paper-with-me

홈 › Papers

RNA thermodynamic structural entropy

2015-08-22

Conformational entropy for atomic-level, three dimensional biomolecules is known experimentally to play an important role in protein-ligand discrimination, yet reliable computation of entropy remains a difficult problem. Here we describe the first two accurate and efficient algorithms to compute the conformational entropy for RNA secondary structures, with respect to the Turner energy model, where free energy parameters are determined from UV aborption experiments. An algorithm to compute the derivational entropy for RNA secondary structures had previously been introduced, using stochastic context free grammars (SCFGs). However, the numerical value of derivational entropy depends heavily on the chosen context free grammar and on the training set used to estimate rule probabilities. Using data from the Rfam database, we determine that both of our thermodynamic methods, which agree in numerical value, are substantially faster than the SCFG method. Thermodynamic structural entropy is much smaller than derivational entropy, and the correlation between length-normalized thermodynamic entropy and derivational entropy is moderately weak to poor. In applications, we plot the structural entropy as a function of temperature for known thermoswitches, determine that the correlation between hammerhead ribozyme cleavage activity and total free energy is improved by including an additional free energy term arising from conformational entropy, and plot the structural entropy of windows of the HIV-1 genome. Our software RNAentropy can compute structural entropy for any user-specified temperature, and supports both the Turner'99 and Turner'04 energy parameters. It follows that RNAentropy is state-of-the-art software to compute RNA secondary structure conformational entropy. The software is available at http://bioinformatics.bc.edu/clotelab/RNAentropy.

📄 PDF Abstract BibTeX arXiv:1508.05499

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Architectural Proprioception in State Space Models: Thermodynamic Training Induces Anticipatory Halt Detection

2026-03-04 · Jay Noon arxiv

We introduce the Probability Navigation Architecture (PNA) framework, which treats neural computation as navigation through a probability manifold governed by thermodynamic principles. We train State Space Models (SSMs) …

Thermodynamic Performance Limits for Score-Based Diffusion Models

2025-10-07 · Nathan X. Kodama, Michael Hinczewski arxiv

We establish a fundamental connection between score-based diffusion models and non-equilibrium thermodynamics by deriving performance limits based on entropy rates. Our main theoretical contribution is a lower bound on t…

Exploring Neurofunctional Phase Transition Patterns in Autism Spectrum Disorder: A Thermodynamics Parameters Analysis Approach

2024-09-02 · Dayu Qin, Yuzhe Chen, Ercan Engin Kuruoglu

Designing network parameters that can effectively represent complex networks is of significant importance for the analysis of time-varying complex networks. This paper introduces a novel thermodynamic framework for analy…

Thermodynamic Mechanism of Life and Aging

2018-01-09 · Marko Popovic

Life is a complex biological phenomenon represented by numerous chemical, physical and biological processes performed by a biothermodynamic system/cell/organism. Both living organisms and inanimate objects are subject to…

Thermodynamics of Protein Folding

2023-07-05 · Juami H. M. van Gils, Halima Mouhib, Erik van Dijk, Maurits Dijkstra 외

While many good textbooks are available on Protein Structure, Molecular Simulations, Thermodynamics and Bioinformatics methods in general, there is no good introductory level book for the field of Structural Bioinformati…

Protein FoldingProtein Structure Prediction