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Fluorescence Competition and Optical Melting Measurements of RNA Three-Way Multibranch Loops Provide a Revised Model for Thermodynamic Parameters
Author(s) -
Biao Liu,
Joshua M. Diamond,
David H. Mathews,
Douglas H. Turner
Publication year - 2010
Publication title -
biochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.43
H-Index - 253
eISSN - 1520-4995
pISSN - 0006-2960
DOI - 10.1021/bi101470n
Subject(s) - rna , fluorescence , melting temperature , stability (learning theory) , loop (graph theory) , nucleotide , biological system , chemistry , physics , chemical physics , statistical physics , biophysics , computer science , materials science , biology , quantum mechanics , mathematics , biochemistry , combinatorics , gene , machine learning , composite material
Three-way multibranch loops (junctions) are common in RNA secondary structures. Computer algorithms such as RNAstructure and MFOLD do not consider the identity of unpaired nucleotides in multibranch loops when predicting secondary structure. There is limited experimental data, however, to parametrize this aspect of these algorithms. In this study, UV optical melting and a fluorescence competition assay are used to measure stabilities of multibranch loops containing up to five unpaired adenosines or uridines or a loop E motif. These results provide a test of our understanding of the factors affecting multibranch loop stability and provide revised parameters for predicting stability. The results should help to improve predictions of RNA secondary structure.

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