<p>3D presentation of <i>hs</i>βADR1 homology model generated by ORCHESTRAR (A) without sub-model region, and (B) with sub-model region (amino acid residues from Val209 to Lys254) obtained by I-TASSER.</p
The most frequently used approach for protein structure prediction is currently homology modeling. T...
<p>The models (white ribbons) are superimposed on the target native structures (gray ribbons). (A) G...
The purpose of this quick guide is to help new modelers who have little or no background in comparat...
<p>(A) Surface representation of the full length <i>S. cerevisiae</i> Hsp90 (PDB code 2CG9), showing...
<p>(A) 3D model of Rat β<sub>1</sub>AR showing a bundle structure constitutes of seven helices, the ...
<p>The 3D model structure is shown in ribbon representation with α-helices in purple and β-strands i...
<p>(A) Homology model of HDAC8 (model and template in cyan and green). (B) Homology model of HDAC10 ...
<p>(A) The structures are shown as Cα wires. The peptide-binding groove of each model contains α1 an...
<p>Schematics of strategy implemented towards successful homology modeling of <i>hs</i>βADR1 and its...
<p>Structural models of the hA3G N-terminal domain. The models were constructed by homology modeling...
Homology modeling [4] aims to build three-dimensional protein structure [2] models using experimenta...
<p>The predicted structure of DR0865 was obtained from homology modeling (Swiss-model) using Hpy-Fur...
<p>A homology model of the A/Brisbane/10/2007 (H3N2) HA trimer is shown, with each monomer represent...
<p>Protein models were shown in secondary representation. Tyr52 and Cys52 residue were shown in amin...
<p>The crystal structure: green, Protein Data Bank ID: 1XE1; the unrefined homology model: yellow, p...
The most frequently used approach for protein structure prediction is currently homology modeling. T...
<p>The models (white ribbons) are superimposed on the target native structures (gray ribbons). (A) G...
The purpose of this quick guide is to help new modelers who have little or no background in comparat...
<p>(A) Surface representation of the full length <i>S. cerevisiae</i> Hsp90 (PDB code 2CG9), showing...
<p>(A) 3D model of Rat β<sub>1</sub>AR showing a bundle structure constitutes of seven helices, the ...
<p>The 3D model structure is shown in ribbon representation with α-helices in purple and β-strands i...
<p>(A) Homology model of HDAC8 (model and template in cyan and green). (B) Homology model of HDAC10 ...
<p>(A) The structures are shown as Cα wires. The peptide-binding groove of each model contains α1 an...
<p>Schematics of strategy implemented towards successful homology modeling of <i>hs</i>βADR1 and its...
<p>Structural models of the hA3G N-terminal domain. The models were constructed by homology modeling...
Homology modeling [4] aims to build three-dimensional protein structure [2] models using experimenta...
<p>The predicted structure of DR0865 was obtained from homology modeling (Swiss-model) using Hpy-Fur...
<p>A homology model of the A/Brisbane/10/2007 (H3N2) HA trimer is shown, with each monomer represent...
<p>Protein models were shown in secondary representation. Tyr52 and Cys52 residue were shown in amin...
<p>The crystal structure: green, Protein Data Bank ID: 1XE1; the unrefined homology model: yellow, p...
The most frequently used approach for protein structure prediction is currently homology modeling. T...
<p>The models (white ribbons) are superimposed on the target native structures (gray ribbons). (A) G...
The purpose of this quick guide is to help new modelers who have little or no background in comparat...