Bayesian analysis of isothermal titration calorimetry for binding thermodynamics Journal Article


Authors: Nguyen, T. H.; Rustenburg, A. S.; Krimmer, S. G.; Zhang, H.; Clark, J. D.; Novick, P. A.; Branson, K.; Pande, V. S.; Chodera, J. D.; Minh, D. D. L.
Article Title: Bayesian analysis of isothermal titration calorimetry for binding thermodynamics
Abstract: Isothermal titration calorimetry (ITC) is the only technique able to determine both the enthalpy and entropy of noncovalent association in a single experiment. The standard data analysis method based on nonlinear regression, however, provides unrealistically small uncertainty estimates due to its neglect of dominant sources of error. Here, we present a Bayesian framework for sampling from the posterior distribution of all thermodynamic parameters and other quantities of interest from one or more ITC experiments, allowing uncertainties and correlations to be quantitatively assessed. For a series of ITC measurements on metal:chelator and protein:ligand systems, the Bayesian approach yields uncertainties which represent the variability from experiment to experiment more accurately than the standard data analysis. In some datasets, the median enthalpy of binding is shifted by as much as 1.5 kcal/mol. A Python implementation suitable for analysis of data generated by MicroCal instruments (and adaptable to other calorimeters) is freely available online. © 2018 Nguyen et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
Journal Title: PLoS ONE
Volume: 13
Issue: 9
ISSN: 1932-6203
Publisher: Public Library of Science  
Date Published: 2018-09-13
Start Page: e0203224
Language: English
DOI: 10.1371/journal.pone.0203224
PROVIDER: scopus
PMCID: PMC6136728
PUBMED: 30212471
DOI/URL:
Notes: Article -- Export Date: 1 October 2018 -- Source: Scopus
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  1. John Damon Chodera
    108 Chodera