Background: In recent years, an exponential growing number of tools for protein sequence analysis, editing and modeling tasks have been put at the disposal of the scientific community. Despite the vast majority of these tools have been released as open source software, their deep learning curves often discourages even the most experienced users. Results: A simple and intuitive interface, PyMod, between the popular molecular graphics system PyMOL and several other tools (i.e., [PSI-] BLAST, ClustalW, MUSCLE, CEalign and MODELLER) has been developed, to show how the integration of the individual steps required for homology modeling and sequence/structure analysis within the PyMOL framework can hugely simplify these tasks. Sequence similarity ...
International audienceThe increasing number of available protein structures requires efficient tools...
OAK B202 INTEGRATION OF STRUCTURAL AND SEQUENCE INFORMATION FOR HOMOLOGY-BASED MODELING OF PROTEINS....
Advances in protein crystallography and homology modeling techniques are producing vast amounts of h...
The PyMod project is designed to act as a fully integrated interface between the popular molecular g...
Abstract Motivation The recently released PyMod ...
Abstract Summary The PyMod project is designed t...
BackgroundOver the past decade, a number of tools have emerged for the examination of homology relat...
The alignment of biological sequences is crucial for the transfer of annotation from model organisms...
Comparison of multiple protein structures has a broad range of applications in the analysis of prote...
The MPI Bioinformatics Toolkit (https://toolkit.tuebingen.mpg.de) provides interactive access to a w...
Computing sequence similarity is a fundamental task in biology, with alignment forming the basis for...
BackgroundComparing related structures and viewing the structures in the context of sequence alignme...
Background: The 2013 BioVis Contest provided an opportunity to evaluate different paradigms for visu...
The increasing number of available protein structures requires efficient tools for multiple structur...
Background: By virtue of their shared ancestry, homologous sequences are similar in their structure ...
International audienceThe increasing number of available protein structures requires efficient tools...
OAK B202 INTEGRATION OF STRUCTURAL AND SEQUENCE INFORMATION FOR HOMOLOGY-BASED MODELING OF PROTEINS....
Advances in protein crystallography and homology modeling techniques are producing vast amounts of h...
The PyMod project is designed to act as a fully integrated interface between the popular molecular g...
Abstract Motivation The recently released PyMod ...
Abstract Summary The PyMod project is designed t...
BackgroundOver the past decade, a number of tools have emerged for the examination of homology relat...
The alignment of biological sequences is crucial for the transfer of annotation from model organisms...
Comparison of multiple protein structures has a broad range of applications in the analysis of prote...
The MPI Bioinformatics Toolkit (https://toolkit.tuebingen.mpg.de) provides interactive access to a w...
Computing sequence similarity is a fundamental task in biology, with alignment forming the basis for...
BackgroundComparing related structures and viewing the structures in the context of sequence alignme...
Background: The 2013 BioVis Contest provided an opportunity to evaluate different paradigms for visu...
The increasing number of available protein structures requires efficient tools for multiple structur...
Background: By virtue of their shared ancestry, homologous sequences are similar in their structure ...
International audienceThe increasing number of available protein structures requires efficient tools...
OAK B202 INTEGRATION OF STRUCTURAL AND SEQUENCE INFORMATION FOR HOMOLOGY-BASED MODELING OF PROTEINS....
Advances in protein crystallography and homology modeling techniques are producing vast amounts of h...