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A Genetically Encoded Toolkit for Tracking Live-Cell Histidine Dynamics in Space and Time

Scientific reports(2017)SCI 3区

Synthetic Biology and Biotechnology Laboratory

Cited 35|Views37
Abstract
High-resolution spatiotemporal imaging of histidine in single living mammalian cells faces technical challenges. Here, we developed a series of ratiometric, highly responsive, and single fluorescent protein-based histidine sensors of wide dynamic range. We used these sensors to quantify subcellular free-histidine concentrations in glucose-deprived cells and glucose-fed cells. Results showed that cytosolic free-histidine concentration was higher and more sensitive to the environment than free histidine in the mitochondria. Moreover, histidine was readily transported across the plasma membrane and mitochondrial inner membrane, which had almost similar transport rates and transport constants, and histidine transport was not influenced by cellular metabolic state. These sensors are potential tools for tracking histidine dynamics inside subcellular organelles, and they will open an avenue to explore complex histidine signaling.
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Assay systems,Cellular imaging,Science,Humanities and Social Sciences,multidisciplinary
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要点】:本文开发了一系列基于单一荧光蛋白的比率型、高响应性组氨酸传感器,能在活细胞中高分辨率地追踪组氨酸的时空动态,发现细胞质中组氨酸的浓度及其对环境的敏感性高于线粒体中的组氨酸,并且组氨酸跨细胞膜及线粒体内膜的运输速率和常数相似,不受细胞代谢状态影响。

方法】:通过基因编码技术创建了比率型组氨酸传感器,这些传感器具有广泛的动态范围,并用于测量单一活哺乳动物细胞内亚细胞水平的组氨酸浓度。

实验】:实验在葡萄糖剥夺和葡萄糖供给的细胞中进行,使用组氨酸传感器量化细胞质和线粒体中自由组氨酸的浓度,并观察组氨酸的跨膜运输情况。论文中未明确提及使用的数据集名称,但结果揭示了细胞内组氨酸的动态变化。