Membrane positioning for high- and low-resolution protein structures through a binary classification approach

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Abstract

The critical importance of algorithms for orienting proteins in the lipid bilayer stems from the extreme difficulty in obtaining experimental data about the membrane boundaries. Here, we present a computational method for positioning protein structures in the membrane, based on the sole alpha carbon coordinates and, therefore, compatible with both high and low structural resolutions. Our algorithm follows a new and simple approach, by treating the membrane assignment problem as a binary classification. Compared with the state-of-the-art algorithms, our method achieves similar accuracy, while being faster. Finally, our open-source software is also capable of processing coarse-grained models of protein structures.

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Postic, G., Ghouzam, Y., Guiraud, V., & Gelly, J. C. (2015). Membrane positioning for high- and low-resolution protein structures through a binary classification approach. Protein Engineering, Design and Selection, 29(3), 87–91. https://doi.org/10.1093/protein/gzv063

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