[[abstract]]Quantifying the density of conformations over phase space (the conformational distribution) is needed to model important macromolecular processes such as protein folding. In this work, we quantify the Conformational distribution for a simple polypeptide (N-mer polyalanine) using the cumulative distribution function (CDF), which gives the probability that two randomly selected conformations are separated by less than a "conformational" distance and whose inverse gives conformation counts as a function of conformational radius. An important finding is that the conformation counts obtained by the CDF inverse depend critically on the assignment of a conformation's distance span and the ensemble (e.g., unfolded state model)...
Flexible polypeptides such as unfolded proteins may access an astronomical number of conformations. ...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...
AbstractBy considering how polymer structures are distributed in conformation space, we show that it...
[[abstract]]The density of states (DOS), which gives the number of conformations with a particular e...
A fundamental problem of relevance to protein folding and structural comparison of biomolecules is t...
[[sponsorship]]生物醫學科學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/...
Proteins can exhibit significant conformational heterogeneity either under denaturing conditions or ...
Unlike native proteins that are amenable to structural analysis at atomic resolution, unfolded prote...
AbstractDistance-dependent statistical potentials are an important class of energy functions extensi...
ABSTRACT: Unlike native proteins that are amenable to structural analysis at atomic resolution, unfo...
This is our second type of model for protein folding where the configurational parameters and the ef...
Conformational ensembles are models of proteins that capture variations in conformation that result ...
Flexible polypeptides such as unfolded proteins may access an astronomical number of conformations. ...
ABSTRACT: Basic principles of statistical mechanics require that proteins sample an ensemble of conf...
Flexible polypeptides such as unfolded proteins may access an astronomical number of conformations. ...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...
AbstractBy considering how polymer structures are distributed in conformation space, we show that it...
[[abstract]]The density of states (DOS), which gives the number of conformations with a particular e...
A fundamental problem of relevance to protein folding and structural comparison of biomolecules is t...
[[sponsorship]]生物醫學科學研究所[[note]]已出版;[SCI];有審查制度;具代表性[[note]]http://gateway.isiknowledge.com/gateway/...
Proteins can exhibit significant conformational heterogeneity either under denaturing conditions or ...
Unlike native proteins that are amenable to structural analysis at atomic resolution, unfolded prote...
AbstractDistance-dependent statistical potentials are an important class of energy functions extensi...
ABSTRACT: Unlike native proteins that are amenable to structural analysis at atomic resolution, unfo...
This is our second type of model for protein folding where the configurational parameters and the ef...
Conformational ensembles are models of proteins that capture variations in conformation that result ...
Flexible polypeptides such as unfolded proteins may access an astronomical number of conformations. ...
ABSTRACT: Basic principles of statistical mechanics require that proteins sample an ensemble of conf...
Flexible polypeptides such as unfolded proteins may access an astronomical number of conformations. ...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...
Many proteins consist of folded domains connected by regions with higher flexibility. The details of...