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通过荧光共振能量转移成像监测小干扰RNA的完整性。

Surveillance of siRNA integrity by FRET imaging.

作者信息

Järve Anne, Müller Julius, Kim Il-Han, Rohr Karl, MacLean Caroline, Fricker Gert, Massing Ulrich, Eberle Florian, Dalpke Alexander, Fischer Roger, Trendelenburg Michael F, Helm Mark

机构信息

Department of Chemistry, Institute for Pharmacy and Molecular Biotechnology (IPMB), University of Heidelberg, Im Neuenheimer Feld 364, D-69120 Heidelberg, Germany.

出版信息

Nucleic Acids Res. 2007;35(18):e124. doi: 10.1093/nar/gkm694. Epub 2007 Sep 22.

DOI:10.1093/nar/gkm694
PMID:17890733
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2094076/
Abstract

Techniques for investigation of exogenous small interfering RNA (siRNA) after penetration of the cell are of substantial interest to the development of efficient transfection methods as well as to potential medical formulations of siRNA. A FRET-based visualization method including the commonplace dye labels fluorescein and tetramethylrhodamin (TMR) on opposing strands of siRNA was found compatible with RNA interference (RNAi). Investigation of spectral properties of three labelled siRNAs with differential FRET efficiencies in the cuvette, including pH dependence and FRET efficiency in lipophilic environments, identified the ratio of red and green fluorescence (R/G-ratio) as a sensitive parameter, which reliably identifies samples containing >90% un-degraded siRNA. Spectral imaging of siRNAs microinjected into cells showed emission spectra indistinguishable from those measured in the cuvette. These were used to establish a calibration curve for assessing the degradation state of siRNA in volume elements inside cells. An algorithm, applied to fluorescence images recorded in standard green and red fluorescence channels, produces R/G-ratio images of high spatial resolution, identifying volume elements in the cell with high populations of intact siRNA with high fidelity. To demonstrate the usefulness of this technique, the movement of intact siRNA molecules are observed after introduction into the cytosol by microinjection, standard transfection and lipofection with liposomes.

摘要

细胞穿透后对外源小干扰RNA(siRNA)进行研究的技术,对于高效转染方法的开发以及siRNA潜在的医学制剂而言都具有重大意义。一种基于荧光共振能量转移(FRET)的可视化方法,该方法在siRNA的互补链上使用常见的染料标记物荧光素和四甲基罗丹明(TMR),被发现与RNA干扰(RNAi)兼容。对三种具有不同FRET效率的标记siRNA在比色皿中的光谱特性进行研究,包括pH依赖性和亲脂环境中的FRET效率,确定了红绿色荧光比率(R/G比率)为一个敏感参数,该参数能够可靠地识别含有>90%未降解siRNA的样本。对显微注射到细胞中的siRNA进行光谱成像,结果显示其发射光谱与在比色皿中测量的光谱无法区分。这些光谱被用于建立校准曲线,以评估细胞内体积元素中siRNA的降解状态。一种算法应用于在标准绿色和红色荧光通道中记录的荧光图像,可生成高空间分辨率的R/G比率图像,能以高保真度识别细胞中含有大量完整siRNA的体积元素。为了证明该技术的实用性,通过显微注射、标准转染和脂质体转染将完整的siRNA分子导入细胞质后,对其运动进行了观察。

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