Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.
Nucleic Acids Res. 2010 Aug;38(14):e148. doi: 10.1093/nar/gkq436. Epub 2010 May 27.
Numerous studies have utilized molecular beacons (MBs) to image RNA expression in living cells; however, there is growing evidence that the sensitivity of RNA detection is significantly hampered by their propensity to emit false-positive signals. To overcome these limitations, we have developed a new RNA imaging probe called ratiometric bimolecular beacon (RBMB), which combines functional elements of both conventional MBs and siRNA. Analogous to MBs, RBMBs elicit a fluorescent reporter signal upon hybridization to complementary RNA. In addition, an siRNA-like double-stranded domain is used to facilitate nuclear export. Accordingly, live-cell fluorescent imaging showed that RBMBs are localized predominantly in the cytoplasm, whereas MBs are sequestered into the nucleus. The retention of RBMBs within the cytoplasmic compartment led to >15-fold reduction in false-positive signals and a significantly higher signal-to-background compared with MBs. The RBMBs were also designed to possess an optically distinct reference fluorophore that remains unquenched regardless of probe confirmation. This reference dye not only provided a means to track RBMB localization, but also allowed single cell measurements of RBMB fluorescence to be corrected for variations in probe delivery. Combined, these attributes enabled RBMBs to exhibit an improved sensitivity for RNA detection in living cells.
许多研究都利用分子信标(MBs)来对活细胞中的 RNA 表达进行成像;然而,越来越多的证据表明,其发出假阳性信号的倾向极大地阻碍了 RNA 检测的灵敏度。为了克服这些限制,我们开发了一种新的 RNA 成像探针,称为比率双分子信标(RBMB),它结合了传统 MBs 和 siRNA 的功能元件。与 MBs 类似,RBMBs 在与互补 RNA 杂交时会发出荧光报告信号。此外,还使用类似于 siRNA 的双链结构域来促进核输出。因此,活细胞荧光成像显示,RBMB 主要定位于细胞质中,而 MB 则被隔离在核内。RBMB 保留在细胞质区室中,导致假阳性信号减少 15 倍以上,并且与 MB 相比,信号与背景的比值显著更高。RBMB 还被设计为具有光学上不同的参考荧光团,无论探针是否确认,该荧光团都保持未猝灭。该参考染料不仅提供了一种跟踪 RBMB 定位的方法,还允许对 RBMB 荧光的单细胞测量进行校正,以消除探针传递的变化。综合这些特性,使 RBMB 在活细胞中的 RNA 检测中具有更高的灵敏度。