Template-based modeling that employs various meta-threading techniques is currently the most accurate, and consequently the most commonly used, approach for protein structure prediction. Despite the evident progress in this field, accurate structure models cannot be constructed for a significant fraction of gene products, thus the development of new algorithms is required. Here, we describe the development, optimization and large-scale benchmarking of eThread, a highly accurate meta-threading procedure for the identification of structural templates and the construction of corresponding target-to-template alignments. eThread integrates ten state-of-the-art threading/fold recognition algorithms in a local environment and extensively uses vari...
© 2006 by the Biophysical SocietyThis study involves the development of a rapid comparative modeling...
Protein structure prediction is a necessary tool in the field of bioinformatic analysis. It is a non...
© 2007 by the Biophysical SocietyWe have developed an ab initio protein structure prediction method ...
Template-based modeling that employs various meta-threading techniques is currently the most accurat...
Template-based modeling that employs various meta-threading techniques is currently the most accurat...
Protein threading is widely used in the prediction of protein structure and the subsequent functiona...
AbstractAn automated protein structure prediction algorithm, pro-sp3-Threading/ASSEmbly/Refinement (...
© 2008 by the Biophysical SocietyTo improve tertiary structure predictions of more difficult targets...
Background Accurate prediction of protein structure is fundamentally important to un...
The genome revolution has produced vast amount of sequence information, but the functional annotatio...
© 2004 by the Biophysical SocietyWe evaluate tertiary structure predictions on medium to large size ...
AbstractWe evaluate tertiary structure predictions on medium to large size proteins by TASSER, a new...
Knowledge of protein structures is essential to understand the proteins’ functions, evolution, dynam...
AbstractTo improve tertiary structure predictions of more difficult targets, the next generation of ...
AbstractThis study involves the development of a rapid comparative modeling tool for homologous sequ...
© 2006 by the Biophysical SocietyThis study involves the development of a rapid comparative modeling...
Protein structure prediction is a necessary tool in the field of bioinformatic analysis. It is a non...
© 2007 by the Biophysical SocietyWe have developed an ab initio protein structure prediction method ...
Template-based modeling that employs various meta-threading techniques is currently the most accurat...
Template-based modeling that employs various meta-threading techniques is currently the most accurat...
Protein threading is widely used in the prediction of protein structure and the subsequent functiona...
AbstractAn automated protein structure prediction algorithm, pro-sp3-Threading/ASSEmbly/Refinement (...
© 2008 by the Biophysical SocietyTo improve tertiary structure predictions of more difficult targets...
Background Accurate prediction of protein structure is fundamentally important to un...
The genome revolution has produced vast amount of sequence information, but the functional annotatio...
© 2004 by the Biophysical SocietyWe evaluate tertiary structure predictions on medium to large size ...
AbstractWe evaluate tertiary structure predictions on medium to large size proteins by TASSER, a new...
Knowledge of protein structures is essential to understand the proteins’ functions, evolution, dynam...
AbstractTo improve tertiary structure predictions of more difficult targets, the next generation of ...
AbstractThis study involves the development of a rapid comparative modeling tool for homologous sequ...
© 2006 by the Biophysical SocietyThis study involves the development of a rapid comparative modeling...
Protein structure prediction is a necessary tool in the field of bioinformatic analysis. It is a non...
© 2007 by the Biophysical SocietyWe have developed an ab initio protein structure prediction method ...