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Multistrand RNA secondary structure prediction and nanostructure design including pseudoknots.


ABSTRACT: We are presenting NanoFolder, a method for the prediction of the base pairing of potentially pseudoknotted multistrand RNA nanostructures. We show that the method outperforms several other structure prediction methods when applied to RNA complexes with non-nested base pairs. We extended this secondary structure prediction capability to allow RNA sequence design. Using native PAGE, we experimentally confirm that four in silico designed RNA strands corresponding to a triangular RNA structure form the expected stable complex.

SUBMITTER: Bindewald E 

PROVIDER: S-EPMC3263976 | biostudies-literature | 2011 Dec

REPOSITORIES: biostudies-literature

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Multistrand RNA secondary structure prediction and nanostructure design including pseudoknots.

Bindewald Eckart E   Afonin Kirill K   Jaeger Luc L   Shapiro Bruce A BA  

ACS nano 20111117 12


We are presenting NanoFolder, a method for the prediction of the base pairing of potentially pseudoknotted multistrand RNA nanostructures. We show that the method outperforms several other structure prediction methods when applied to RNA complexes with non-nested base pairs. We extended this secondary structure prediction capability to allow RNA sequence design. Using native PAGE, we experimentally confirm that four in silico designed RNA strands corresponding to a triangular RNA structure form  ...[more]

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