In recent years the use of integrative, information-driven computational approaches for modelling the structure of biomolecules has been increasing in popularity. These are now recognised as a crucial complement to experimental structural biology techniques such as X-ray crystallography, Nuclear Magnetic Resonance (NMR) spectroscopy and cryo-electron microscopy (cryo-EM). This trend can be credited to a few reasons such as the increased prominence of structures solved by cryo-EM, the improvements in proteomics approaches such as Crosslinking Mass Spectrometry (XL-MS), the drive to study systems of higher complexity in their native state and the maturation of many computational techniques combined with the wide-spread availability of informa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...
Structures of biomolecular systems are increasingly computed by integrative modeling. In this approa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...
In recent years the use of integrative, information-driven computational approaches for modelling th...
In recent years the use of integrative, information-driven computational approaches for modelling th...
In recent years the use of integrative, information-driven computational approaches for modelling th...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
Protein interactions define the homeostatic state of the cell. Our ability to understand these inter...
Protein interactions define the homeostatic state of the cell. Our ability to understand these inter...
The living cell is a formidable entity kept intact and functioning by a network of interactions carr...
Proteins and their intricate network of interactions are the mainstay of any cellular process. Disse...
Biomolecular interactions are critical in cellular environments. Proteins, which are the workhorses ...
Structures of biomolecular systems are increasingly computed by integrative modeling. In this approa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...
Structures of biomolecular systems are increasingly computed by integrative modeling. In this approa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...
In recent years the use of integrative, information-driven computational approaches for modelling th...
In recent years the use of integrative, information-driven computational approaches for modelling th...
In recent years the use of integrative, information-driven computational approaches for modelling th...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
High-resolution structural information is needed in order to unveil the underlying mechanistic of bi...
Protein interactions define the homeostatic state of the cell. Our ability to understand these inter...
Protein interactions define the homeostatic state of the cell. Our ability to understand these inter...
The living cell is a formidable entity kept intact and functioning by a network of interactions carr...
Proteins and their intricate network of interactions are the mainstay of any cellular process. Disse...
Biomolecular interactions are critical in cellular environments. Proteins, which are the workhorses ...
Structures of biomolecular systems are increasingly computed by integrative modeling. In this approa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...
Structures of biomolecular systems are increasingly computed by integrative modeling. In this approa...
Protein complexes are key catalysts and regulators for the majority of cellular processes. Unveiling...