A Guide to Titratable Martini Simulations

Archive ouverte

Sami, Selim | Grünewald, Fabian | Souza, Paulo C. T. | Marrink, Siewert

Edité par CCSD ; AIP Publishing LLCMelville, New York -

International audience. The Martini force-field for molecular dynamics (MD) simulations is suitable for running MD simulations of complex bio(molecular) systems and nano-materials. Recently, titratable Martini was developed, which is an extension of the popular force-field that is suitable for running constant pH simulations within the Martini framework. In this chapter, the key concepts behind the titratable Martini model are summarized, followed by a tutorial style presentation of three application cases. These application cases demonstrate how to generate coordinates, run titration simulations, and analyze them with the help of the martini_sour package. Martini_sour is a dedicated Python suite for facilitating all aspects of titratable Martini simulations. Finally, a series of notes containing useful information, limitations, and tips are described in the last section.

Consulter en ligne

Suggestions

Du même auteur

Martini 3: a general purpose force field for coarse-grained molecular dynamics

Archive ouverte | Souza, Paulo | CCSD

International audience

Protocol for Simulations of PEGylated Proteins with Martini 3

Archive ouverte | Grünewald, Fabian | CCSD

International audience

Martinize2 and Vermouth: Unified Framework for Topology Generation

Archive ouverte | Kroon, P | CCSD

Ongoing advances in force field and computer hardware development enable the use of molecular dynamics (MD) to simulate increasingly complex systems with the ultimate goal of reaching cellular complexity. At the same time, rationa...

Chargement des enrichissements...