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Parmodel: a web server for automated comparative modeling of proteins
(Elsevier B.V., 2004-12-24)
Parmodel is a web server for automated comparative modeling and evaluation of protein structures. The aim of this tool is to help inexperienced users to perform modeling, assessment, visualization, and optimization of ...
Parmodel: a web server for automated comparative modeling of proteins
(Elsevier B.V., 2004-12-24)
Parmodel is a web server for automated comparative modeling and evaluation of protein structures. The aim of this tool is to help inexperienced users to perform modeling, assessment, visualization, and optimization of ...
Molecular modeling databases: A new way in the search of protein targets for drug development
(2007-01-01)
DBMODELING is a relational database of annotated comparative protein structure models and their metabolic, pathway characterization. It is focused on enzymes identified in the genomes of Mycobacterium tuberculosis and ...
Molecular modeling databases: A new way in the search of protein targets for drug development
(2007-01-01)
DBMODELING is a relational database of annotated comparative protein structure models and their metabolic, pathway characterization. It is focused on enzymes identified in the genomes of Mycobacterium tuberculosis and ...
Structural Insights on Two Hypothetical Secretion Chaperones from Xanthomonas axonopodis pv. citri
(SpringerNew YorkEUA, 2011)
Efficient and automated large-scale detection of structural relationships in proteins with a flexible aligner
(2016)
Background: The total number of known three-dimensional protein structures is rapidly increasing. Consequently, the need for fast structural search against complete databases without a significant loss of accuracy is ...
Parmodel: a web server for automated comparative modeling of proteins
(Elsevier B.V., 2014)
Automated quantification of protein periodic nanostructures in fluorescence nanoscopy images: Abundance and regularity of neuronal spectrin membrane-associated skeleton
(Nature Publishing Group, 2017-12)
Fluorescence nanoscopy imaging permits the observation of periodic supramolecular protein structures in their natural environment, as well as the unveiling of previously unknown protein periodic structures. Deciphering the ...