Department of Biomedical Engineering, College of Engineering, Peking University, Beijing, 100871, China.
Integrated DNA Technologies Inc., Coralville, IA, 52241, USA.
Biomaterials. 2016 Sep;100:172-83. doi: 10.1016/j.biomaterials.2016.05.022. Epub 2016 May 24.
Molecular Beacons (MBs) composed of 2'-O-methyl RNA (2Me) and phosphorothioate (PS) linkages throughout the backbone (2Me/PSFULL MBs) have enabled long-term imaging of RNA in living cells, but excess PS modification can induce nonspecific binding, causing false-positive signals. In this study, we evaluate the intracellular stability of MBs composed of 2Me with various PS modifications, and found that false-positive signals could be reduced to marginal levels when the MBs possess a fully PS-modified loop domain and a phosphodiester stem (2Me/PSLOOP MB). Additionally, 2Me/PSLOOP MBs exhibited uncompromised hybridization kinetics, prolonged functionality and >88% detection accuracy for single RNA transcripts, and could do so without interfering with gene expression or cell growth. Finally, 2Me/PSLOOP MBs could image the dynamics of single mRNA transcripts in the nucleus and the cytoplasm simultaneously, regardless of whether the MBs targeted the 5'- or the 3'-UTR. Together, these findings demonstrate the effectiveness of loop-domain PS modification in reducing nonspecific signals and the potential for sensitive and accurate imaging of individual RNAs at the single-molecule level. With the growing interest in the role of RNA localization and dynamics in health and disease, 2Me/PSLOOP MBs could enable new discoveries in RNA research.
分子信标(MBs)由整个骨架中的 2'-O-甲基 RNA(2Me)和硫代磷酸酯(PS)键组成(2Me/PSFULL MBs),能够实现活细胞中 RNA 的长期成像,但过多的 PS 修饰会诱导非特异性结合,导致假阳性信号。在这项研究中,我们评估了由各种 PS 修饰的 2Me 组成的 MBs 的细胞内稳定性,发现当 MBs 具有完全 PS 修饰的环域和磷酸二酯键茎时(2Me/PSLOOP MB),假阳性信号可以减少到微不足道的水平。此外,2Me/PSLOOP MBs 表现出未受损的杂交动力学、延长的功能和 >88%的单个 RNA 转录物的检测准确性,并且可以在不干扰基因表达或细胞生长的情况下做到这一点。最后,2Me/PSLOOP MBs 可以同时在核和细胞质中对单个 mRNA 转录物的动态进行成像,无论 MBs 靶向 5'-UTR 还是 3'-UTR。总之,这些发现证明了环域 PS 修饰在减少非特异性信号方面的有效性,以及在单个分子水平上对单个 RNA 进行敏感和准确成像的潜力。随着人们对 RNA 定位和动态在健康和疾病中的作用的兴趣日益浓厚,2Me/PSLOOP MBs 可能会在 RNA 研究中带来新的发现。