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利用荧光共振能量转移改进的细胞膜电位指标。

Improved indicators of cell membrane potential that use fluorescence resonance energy transfer.

作者信息

González J E, Tsien R Y

机构信息

Howard Hughes Medical Institute and Department of Pharmacology, 310 Cellular and Molecular Medicine West, University of California, 9500 Gilman Drive, CA 92093-0647, USA.

出版信息

Chem Biol. 1997 Apr;4(4):269-77. doi: 10.1016/s1074-5521(97)90070-3.

Abstract

BACKGROUND

Fluorescence detection of cell membrane potentials is an important technique in neurobiology, cell physiology and pharmaceutical screening, but traditional one-fluorophore indicators either respond too slowly or have limited sensitivity. Recently, we introduced two-component sensors based on the transfer of fluorescence resonance energy from fluorescent lectins bound on one side of the plasma membrane to highly fluorescent oxonol acceptors that electrophorese from one face of the membrane to the other in response to membrane potential.

RESULTS

We have found that fluorescent lectins can often be advantageously replaced in such sensors by fluorescently labeled phospholipids. A coumarinlabeled phosphatidylethanolamine donor and a bis(1,3-dihexyl-2-thiobarbiturate)trimethineoxonol acceptor gave the largest sensitivity of fluorescence ratio (>50% per 100 mV) ever reported. The response was also speeded several-fold by lengthening the mobile dye to the pentamethineoxonol analog, the <0.4 ms time constant of which was shorter than action potential durations. Photodynamic damage due to singlet oxygen was reduced by administering a natural carotenoid, astaxanthin.

CONCLUSIONS

Voltage-sensitive fluorescence resonance energy transfer already gives record-setting performance on single cells and will continue to be rationally improvable.

摘要

背景

细胞膜电位的荧光检测是神经生物学、细胞生理学和药物筛选中的一项重要技术,但传统的单荧光团指示剂响应速度过慢或灵敏度有限。最近,我们引入了双组分传感器,其基于荧光共振能量从结合在质膜一侧的荧光凝集素转移到高荧光的恶嗪醇受体,该受体响应膜电位从膜的一侧电泳到另一侧。

结果

我们发现,在这种传感器中,荧光凝集素常常可以被荧光标记的磷脂有利地替代。一种香豆素标记的磷脂酰乙醇胺供体和一种双(1,3 - 二己基 - 2 - 硫代巴比妥酸)三甲川恶嗪醇受体产生了迄今报道的最大荧光比率灵敏度(每100 mV>50%)。通过将可移动染料延长为五甲川恶嗪醇类似物,响应速度也加快了几倍,其<0.4毫秒的时间常数短于动作电位持续时间。通过施用天然类胡萝卜素虾青素减少了单线态氧引起的光动力损伤。

结论

电压敏感荧光共振能量转移已经在单细胞上给出了创纪录的性能,并且将继续合理地改进。

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