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Development of novel FP-based probes for live-cell imaging of nitric oxide dynamics

机译:新型基于FP的一氧化氮动力学活细胞成像探针的开发

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摘要

Nitric oxide () is a free radical with a wide range of biological effects, but practically impossible to visualize in single cells. Here we report the development of novel multicoloured fluorescent quenching-based probes by fusing a bacteria-derived -binding domain close to distinct fluorescent protein variants. These genetically encoded probes, referred to as geNOps, provide a selective, specific and real-time read-out of cellular dynamics and, hence, open a new era of bioimaging. The combination of geNOps with a Ca2+ sensor allowed us to visualize and Ca2+ signals simultaneously in single endothelial cells. Moreover, targeting of the probes was used to detect signals within mitochondria. The geNOps are useful new tools to further investigate and understand the complex patterns of signalling on the single (sub)cellular level.
机译:一氧化氮()是具有广泛生物效应的自由基,但实际上在单个细胞中无法可视化。在这里,我们通过融合细菌衍生的结合域接近不同的荧光蛋白变体,报告了新型的基于彩色荧光猝灭的探针的发展。这些被称为geNOps的基因编码探针提供了细胞动力学的选择性,特异性和实时读数,从而开辟了生物成像的新时代。 geNOps与Ca 2 + 传感器的结合使我们能够同时观察单个内皮细胞中的信号和Ca 2 + 信号。此外,探针的靶向用于检测线粒体内的信号。 geNOps是有用的新工具,可用于进一步研究和了解单(亚)细胞水平上信号的复杂模式。

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