
A multiple approach to the study of RNA secondary structure is described which provides for the independent drawing of structures using base-pairing lists, for the generation of local structures in the form of hairpins, and for the generation of global structures by both Monte Carlo and dynamic programming methodologies. User-adjustable parameters provide for limiting the size of hairpin loops, bulges and inner loops, and constraints can be imposed relative to position-dependent base pairing.
Base Sequence, Molecular Sequence Data, Oncogenes, Computer Graphics, Animals, Nucleic Acid Conformation, RNA, Programming Languages, Chickens, Algorithms, Software
Base Sequence, Molecular Sequence Data, Oncogenes, Computer Graphics, Animals, Nucleic Acid Conformation, RNA, Programming Languages, Chickens, Algorithms, Software
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