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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >A new arene-Ru based supramolecular coordination complex for efficient binding and selective sensing of green fluorescent protein
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A new arene-Ru based supramolecular coordination complex for efficient binding and selective sensing of green fluorescent protein

机译:一种新型的基于芳烃-钌的超分子配位复合物,用于绿色荧光蛋白的有效结合和选择性传感

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A new dipyridyl ligand is encoded with 120° angularity between its coordination vectors by using a central pyridine carboxamide scaffold to orient two 4-(pyridin-4-ylethynyl)phenyl moieties. The N,N'-bis(4-(pyridin-4-ylethynyl)phenyl)pyridine-2,6-dicarboxamide ligand undergoes self-assembly with a diruthenium arene complex to furnish a [2 + 2] metallacycle with a wedge-like structure. The metallacycle binds to the enhanced green fluorescent protein (EGFP) variant of GFP, resulting in steady-state spectral changes in UV-Vis absorption and emission experiments. These studies indicate that the metallacycle induces conformation changes to the EGFP, disrupting the tripeptide chromophore. Furthermore, gel electrophoresis, circular dichroism and atomic force microscopy studies indicate that binding ultimately leads to aggregation of the protein. Computational investigations indicate a favorable interaction, predominantly between the metallacycle and the Arg168 residue of the EGFP. An interaction with Arg168 and related residues was previously observed for an emission-attenuating antibody, supporting that these interactions induce changes to the photophysical properties of EGFP by disrupting the tripeptidechromophore in a similar manner. Additionally, we have also described the quenching study of the reporter GFP protein in vivo by a new metal complex using reflected fluorescence microscopy. We anticipate that such metal complexes which can passively diffuse into the cells in vivo can serve as potential tools in molecular and drug targeting based biological studies.
机译:通过使用中央吡啶羧酰胺支架对两个4-(吡啶-4-基乙炔基)苯基部分进行定向,新的二吡啶基配体在其配位载体之间以120°角编码。 N,N'-双(4-(吡啶-4-基乙炔基)苯基)吡啶-2,6-二羧酸酰胺配体与钌芳烃络合物进行自组装,以提供具有楔形的[2 + 2]金属环结构体。金属环与GFP的增强型绿色荧光蛋白(EGFP)变体结合,导致UV-Vis吸收和发射实验的稳态光谱变化。这些研究表明,金属环化合物诱导EGFP的构象变化,破坏了三肽发色团。此外,凝胶电泳,圆二色性和原子力显微镜研究表明结合最终导致蛋白质聚集。计算研究表明,金属环与EGFP的Arg168残基之间存在良好的相互作用。先前已观察到发射衰减抗体与Arg168和相关残基的相互作用,支持这些相互作用通过以类似方式破坏三肽发色团而诱导EGFP的光物理性质发生变化。此外,我们还描述了使用反射荧光显微镜通过新型金属配合物对报告基因GFP蛋白进行的体内淬灭研究。我们预期这种可以在体内被动扩散到细胞中的金属络合物可以作为基于分子和药物靶向的生物学研究的潜在工具。

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