Development of a genetically encodable FRET system using fluorescent RNA aptamers

Publication Date:
2018-01-03
Publisher:
Nature Publishing Group (NPG)
Electronic ISSN:
2041-1723
Topics:
Biology
Chemistry and Pharmacology
Natural Sciences in General
Physics
Published by:
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autor Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
beschreibung Development of a genetically encodable FRET system using fluorescent RNA aptamers Development of a genetically encodable FRET system using fluorescent RNA aptamers, Published online: 02 January 2018; doi:10.1038/s41467-017-02435-x FRET has been used to study protein conformational changes but has never been applied to RNA aptamers. Here the authors develop a genetically encodable RNA aptamer-based FRET system on single-stranded RNA origami scaffolds, and demonstrate it can be used to study RNA conformational changes.
citation_standardnr 6128016
datenlieferant ipn_articles
feed_id 134647
feed_publisher Nature Publishing Group (NPG)
feed_publisher_url http://www.nature.com/
insertion_date 2018-01-03
journaleissn 2041-1723
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Nature Publishing Group (NPG)
quelle Nature Communications
relation http://feeds.nature.com/~r/ncomms/rss/current/~3/IO-j7GPfPBc/s41467-017-02435-x
search_space articles
shingle_author_1 Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
shingle_author_2 Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
shingle_author_3 Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
shingle_author_4 Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
shingle_catch_all_1 Development of a genetically encodable FRET system using fluorescent RNA aptamers
Development of a genetically encodable FRET system using fluorescent RNA aptamers Development of a genetically encodable FRET system using fluorescent RNA aptamers, Published online: 02 January 2018; doi:10.1038/s41467-017-02435-x FRET has been used to study protein conformational changes but has never been applied to RNA aptamers. Here the authors develop a genetically encodable RNA aptamer-based FRET system on single-stranded RNA origami scaffolds, and demonstrate it can be used to study RNA conformational changes.
Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
Nature Publishing Group (NPG)
2041-1723
20411723
shingle_catch_all_2 Development of a genetically encodable FRET system using fluorescent RNA aptamers
Development of a genetically encodable FRET system using fluorescent RNA aptamers Development of a genetically encodable FRET system using fluorescent RNA aptamers, Published online: 02 January 2018; doi:10.1038/s41467-017-02435-x FRET has been used to study protein conformational changes but has never been applied to RNA aptamers. Here the authors develop a genetically encodable RNA aptamer-based FRET system on single-stranded RNA origami scaffolds, and demonstrate it can be used to study RNA conformational changes.
Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
Nature Publishing Group (NPG)
2041-1723
20411723
shingle_catch_all_3 Development of a genetically encodable FRET system using fluorescent RNA aptamers
Development of a genetically encodable FRET system using fluorescent RNA aptamers Development of a genetically encodable FRET system using fluorescent RNA aptamers, Published online: 02 January 2018; doi:10.1038/s41467-017-02435-x FRET has been used to study protein conformational changes but has never been applied to RNA aptamers. Here the authors develop a genetically encodable RNA aptamer-based FRET system on single-stranded RNA origami scaffolds, and demonstrate it can be used to study RNA conformational changes.
Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
Nature Publishing Group (NPG)
2041-1723
20411723
shingle_catch_all_4 Development of a genetically encodable FRET system using fluorescent RNA aptamers
Development of a genetically encodable FRET system using fluorescent RNA aptamers Development of a genetically encodable FRET system using fluorescent RNA aptamers, Published online: 02 January 2018; doi:10.1038/s41467-017-02435-x FRET has been used to study protein conformational changes but has never been applied to RNA aptamers. Here the authors develop a genetically encodable RNA aptamer-based FRET system on single-stranded RNA origami scaffolds, and demonstrate it can be used to study RNA conformational changes.
Mette D. E. Jepsen; Steffen M. Sparvath; Thorbjørn B. Nielsen; Ane H. Langvad; Guido Grossi; Kurt V. Gothelf; Ebbe S. Andersen
Nature Publishing Group (NPG)
2041-1723
20411723
shingle_title_1 Development of a genetically encodable FRET system using fluorescent RNA aptamers
shingle_title_2 Development of a genetically encodable FRET system using fluorescent RNA aptamers
shingle_title_3 Development of a genetically encodable FRET system using fluorescent RNA aptamers
shingle_title_4 Development of a genetically encodable FRET system using fluorescent RNA aptamers
timestamp 2025-06-30T23:31:42.893Z
titel Development of a genetically encodable FRET system using fluorescent RNA aptamers
titel_suche Development of a genetically encodable FRET system using fluorescent RNA aptamers
topic W
V
TA-TD
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uid ipn_articles_6128016