Literature DB >> 26175046

Dual-colour imaging of RNAs using quencher- and fluorophore-binding aptamers.

Ankita Arora1, Murat Sunbul1, Andres Jäschke2.   

Abstract

In order to gain deeper insight into the functions and dynamics of RNA in cells, the development of methods for imaging multiple RNAs simultaneously is of paramount importance. Here, we describe a modular approach to image RNA in living cells using an RNA aptamer that binds to dinitroaniline, an efficient general contact quencher. Dinitroaniline quenches the fluorescence of different fluorophores when directly conjugated to them via ethylene glycol linkers by forming a non-fluorescent intramolecular complex. Since the binding of the RNA aptamer to the quencher destroys the fluorophore-quencher complex, fluorescence increases dramatically upon binding. Using this principle, a series of fluorophores were turned into fluorescent turn-on probes by conjugating them to dinitroaniline. These probes ranged from fluorescein-dinitroaniline (green) to TexasRed-dinitroaniline (red) spanning across the visible spectrum. The dinitroaniline-binding aptamer (DNB) was generated by in vitro selection, and was found to bind all probes, leading to fluorescence increase in vitro and in living cells. When expressed in E. coli, the DNB aptamer could be labelled and visualized with different-coloured fluorophores and therefore it can be used as a genetically encoded tag to image target RNAs. Furthermore, combining contact-quenched fluorogenic probes with orthogonal DNB (the quencher-binding RNA aptamer) and SRB-2 aptamers (a fluorophore-binding RNA aptamer) allowed dual-colour imaging of two different fluorescence-enhancing RNA tags in living cells, opening new avenues for studying RNA co-localization and trafficking.
© The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research.

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Year:  2015        PMID: 26175046      PMCID: PMC4666381          DOI: 10.1093/nar/gkv718

Source DB:  PubMed          Journal:  Nucleic Acids Res        ISSN: 0305-1048            Impact factor:   16.971


  37 in total

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Authors:  Diana P Bratu; Byeong-Jik Cha; Musa M Mhlanga; Fred Russell Kramer; Sanjay Tyagi
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3.  Turn-on fluorescence switch involving aggregation and elimination processes for β-lactamase-tag.

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4.  Contact-mediated quenching for RNA imaging in bacteria with a fluorophore-binding aptamer.

Authors:  Murat Sunbul; Andres Jäschke
Journal:  Angew Chem Int Ed Engl       Date:  2013-10-16       Impact factor: 15.336

5.  Molecular beacons: probes that fluoresce upon hybridization.

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Journal:  Nat Biotechnol       Date:  1996-03       Impact factor: 54.908

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7.  Fluorescence quantum yields and their relation to lifetimes of rhodamine 6G and fluorescein in nine solvents: improved absolute standards for quantum yields.

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8.  Combining SELEX screening and rational design to develop light-up fluorophore-RNA aptamer pairs for RNA tagging.

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Journal:  ACS Chem Biol       Date:  2010-11-19       Impact factor: 5.100

9.  Selecting RNA aptamers for synthetic biology: investigating magnesium dependence and predicting binding affinity.

Authors:  James M Carothers; Jonathan A Goler; Yuvraaj Kapoor; Lesley Lara; Jay D Keasling
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10.  RNA dynamics in live Escherichia coli cells.

Authors:  Ido Golding; Edward C Cox
Journal:  Proc Natl Acad Sci U S A       Date:  2004-07-26       Impact factor: 11.205

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  35 in total

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Authors:  Robert J Trachman; Adrian R Ferré-D'Amaré
Journal:  Q Rev Biophys       Date:  2019-08-19       Impact factor: 5.318

2.  Rational Design of Allosteric Fluorogenic RNA Sensors for Cellular Imaging.

Authors:  Qikun Yu; Ru Zheng; Manojkumar Narayanan; Mingxu You
Journal:  Methods Mol Biol       Date:  2021

3.  Super-resolution RNA imaging using a rhodamine-binding aptamer with fast exchange kinetics.

Authors:  Murat Sunbul; Jens Lackner; Annabell Martin; Daniel Englert; Benjamin Hacene; Franziska Grün; Karin Nienhaus; G Ulrich Nienhaus; Andres Jäschke
Journal:  Nat Biotechnol       Date:  2021-02-11       Impact factor: 54.908

Review 4.  RNA Localization in Bacteria.

Authors:  Jingyi Fei; Cynthia M Sharma
Journal:  Microbiol Spectr       Date:  2018-09

Review 5.  Recent advances in high-performance fluorescent and bioluminescent RNA imaging probes.

Authors:  Yuqiong Xia; Ruili Zhang; Zhongliang Wang; Jie Tian; Xiaoyuan Chen
Journal:  Chem Soc Rev       Date:  2017-05-22       Impact factor: 54.564

6.  RNA imaging: A tale of two G-quadruplexes.

Authors:  Aaron E Engelhart
Journal:  Nat Chem Biol       Date:  2017-09-25       Impact factor: 15.040

Review 7.  Following the messenger: Recent innovations in live cell single molecule fluorescence imaging.

Authors:  Andreas Schmidt; Guoming Gao; Saffron R Little; Ameya P Jalihal; Nils G Walter
Journal:  Wiley Interdiscip Rev RNA       Date:  2020-01-28       Impact factor: 9.957

8.  Genetically Encoded Ratiometric RNA-Based Sensors for Quantitative Imaging of Small Molecules in Living Cells.

Authors:  Rigumula Wu; Aruni P K K Karunanayake Mudiyanselage; Fatemeh Shafiei; Bin Zhao; Yousef Bagheri; Qikun Yu; Kathleen McAuliffe; Kewei Ren; Mingxu You
Journal:  Angew Chem Int Ed Engl       Date:  2019-10-24       Impact factor: 15.336

9.  iSpinach: a fluorogenic RNA aptamer optimized for in vitro applications.

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Journal:  Nucleic Acids Res       Date:  2016-03-01       Impact factor: 16.971

10.  In Situ Genetically Cascaded Amplification for Imaging RNA Subcellular Locations.

Authors:  Kewei Ren; Rigumula Wu; Aruni P K K Karunanayake Mudiyanselage; Qikun Yu; Bin Zhao; Yiwen Xie; Yousef Bagheri; Qian Tian; Mingxu You
Journal:  J Am Chem Soc       Date:  2020-01-30       Impact factor: 15.419

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