RIKEN Advanced Science Institute, Saitama, Japan.
PLoS One. 2010 Sep 27;5(9):e13003. doi: 10.1371/journal.pone.0013003.
Imaging the behavior of RNA in a living cell is a powerful means for understanding RNA functions and acquiring spatiotemporal information in a single cell. For more distinct RNA imaging in a living cell, a more effective chemical method to fluorescently label RNA is now required. In addition, development of the technology labeling with different colors for different RNA would make it easier to analyze plural RNA strands expressing in a cell.
METHODOLOGY/PRINCIPAL FINDINGS: Tag technology for RNA imaging in a living cell has been developed based on the unique chemical functions of exciton-controlled hybridization-sensitive oligonucleotide (ECHO) probes. Repetitions of selected 18-nucleotide RNA tags were incorporated into the mRNA 3'-UTR. Pairs with complementary ECHO probes exhibited hybridization-sensitive fluorescence emission for the mRNA expressed in a living cell. The mRNA in a nucleus was detected clearly as fluorescent puncta, and the images of the expression of two mRNAs were obtained independently and simultaneously with two orthogonal tag-probe pairs.
CONCLUSIONS/SIGNIFICANCE: A compact and repeated label has been developed for RNA imaging in a living cell, based on the photochemistry of ECHO probes. The pairs of an 18-nt RNA tag and the complementary ECHO probes are highly thermostable, sequence-specifically emissive, and orthogonal to each other. The nucleotide length necessary for one tag sequence is much shorter compared with conventional tag technologies, resulting in easy preparation of the tag sequences with a larger number of repeats for more distinct RNA imaging.
在活细胞中对 RNA 的行为进行成像,是理解 RNA 功能并获取单细胞时空信息的有力手段。为了在活细胞中更清晰地进行 RNA 成像,现在需要更有效的化学方法来对 RNA 进行荧光标记。此外,开发对不同 RNA 进行不同颜色标记的技术,将使分析细胞中表达的多个 RNA 链变得更加容易。
方法/主要发现:基于激发子控制杂交敏感寡核苷酸(ECHO)探针的独特化学功能,开发了活细胞内 RNA 成像的标记技术。选择的 18 个核苷酸 RNA 标签的重复序列被整合到 mRNA 的 3'UTR 中。具有互补 ECHO 探针的配对物在活细胞中表达的 mRNA 中表现出杂交敏感的荧光发射。核内的 mRNA 被清晰地检测为荧光斑点,并通过两对正交的标签 - 探针对独立且同时获得两个 mRNA 的表达图像。
结论/意义:基于 ECHO 探针的光化学性质,开发了一种用于活细胞内 RNA 成像的紧凑型重复标签。18 个核苷酸 RNA 标签和互补 ECHO 探针对具有高度热稳定性、序列特异性发光和彼此正交的特点。与传统的标签技术相比,一个标签序列所需的核苷酸长度要短得多,这使得可以更轻松地制备具有更多重复序列的标签序列,从而更清晰地进行 RNA 成像。