Egger D, Bolten R, Rahner C, Bienz K
Institute for Medical Microbiology, University of Basel, Switzerland.
Histochem Cell Biol. 1999 Apr;111(4):319-24. doi: 10.1007/s004180050363.
Detection of target RNA by in situ hybridization (ISH) in the classic and confocal fluorescence microscope was performed using strand-specific single-stranded RNA probes labeled directly with the fluorochromes fluorescein isothiocyanate or Texas red. The probes, produced by in vitro transcription from PCR-generated templates with T7 RNA polymerase and fluorochromized UTP, gave ISH signals directly visible by fluorescence microscopy without the use of any immunological detection step. In avoiding antibodies, it was possible to strongly increase the sensitivity of the ISH since antibodies may contain RNase which can reduce hybridization signals considerably, even beyond the detection limit. Fluorescent RNA probes thus allowed for the detection of low numbers of target molecules per cell, such as minus strand intermediates in picornavirus RNA replication. Using appropriate denaturing conditions, the targets could be visualized in a double-stranded configuration as well as in the presence of a 100-fold excess of complementary RNA. Furthermore, double ISH for the simultaneous detection of two different RNA species, such as plus and minus strand RNA of poliovirus, or of different regions of the viral genomic RNA was possible with appropriate fluorescent strand-specific probes labeled with different fluorochromes. Combination of ISH and immunofluorescence was found feasible if RNA was present in relatively large amounts. In addition to the investigation of virus replication, possible applications of fluorochromized RNA probes might include antisense RNA detection as well as plant virus resistance and gene silencing.
使用直接用荧光染料异硫氰酸荧光素或德克萨斯红标记的链特异性单链RNA探针,在经典和共聚焦荧光显微镜下通过原位杂交(ISH)检测靶RNA。这些探针由T7 RNA聚合酶从PCR生成的模板进行体外转录,并使用荧光标记的UTP制成,无需任何免疫检测步骤,通过荧光显微镜即可直接观察到ISH信号。由于抗体可能含有核糖核酸酶,会显著降低杂交信号,甚至低于检测限,因此避免使用抗体可以大大提高ISH的灵敏度。荧光RNA探针因此能够检测每个细胞中低数量的靶分子,如微小核糖核酸病毒RNA复制中的负链中间体。在适当的变性条件下,靶标可以以双链形式以及在存在100倍过量互补RNA的情况下可视化。此外,使用用不同荧光染料标记的适当荧光链特异性探针,可以进行双重ISH以同时检测两种不同的RNA种类,如脊髓灰质炎病毒的正链和负链RNA,或病毒基因组RNA的不同区域。如果RNA含量相对较高,ISH和免疫荧光的结合是可行的。除了研究病毒复制外,荧光标记的RNA探针的可能应用还可能包括反义RNA检测以及植物病毒抗性和基因沉默。