Features and development of Coot
Особенности и развитие Coot
2010-03-23
SCID: 54.1/rgesqnjw
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Cootelectron-density mapsmacromolecular model validationmolecular graphicsreal-space refinement
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Abstract (AI)
Coot is a molecular-graphics application for model building and validation of biological macromolecules. The program displays electron-density maps and atomic models and allows model manipulations such as idealization, real-space refinement, manual rotation/translation, rigid-body fitting, ligand search, solvation, mutations, rotamers and Ramachandran idealization. Furthermore, tools are provided for model validation as well as interfaces to external programs for refinement, validation and graphics. The software is designed to be easy to learn for novice users, which is achieved by ensuring that tools for common tasks are 'discoverable' through familiar user-interface elements (menus and toolbars) or by intuitive behaviour (mouse controls). Recent developments have focused on providing tools for expert users, with customisable key bindings, extensions and an extensive scripting interface. The software is under rapid development, but has already achieved very widespread use within the crystallographic community. The current state of the software is presented, with a description of the facilities available and of some of the underlying methods employed.
Key Findings
1
Coot emphasizes novice usability by making common tasks discoverable through familiar menus, toolbars, and intuitive mouse controls.
2
Coot is a molecular-graphics application for building, refining, validating, and manipulating biological macromolecular models against electron-density maps.
3
Despite rapid ongoing development, Coot has achieved widespread adoption within the crystallographic community and integrates with external refinement, validation, and graphics programs.
4
Recent development expanded expert functionality through customizable key bindings, extensions, and an extensive scripting interface.
5
The software provides diverse model-building tools, including idealization, real-space refinement, rigid-body fitting, ligand search, solvation, mutation, rotamer analysis, and Ramachandran idealization.
Research Object
Coot molecular-graphics application (software for model building and validation of biological macromolecules)
Research Subject
The software’s model-building, validation, usability, extensibility, and scripting capabilities
Publication Details
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2010-03-23
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