Combinatorial RNA Design: Designability and Structure-Approximating Algorithm
February 11, 2015 Β· Declared Dead Β· π Annual Symposium on Combinatorial Pattern Matching
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Authors
Jozef HaleΕ‘, JΓ‘n MaΕuch, Yann Ponty, Ladislav Stacho
arXiv ID
1502.03201
Category
q-bio.QM
Cross-listed
cs.DS
Citations
12
Venue
Annual Symposium on Combinatorial Pattern Matching
Last Checked
6 months ago
Abstract
In this work, we consider the Combinatorial RNA Design problem, a minimal instance of the RNA design problem which aims at finding a sequence that admits a given target as its unique base pair maximizing structure. We provide complete characterizations for the structures that can be designed using restricted alphabets. Under a classic four-letter alphabet, we provide a complete characterization of designable structures without unpaired bases. When unpaired bases are allowed, we provide partial characterizations for classes of designable/undesignable structures, and show that the class of designable structures is closed under the stutter operation. Membership of a given structure to any of the classes can be tested in linear time and, for positive instances, a solution can be found in linear time. Finally, we consider a structure-approximating version of the problem that allows to extend bands (helices) and, assuming that the input structure avoids two motifs, we provide a linear-time algorithm that produces a designable structure with at most twice more base pairs than the input structure.
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