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- W2058638642 abstract "Because of the availability of an abundance of RNA sequence information, the ability to rapidly and accurately predict the secondary structure of RNA from sequence is becoming increasingly important. A common method for predicting RNA secondary structure from sequence is free energy minimization. Therefore, accurate free energy contributions for every RNA secondary structure motif are necessary for accurate secondary structure predictions. Tandem mismatches are prevalent in naturally occurring sequences and are biologically important. A common method for predicting the stability of a sequence asymmetric tandem mismatch relies on the stabilities of the two corresponding sequence symmetric tandem mismatches [Mathews, D. H., Sabina, J., Zuker, M., and Turner, D. H. (1999) J. Mol. Biol. 288, 911–940]. To improve the prediction of sequence asymmetric tandem mismatches, the experimental thermodynamic parameters for the 22 previously unmeasured sequence symmetric tandem mismatches are reported. These new data, however, do not improve prediction of the free energy contributions of sequence asymmetric tandem mismatches. Therefore, a new model, independent of sequence symmetric tandem mismatch free energies, is proposed. This model consists of two penalties to account for destabilizing tandem mismatches, two bonuses to account for stabilizing tandem mismatches, and two penalties to account for A-U and G-U adjacent base pairs. This model improves the prediction of asymmetric tandem mismatch free energy contributions and is likely to improve the prediction of RNA secondary structure from sequence." @default.
- W2058638642 created "2016-06-24" @default.
- W2058638642 creator A5074870764 @default.
- W2058638642 creator A5083260693 @default.
- W2058638642 date "2008-03-11" @default.
- W2058638642 modified "2023-09-25" @default.
- W2058638642 title "Thermodynamic Characterization of the Complete Set of Sequence Symmetric Tandem Mismatches in RNA and an Improved Model for Predicting the Free Energy Contribution of Sequence Asymmetric Tandem Mismatches" @default.
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- W2058638642 doi "https://doi.org/10.1021/bi7020876" @default.
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