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A palette of fluorescent proteins optimized for diverse cellular environments

机译:针对多种细胞环境优化的荧光蛋白调色板

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To perform quantitative live cell imaging, investigators require fluorescent reporters that accurately report protein localization and levels, while minimally perturbing the cell. Yet, within the biochemically distinct environments of cellular organelles, popular fluorescent proteins (FPs), including EGFP, can be unreliable for quantitative imaging, resulting in the underestimation of protein levels and incorrect localization. Specifically, within the secretory pathway, significant populations of FPs misfold and fail to fluoresce due to non-native disulphide bond formation. Furthermore, transmembrane FP-fusion constructs can disrupt organelle architecture due to oligomerizing tendencies of numerous common FPs. Here, we describe a powerful set of bright and inert FPs optimized for use in multiple cellular compartments, especially oxidizing environments and biological membranes. Also, we provide new insights into the use of red FPs in the secretory pathway. Our monomeric 'oxFPs' finally resolve long-standing, underappreciated and important problems of cell biology and should be useful for a number of applications.
机译:为了进行定量活细胞成像,研究人员需要荧光报告分子,该报告分子能准确报告蛋白质的位置和水平,同时对细胞的干扰最小。但是,在细胞器的生化特性不同的环境中,包括EGFP在内的流行荧光蛋白(FP)对于定量成像可能不可靠,从而导致蛋白水平低估和定位错误。具体而言,在分泌途径中,由于非天然二硫键的形成,大量的FP折叠错误并且无法发出荧光。此外,由于许多常见FP的低聚趋势,跨膜FP融合构建体可能会破坏细胞器结构。在这里,我们描述了一组功能强大的明亮而惰性的FP,这些FP被优化用于多个细胞隔室,尤其是氧化环境和生物膜。此外,我们还提供了有关在分泌途径中使用红色FP的新见解。我们的单体“ oxFPs”最终解决了细胞生物学长期存在的,未被充分认识的重要问题,应在许多应用中有用。

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