cris.boxmetadata.label.title
Unusual mechanical stability of a minimal RNA kissing complex
cris.boxmetadata.label.dateissued
24 browse.startsWith.months.october 2006
cris.boxmetadata.label.accesslevel
open access
cris.boxmetadata.label.resourcetype
journal article
cris.boxmetadata.label.authors
University of California
cris.boxmetadata.label.abstract
By using optical tweezers, we have investigated the mechanical unfolding of a minimal kissing complex with only two G-C base pairs. The loop-loop interaction is exceptionally stable; it is disrupted at forces ranging from 7 to 30 pN, as compared with 14-20 pN for unfolding hairpins of 7 and 11 bp. By monitoring unfolding/folding trajectories of single molecules, we resolved the intermediates, measured their rate constants, and pinpointed the rate-limiting steps. The two hairpins unfold only after breaking the intramolecular kissing interaction, and the kissing interaction forms only after the folding of the hairpins. At forces that favor the unfolding of the hairpins, the entire RNA structure is kinetically stabilized by the kissing interaction, and extra work is required to unfold the metastable hairpins. The strong mechanical stability of even a minimal kissing complex indicates the importance of such loop-loop interactions in initiating and stabilizing RNA dimers in retroviruses. © 2006 by The National Academy of Sciences of the USA.
cris.boxmetadata.label.citationstartpage
15847
cris.boxmetadata.label.citationendpage
15852
cris.boxmetadata.label.volume
103
cris.boxmetadata.label.issue
43
cris.boxmetadata.label.language
English
cris.boxmetadata.label.ocdeknowledgeArea
Biología Bioquímica, Biología molecular
cris.boxmetadata.label.doi
cris.boxmetadata.label.scopusidentifier
2-s2.0-33750447980
cris.boxmetadata.label.pubmedidentifier
cris.boxmetadata.label.source
Proceedings of the National Academy of Sciences of the United States of America
cris.boxmetadata.label.containerissn
00278424
cris.boxmetadata.label.sponsor
National Institute of General Medical Sciences, R37GM010840, NIGMS
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