The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomolecular simulations. Due to the improved interaction balance, it allows for a more accurate description of condensed phase systems. In the present work, we develop a consistent strategy to parametrize carbohydrate molecules accurately within the framework of Martini 3. In particular, we develop a canonical mapping scheme which decomposes arbitrarily large carbohydrates into a limited number of fragments. Bead types for these fragments have been assigned by matching physicochemical properties of mono- and disaccharides. In addition, guidelines for assigning bonds, angles, and dihedrals were developed. These guidelines enable a more accurate des...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to glycolipids. The glycolipids co...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to glycolipids. The glycolipids co...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The Martini 3 force field is a full re-parametrization of the Martini coarse-grained model for biomo...
The Martini 3 force field is a full reparametrization of the Martini coarse-grained model for biomol...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
Polysaccharides (carbohydrates) are key regulators of a large number of cell biological processes. H...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to carbohydrates. The parametrizat...
We present an extension of the Martini coarse-grained force field to glycolipids. The glycolipids co...