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选择性、破坏型的 G-四链体的 Ru(II) 多吡啶探针。

Selective, Disruptive Luminescent Ru(II) Polypyridyl Probes of G-Quadruplex.

机构信息

National Centre for Sensor Research, School of Chemical Sciences, Dublin City University, Dublin9, Co. Dublin, Ireland.

出版信息

Inorg Chem. 2023 Feb 6;62(5):2213-2227. doi: 10.1021/acs.inorgchem.2c03903. Epub 2023 Jan 26.

Abstract

Sensors capable of transducing G-quadruplex DNA binding are important both in solution and for imaging and interrogation in cellulo. Ru(II)-based light switches incorporating dipyridylphenazine (dppz) ligands are effective probes for recognition and imaging of DNA and its polymorphs including G-quadruplex, although selectivity is a limitation. While the majority of Ru(II)-based light switches reported to date, stabilize the quadruplex, imaging/theranostic probes that can disrupt G4s are of potentially enormous value in study and therapy for a range of disease states. We report here, on a Ru(II) complex (Ru-PDC3) that assembles the light switch capability of a Ru(II) dipyridylphenazine complex with the well-known G4-selective ligand Phen-DC3, into a single structure. The complex shows the anticipated light switch effect and strong affinity for G4 structures. Affinity depended on the G4 topology and sequence, but across all structures bar one, it was roughly an order of magnitude greater than for duplex or single-stranded DNA. Moreover, photophysical and Raman spectral data showed clear discrimination between duplex DNA and G4-bound structures offering the prospect of discrimination in imaging as well as in solution. Crucially, unlike the constituent components of the probe, Ru-PDC3 is a powerful G4 disrupter. From circular dichroism (CD), a reduction of ellipticity of the G4 between 70 and 95% was observed depending on topology and in many cases was accompanied by an induced CD signal for the metal complex. The extent of change in ellipticity is amongst the largest reported for small-molecule ligand G4 binding. While a promising G4 probe, without modification, the complex is fully water-soluble and readily permeable to live cells.

摘要

能够转换 G-四链体 DNA 结合的传感器在溶液中和细胞内成像和检测中都非常重要。基于 Ru(II)的光开关,其包含二吡啶并吩嗪 (dppz) 配体,是识别和成像 DNA 及其多态体(包括 G-四链体)的有效探针,尽管选择性是一个限制。虽然迄今为止报道的大多数基于 Ru(II)的光开关都稳定了四链体,但可以破坏 G4 的成像/治疗探针在研究和治疗多种疾病状态方面具有巨大的潜在价值。我们在此报告了一种 Ru(II)配合物(Ru-PDC3),它将 Ru(II)二吡啶并吩嗪配合物的光开关能力与众所周知的 G4 选择性配体 Phen-DC3 组装到单个结构中。该配合物表现出预期的光开关效应和对 G4 结构的强亲和力。亲和力取决于 G4 的拓扑结构和序列,但在所有结构中,除一个外,它比双链体或单链 DNA 的亲和力大约高一个数量级。此外,光物理和拉曼光谱数据清楚地区分了双链体 DNA 和与 G4 结合的结构,为成像以及在溶液中的区分提供了前景。至关重要的是,与探针的组成部分不同,Ru-PDC3 是一种强大的 G4 破坏剂。从圆二色性 (CD) 来看,取决于拓扑结构,G4 的椭圆率降低了 70%至 95%,在许多情况下,金属配合物会产生诱导 CD 信号。椭圆率的变化程度是报道的小分子配体 G4 结合中最大的之一。虽然是一种有前途的 G4 探针,但未经修饰,该配合物完全水溶性且易于穿透活细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f32/9906756/27cc71e2856c/ic2c03903_0009.jpg

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