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Optimal computer folding of large RNA sequences using thermodynamics and auxiliary information

Michael Zuker, Patrick Stiegler

Nucleic Acids Research · 1981 · 3.6K citations · 20 references

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Abstract

This paper presents a new computer method for folding an RNA molecule that finds a conformation of minimum free energy using published values of stacking and destabilizing energies. It is based on a dynamic programming algorithm from applied mathematics, and is much more efficient, faster, and can fold larger molecules than procedures which have appeared up to now in the biological literature. Its power is demonstrated in the folding of a 459 nucleotide immunoglobulin gamma 1 heavy chain messenger RNA fragment. We go beyond the basic method to show how to incorporate additional information into the algorithm. This includes data on chemical reactivity and enzyme susceptibility. We illustrate this with the folding of two large fragments from the 16S ribosomal RNA of Escherichia coli.

References

20

Improved Estimation of Secondary Structure in Ribonucleic Acids

Ignacio Tinoco, Philip N. Borer, Barbara Dengler et al. · Nature New Biology · 1973

+6

2.3K citations

691 citations

Free energy of imperfect nucleic acid helices

Jay D. Gralla, Donald M. Crothers · Journal of Molecular Biology · 1973

+6

507 citations

Globin mRNA Sequences: Analysis of Base Pairing and Evolutionary Implications

Winston Salser · Cold Spring Harbor Symposia on Quantitative Biology · 1978

+21

401 citations

Secondary structure model for bacterial 16S ribosomal RNA: phylogenetic, enzymatic and chemical evidence

Carl R. Woese, Linda J. Magrum, Ramesh C. Gupta et al. · Nucleic Acids Research · 1980

348 citations