Rational discovery of cardiolipin-selective small molecules by coarse-grained high-throughput simulations
ORAL
Abstract
We apply our approach to the identification of small molecules selectively binding to the phospholipid Cardiolipin (CL). CL plays a central role in membrane functions and dynamics, and CL abnormalities are implicated in diseases. The chemical-space exploration provides general design rules to further optimize selectivity over known CL probes. These design rules are corroborated by fluorescence anisotropy measurements of two conforming compounds. Our findings highlight the potential of coarse-grained representations and multiscale modelling for materials discovery and design.
–
Publication: In preparation:<br>"Data-driven discovery of cardiolipin-selective smallmolecules by computational active learning"<br>Bernadette Mohr, Kirill Shmilovich, Isabel Kleinwächter, Dirk Schneider, Andrew L.Ferguson, and Tristan Bereau<br><br>In preparation:<br>"A novel cardiolipin-binder isolated via data-driven and in vitro screening"<br>Isabel Kleinwächter, Bernadette Mohr, Aljoscha Joppe, Nadja Hellmann, Tristan Bereau, Heinz Osiewacz, and Dirk Schneider
Presenters
-
Bernadette Mohr
University of Amsterdam
Authors
-
Bernadette Mohr
University of Amsterdam
-
Kirill Shmilovich
University of Chicago
-
Isabel S Kleinwächter
Johannes Gutenberg University Mainz
-
Dirk Schneider
Johannes Gutenberg University of Mainz
-
Andrew L Ferguson
University of Chicago
-
Tristan Bereau
University of Amsterdam, Max Planck Institute for Polymer Research Mainz