaFluor647) and a reactive end group were prepared via RAFT polymerization. The reactive end-group was then used for the oriented conjugation with AS1411, a DNA aptamer that recognizes nucleolin with high affinity. Conjugation via strain-promoted alkyne/azide click chemistry (SPAAC) between dibenzylcyclooctyne-ended fluorescent polymer chains and 3'-azido-functionalized nucleic acids proved to be the most efficient approach. and evaluations demonstrated that selective recognition for nucleolin was retained. Their brightness and small size make these polymer-aptamer probes an appealing alternative to immunofluorescence, especially for super-resolution (10-20 nm) nanoscopy. dSTORM imaging demonstrated the ability of our fluorescent polymer-aptamer probe to provide selective and super-resolved detection of cell surface nucleolin.

摘要

核仁素是一种参与重要生物过程的多功能蛋白。为了精确定位它并揭示其在细胞中的不同作用,荧光成像技术是一种强大的工具,特别是超分辨率技术。在这里,我们开发了既小又亮的适用于直接随机光学重建显微镜(dSTORM)的聚合物-适体探针。通过 RAFT 聚合制备了带有荧光团(AlexaFluor647)和反应性末端基团的明确定义的荧光聚合物链。然后,通过应变促进的炔烃/叠氮点击化学(SPAAC)将反应性末端基团与 AS1411 (一种与核仁素有高亲和力的 DNA 适体)定向偶联。证明以二苄基环辛炔封端的荧光聚合物链和 3'-叠氮功能化核酸之间的 SPAAC 是最有效的方法。和评估表明,对核仁素有选择性的识别得以保留。它们的亮度和小尺寸使得这些聚合物-适体探针成为免疫荧光的一种有吸引力的替代方法,特别是对于超分辨率(10-20nm)纳米显微镜。dSTORM 成像证明了我们的荧光聚合物-适体探针能够选择性地和超分辨地检测细胞表面核仁素。

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