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Folding Free Energy Determination of an RNA Three-Way Junction Using Fluctuation Theorems

Title: Folding Free Energy Determination of an RNA Three-Way Junction Using Fluctuation Theorems
Authors: Jaime Aspas-Caceres; Marc Rico-Pasto; Isabel Pastor; Felix Ritort
Source: Entropy, Vol 24, Iss 895, p 895 (2022)
Publisher Information: MDPI AG
Publication Year: 2022
Collection: Directory of Open Access Journals: DOAJ Articles
Subject Terms: Jarzynski equality; Crooks fluctuation theorem; Bennet’s acceptance ratio; RNA folding; single-molecule force spectroscopy; Science; Astrophysics; QB460-466; Physics; QC1-999
Description: Nonequilibrium work relations and fluctuation theorems permit us to extract equilibrium information from nonequilibrium measurements. They find application in single-molecule pulling experiments where molecular free energies can be determined from irreversible work measurements by using unidirectional (e.g., Jarzynski’s equality) and bidirectional (e.g., Crooks fluctuation theorem and Bennet’s acceptance ratio (BAR)) methods. However, irreversibility and the finite number of pulls limit their applicability: the higher the dissipation, the larger the number of pulls necessary to estimate Δ G within a few k B T . Here, we revisit pulling experiments on an RNA three-way junction (3WJ) that exhibits significant dissipation and work-distribution long tails upon mechanical unfolding. While bidirectional methods are more predictive, unidirectional methods are strongly biased. We also consider a cyclic protocol that combines the forward and reverse work values to increase the statistics of the measurements. For a fixed total experimental time, faster pulling rates permit us to efficiently sample rare events and reduce the bias, compensating for the increased dissipation. This analysis provides a more stringent test of the fluctuation theorem in the large irreversibility regime.
Document Type: article in journal/newspaper
Language: English
Relation: https://www.mdpi.com/1099-4300/24/7/895; https://doaj.org/toc/1099-4300; https://doaj.org/article/4a1cab7184fa4fdd98090b2f81e3d80a
DOI: 10.3390/e24070895
Availability: https://doi.org/10.3390/e24070895; https://doaj.org/article/4a1cab7184fa4fdd98090b2f81e3d80a
Accession Number: edsbas.BA740251
Database: BASE