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Journal Article

Inferring functional units in ion channel pores via relative entropy

Michael Schmidt; Indra Schroeder; Daniel Bauer; Gerhard Thiel; Kay Hamacher
European Biophysics Journal · Vol. 50, Issue 1 · pp. 37-57 · 2021

Abstract

Coarse-grained protein models approximate the first-principle physical potentials. Among those modeling approaches, the relative entropy framework yields promising and physically sound results, in which a mapping from the target protein structure and dynamics to a model is defined and subsequently adjusted by an entropy minimization of the model parameters. Minimization of the relative entropy is equivalent to maximization of the likelihood of reproduction of (configurational ensemble) observations by the model. In this study, we extend the relative entropy minimization procedure beyond parameter fitting by a second optimization level, which identifies the optimal mapping to a (dimension-reduced) topology. We consider anisotropic network models of a diverse set of ion channels and assess our findings by comparison to experimental results.

Bibliographic Information

JournalEuropean Biophysics Journal
PublisherSpringer
Publication Date2021-01-01
Publication Year2021
Volume50
Issue1
Pages37-57
Document TypeJournal Article
Print ISSN0175-7571
eISSN1432-1017
DOI10.1007/s00249-020-01480-7

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NARA Access Coverage1974-01-01~Current
Journal Homepagehttps://www.springer.com/journal/249
Publisher PageOpen Publisher Page
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