首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >GLUT1 and GLUT9 as major contributors to glucose influx in HepG2 cells identified by a high sensitivity intramolecular FRET glucose sensor
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GLUT1 and GLUT9 as major contributors to glucose influx in HepG2 cells identified by a high sensitivity intramolecular FRET glucose sensor

机译:GLUT1和GLUT9是通过高灵敏度分子内FRET葡萄糖传感器鉴定的HepG2细胞葡萄糖流入的主要贡献者

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Genetically encoded FRET glucose nanosensors have proven to be useful for imaging glucose flux in HepG2 cells. However, the dynamic range of the original sensor was limited and thus it did not appear optimal for high throughput screening of siRNA populations for identifying proteins involved in regulation of sugar flux. Here we describe a hybrid approach that combines linker-shortening with fluorophore-insertion to decrease the degrees of freedom for fluorophore positioning leading to improved nanosensor dynamics. We were able to develop a novel highly sensitive FRET nanosensor that shows a 10-fold higher ratio change and dynamic range (0.05-11 mM) in vivo, permitting analyses in the physiologically relevant range. As a proof of concept that this sensor can be used to screen for proteins playing a role in sugar flux and its control, we used siRNA inhibition of GLUT family members and show that GLUT1 is the major glucose transporter in HepG2 cells and that GLUT9 contributes as well, however to a lower extent. GFP fusions suggest that GLUT1 and 9 are preferentially localized to the plasma membrane and thus can account for the transport activity. The improved sensitivity of the novel glucose nanosensor increases the reliability of in vivo glucose flux analyses, and provides a new means for the screening of siRNA collections as well as drugs using high-content screens. (C) 2007 Elsevier B.V. All rights reserved.
机译:已经证明,遗传编码的FRET葡萄糖纳米传感器可用于对HepG2细胞中的葡萄糖通量成像。然而,原始传感器的动态范围是有限的,因此对于高通量筛选siRNA群体以鉴定参与糖通量调节的蛋白质而言,它并不是最佳的选择。在这里,我们描述了一种混合方法,该方法将接头缩短与荧光团插入相结合,以降低荧光团定位的自由度,从而改善纳米传感器的动力学性能。我们能够开发出一种新型的高灵敏度FRET纳米传感器,该传感器在体内显示出10倍的比率变化和动态范围(0.05-11 mM),可以在生理相关范围内进行分析。作为该传感器可用于筛选在糖通量及其控制中起作用的蛋白质的概念证明,我们使用了siRNA抑制GLUT家族成员的作用,并证明GLUT1是HepG2细胞中的主要葡萄糖转运蛋白,而GLUT9在好,但是程度较低。 GFP融合提示GLUT1和9优先定位在质膜上,因此可以说明转运活性。新型葡萄糖纳米传感器的改进的灵敏度提高了体内葡萄糖通量分析的可靠性,并为使用高含量筛选技术筛选siRNA收集物和药物提供了新手段。 (C)2007 Elsevier B.V.保留所有权利。

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