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Assembly mechanisms of RNA pseudoknots are determined by the stabilities of constituent secondary structures.


ABSTRACT: Understanding how RNA molecules navigate their rugged folding landscapes holds the key to describing their roles in a variety of cellular functions. To dissect RNA folding at the molecular level, we performed simulations of three pseudoknots (MMTV and SRV-1 from viral genomes and the hTR pseudoknot from human telomerase) using coarse-grained models. The melting temperatures from the specific heat profiles are in good agreement with the available experimental data for MMTV and hTR. The equilibrium free energy profiles, which predict the structural transitions that occur at each melting temperature, are used to propose that the relative stabilities of the isolated helices control their folding mechanisms. Kinetic simulations, which corroborate the inferences drawn from the free energy profil

SUBMITTER: Cho SS 

PROVIDER: S-EPMC2765080 | biostudies-literature | 2009 Oct

REPOSITORIES: biostudies-literature

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