Allostery commonly refers to the mechanism that regulates protein activity through the binding of a molecule at a different, usually distal, site from the orthosteric site. The omnipresence of allosteric regulation in nature and its potential for drug design and screening render the study of allostery invaluable. Nevertheless, challenges remain as few computational methods are available to effectively predict allosteric sites, identify signalling pathways involved in allostery, or to aid with the design of suitable molecules targeting such sites. Recently, bond-to-bond propensity analysis has been shown successful at identifying allosteric sites for a large and diverse group of proteins from knowledge of the orthosteric sites and its ligand...
Allosteric regulation is a common mechanism employed by complex biomolecular systems for regulation ...
The investigation of allosteric effects in biomolecular structures is of great current interest in d...
Understanding molecular mechanisms underlying the complexity of allosteric regulation in proteins ha...
Allostery commonly refers to the mechanism that regulates protein activity through the binding of a ...
Allostery is a pervasive mechanism that regulates protein activity through ligand binding at a site ...
Allostery is a fundamental mechanism of biological regulation, in which binding of a molecule at a d...
Allostery is the functional change at one site on a protein caused by a change at a distant site. In...
Allosteric modulators have the potential to fine-tune protein functional activity. Therefore, the ta...
Allostery is the functional change at one site on a protein caused by a change at a distant site. In...
Allostery is a fundamental mechanism of biological regulation, in which binding of a molecule at a d...
We thank the Scottish Universities Life Sciences Alliance (SULSA) for funding to JBOM and for PB’s P...
Previously held under moratorium from 28 March 2017 until 28 March 2022Allosteric regulatory sites a...
Previously held under moratorium from 28 March 2017 until 28 March 2022Allosteric regulatory sites a...
BACKGROUND: Despite being hugely important in biological processes, allostery is poorly understood a...
Allostery is the regulation of a protein's activity through a perturbation at a location distant fro...
Allosteric regulation is a common mechanism employed by complex biomolecular systems for regulation ...
The investigation of allosteric effects in biomolecular structures is of great current interest in d...
Understanding molecular mechanisms underlying the complexity of allosteric regulation in proteins ha...
Allostery commonly refers to the mechanism that regulates protein activity through the binding of a ...
Allostery is a pervasive mechanism that regulates protein activity through ligand binding at a site ...
Allostery is a fundamental mechanism of biological regulation, in which binding of a molecule at a d...
Allostery is the functional change at one site on a protein caused by a change at a distant site. In...
Allosteric modulators have the potential to fine-tune protein functional activity. Therefore, the ta...
Allostery is the functional change at one site on a protein caused by a change at a distant site. In...
Allostery is a fundamental mechanism of biological regulation, in which binding of a molecule at a d...
We thank the Scottish Universities Life Sciences Alliance (SULSA) for funding to JBOM and for PB’s P...
Previously held under moratorium from 28 March 2017 until 28 March 2022Allosteric regulatory sites a...
Previously held under moratorium from 28 March 2017 until 28 March 2022Allosteric regulatory sites a...
BACKGROUND: Despite being hugely important in biological processes, allostery is poorly understood a...
Allostery is the regulation of a protein's activity through a perturbation at a location distant fro...
Allosteric regulation is a common mechanism employed by complex biomolecular systems for regulation ...
The investigation of allosteric effects in biomolecular structures is of great current interest in d...
Understanding molecular mechanisms underlying the complexity of allosteric regulation in proteins ha...