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Selective recognition of c-MYC Pu22 G-quadruplex by a fluorescent probe

机译:荧光探针选择性识别c-MYC Pu22 G-四链体

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摘要

Nucleic acid mimics of fluorescent proteins can be valuable tools to locate and image functional biomolecules in cells. Stacking between the internal G-quartet, formed in the mimics, and the exogenous fluorophore probes constitutes the basis for fluorescence emission. The precision of recognition depends upon probes selectively targeting the specific G-quadruplex in the mimics. However, the design of probes recognizing a G-quadruplex with high selectivity in vitro and in vivo remains a challenge. Through structure-based screening and optimization, we identified a light-up fluorescent probe, 9CI that selectively recognizes c-MYC Pu22 G-quadruplex both in vitro and ex vivo. Upon binding, the biocompatible probe emits both blue and green fluorescence with the excitation at 405 nm. With 9CI and c-MYC Pu22 G-quadruplex complex as the fluorescent response core, a DNA mimic of fluorescent proteins was constructed, which succeeded in locating a functional aptamer on the cellular periphery. The recognition mechanism analysis suggested the high selectivity and strong fluorescence response was attributed to the entire recognition process consisting of the kinetic match, dynamic interaction, and the final stacking. This study implies both the single stacking state and the dynamic recognition process are crucial for designing fluorescent probes or ligands with high selectivity for a specific G-quadruplex structure.
机译:荧光蛋白的核酸模拟物可以是在细胞中定位和成像功能性生物分子的有价值的工具。在模拟物中形成的内部G四重奏与外源荧光团探针之间的堆叠构成了荧光发射的基础。识别的精确度取决于选择性靶向模拟物中特定G-四链体的探针。然而,在体外和体内以高选择性识别G-四链体的探针的设计仍然是一个挑战。通过基于结构的筛选和优化,我们鉴定了一种点亮的荧光探针9CI,该探针可在体外和离体细胞中选择性识别c-MYC Pu22 G-四链体。结合后,生物相容性探针在405 nm处激发时发出蓝色和绿色荧光。以9CI和c-MYC Pu22 G-四链体复合物为荧光响应核心,构建了荧光蛋白的DNA模仿物,成功地在细胞外围定位了功能性适体。识别机制分析表明,高选择性和强荧光响应归因于整个识别过程,包括动力学匹配,动态相互作用和最终堆积。这项研究表明,单一堆积状态和动态识别过程对于设计对特定G-四链体结构具有高选择性的荧光探针或配体都至关重要。

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