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Rescaling protein-protein interactions improves Martini 3 for flexible proteins in solution.


ABSTRACT: Multidomain proteins with flexible linkers and disordered regions play important roles in many cellular processes, but characterizing their conformational ensembles is difficult. We have previously shown that the coarse-grained model, Martini 3, produces too compact ensembles in solution, that may in part be remedied by strengthening protein-water interactions. Here, we show that decreasing the strength of protein-protein interactions leads to improved agreement with experimental data on a wide set of systems. We show that the 'symmetry' between rescaling protein-water and protein-protein interactions breaks down when studying interactions with or within membranes; rescaling protein-protein interactions better preserves the binding specificity of proteins with lipid membranes, whereas rescaling protein-water interactions preserves oligomerization of transmembrane helices. We conclude that decreasing the strength of protein-protein interactions improves the accuracy of Martini 3 for IDPs and multidomain proteins, both in solution and in the presence of a lipid membrane.

SUBMITTER: Thomasen FE 

PROVIDER: S-EPMC11300910 | biostudies-literature | 2024 Aug

REPOSITORIES: biostudies-literature

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Rescaling protein-protein interactions improves Martini 3 for flexible proteins in solution.

Thomasen F Emil FE   Skaalum Tórur T   Kumar Ashutosh A   Srinivasan Sriraksha S   Vanni Stefano S   Lindorff-Larsen Kresten K  

Nature communications 20240805 1


Multidomain proteins with flexible linkers and disordered regions play important roles in many cellular processes, but characterizing their conformational ensembles is difficult. We have previously shown that the coarse-grained model, Martini 3, produces too compact ensembles in solution, that may in part be remedied by strengthening protein-water interactions. Here, we show that decreasing the strength of protein-protein interactions leads to improved agreement with experimental data on a wide  ...[more]

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