Proteins need to interconvert between many conformations in order to function, many of which are formed transiently, and sparsely populated. Particularly when the lifetimes of these states approach the millisecond timescale, identifying the relevant structures and the mechanism by which they interconvert remains a tremendous challenge. Here we introduce a novel combination of accelerated MD (aMD) simulations and Markov state modelling (MSM) to explore these 'excited' conformational states. Applying this to the highly dynamic protein CypA, a protein involved in immune response and associated with HIV infection, we identify five principally populated conformational states and the atomistic mechanism by which they interconvert. A rational desi...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Determining the interconverting conformations of dynamic proteins in atomic detail is a major challe...
CONSPECTUS: Protein function is inextricably linked to protein dynamics. As we move from a static st...
Proteins need to interconvert between many conformations in order to function, many of which are for...
Proteins have been termed the building blocks of life due to their involvement in practically every ...
Proteins are dynamic molecules and their ability to adopt alternative conformations is central to th...
The passing of time is a constant. In the same way that time shapes our everyday lives, it also play...
Molecular dynamics (MD) has become a routine tool in structural biology and structure-based drug des...
In this paper, we perform molecular simulations on novel viral protein linear nanoactuators. The mai...
Conformational changes of proteins are an*Author contributed equally with all other contributors. es...
Computational methods are used for the study of conformational change in biological molecules. Conve...
A deep understanding of the physicochemical principles that underpin allosteric regulation in prote...
Determining the interconverting conformations of dynamic proteins in atomic detail is a major challe...
AbstractA molecular simulation scheme, called Leap-dynamics, that provides efficient sampling of pro...
Accelerated molecular dynamics (aMD) is a promising sampling method to generate an ensemble of confo...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Determining the interconverting conformations of dynamic proteins in atomic detail is a major challe...
CONSPECTUS: Protein function is inextricably linked to protein dynamics. As we move from a static st...
Proteins need to interconvert between many conformations in order to function, many of which are for...
Proteins have been termed the building blocks of life due to their involvement in practically every ...
Proteins are dynamic molecules and their ability to adopt alternative conformations is central to th...
The passing of time is a constant. In the same way that time shapes our everyday lives, it also play...
Molecular dynamics (MD) has become a routine tool in structural biology and structure-based drug des...
In this paper, we perform molecular simulations on novel viral protein linear nanoactuators. The mai...
Conformational changes of proteins are an*Author contributed equally with all other contributors. es...
Computational methods are used for the study of conformational change in biological molecules. Conve...
A deep understanding of the physicochemical principles that underpin allosteric regulation in prote...
Determining the interconverting conformations of dynamic proteins in atomic detail is a major challe...
AbstractA molecular simulation scheme, called Leap-dynamics, that provides efficient sampling of pro...
Accelerated molecular dynamics (aMD) is a promising sampling method to generate an ensemble of confo...
An atomic resolution description of protein flexibility is essential for understanding the role that...
Determining the interconverting conformations of dynamic proteins in atomic detail is a major challe...
CONSPECTUS: Protein function is inextricably linked to protein dynamics. As we move from a static st...