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用于 DNA 甲基化活细胞成像的合成分子/蛋白质杂交探针与荧光开关

Synthetic-Molecule/Protein Hybrid Probe with Fluorogenic Switch for Live-Cell Imaging of DNA Methylation.

机构信息

Graduate School of Engineering, Osaka University , Suita, Osaka 565-0871, Japan.

Immunology Frontier Research Center, Osaka University , Suita, Osaka 565-0871, Japan.

出版信息

J Am Chem Soc. 2018 Feb 7;140(5):1686-1690. doi: 10.1021/jacs.7b09713. Epub 2018 Jan 30.

Abstract

Hybrid probes consisting of synthetic molecules and proteins are powerful tools for detecting biological molecules and signals in living cells. To date, most targets of the hybrid probes have been limited to pH and small analytes. Although biomacromolecules are essential to the physiological function of cells, the hybrid-probe-based approach has been scarcely employed for live-cell detection of biomacromolecules. Here, we developed a hybrid probe with a chemical switch for live-cell imaging of methylated DNA, an important macromolecule in the repression of gene expression. Using a protein labeling technique, we created a hybrid probe containing a DNA-binding fluorogen and a methylated-DNA-binding domain. The hybrid probe enhanced fluorescence intensity upon binding to methylated DNA and successfully monitored methylated DNA during mitosis. The hybrid probe offers notable advantages absent from probes based on small molecules or fluorescent proteins and is useful for live-cell analyses of epigenetic phenomena and diseases related to DNA methylation.

摘要

杂交探针由合成分子和蛋白质组成,是检测活细胞中生物分子和信号的有力工具。迄今为止,杂交探针的大多数靶标仅限于 pH 值和小分子分析物。尽管生物大分子对于细胞的生理功能至关重要,但基于杂交探针的方法很少用于活细胞中生物大分子的检测。在这里,我们开发了一种带有化学开关的杂交探针,用于活细胞成像甲基化 DNA,这是基因表达抑制中的一种重要的大分子。我们使用蛋白质标记技术,创建了一种含有 DNA 结合荧光团和甲基化 DNA 结合结构域的杂交探针。杂交探针与甲基化 DNA 结合后增强了荧光强度,并成功地在有丝分裂过程中监测了甲基化 DNA。该杂交探针具有小分子或荧光蛋白探针所没有的显著优势,可用于活细胞中与 DNA 甲基化相关的表观遗传现象和疾病的分析。

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