Protein homo-oligomerization is a very common phenomenon, and approximately half of proteins form homo-oligomeric assemblies composed of identical subunits. The vast majority of such assemblies possess internal symmetry which can be either exploited to help or poses challenges during structure determination. Moreover, aspects of symmetry are critical in the modeling of protein homo-oligomers either by docking or by homology-based approaches. Here, we first provide a brief overview of the nature of protein homo-oligomerization. Next, we describe how the symmetry of homo-oligomers is addressed by crystallographic and non-crystallographic symmetry operations, and how biologically relevant intermolecular interactions can be deciphered from the ...
Thesis (Ph.D.)--University of Washington, 2017-06Previously, general principles relating secondary s...
Most homodimeric proteins have symmetric structure. Although symmetry is known to confer structural ...
The minimum free energy state of a protein (the native state) is encoded by its amino-acid sequence....
Protein homo-oligomerization is a very common phenomenon, and approximately half of proteins form ho...
Symmetric homo-oligomers (protein complexes with similar subunits arranged symmetri-cally) play pivo...
The need to engineer novel therapeutics and functional materials is driving the in-silico design of ...
The chapter is a wide overview focused on protein oligomerization, a topic that definitely increase...
Oligomerizing to point-group symmetry, protein oligomers need to have the symmetry broken for biolog...
Symmetry is a feature which can be noticed almost anywhere around us. Animals exhibit bilateral symm...
Symmetric protein dimers, trimers, and higher-order cyclic oligomers play key roles in many biologic...
Symmetric protein dimers, trimers, and higher-order cyclic oligomers play key roles in many biologic...
Symmetric homo-oligomers (protein complexes with similar subunits arranged symmetrically) play pivot...
SummaryIntertwined homo-oligomers are complexes comprising identical protein subunits, where small s...
A comprehensive analysis of the quaternary features of distantly related homo-oligomeric proteins is...
A comprehensive analysis of the quaternary features of distantly related homo-oligomeric proteins is...
Thesis (Ph.D.)--University of Washington, 2017-06Previously, general principles relating secondary s...
Most homodimeric proteins have symmetric structure. Although symmetry is known to confer structural ...
The minimum free energy state of a protein (the native state) is encoded by its amino-acid sequence....
Protein homo-oligomerization is a very common phenomenon, and approximately half of proteins form ho...
Symmetric homo-oligomers (protein complexes with similar subunits arranged symmetri-cally) play pivo...
The need to engineer novel therapeutics and functional materials is driving the in-silico design of ...
The chapter is a wide overview focused on protein oligomerization, a topic that definitely increase...
Oligomerizing to point-group symmetry, protein oligomers need to have the symmetry broken for biolog...
Symmetry is a feature which can be noticed almost anywhere around us. Animals exhibit bilateral symm...
Symmetric protein dimers, trimers, and higher-order cyclic oligomers play key roles in many biologic...
Symmetric protein dimers, trimers, and higher-order cyclic oligomers play key roles in many biologic...
Symmetric homo-oligomers (protein complexes with similar subunits arranged symmetrically) play pivot...
SummaryIntertwined homo-oligomers are complexes comprising identical protein subunits, where small s...
A comprehensive analysis of the quaternary features of distantly related homo-oligomeric proteins is...
A comprehensive analysis of the quaternary features of distantly related homo-oligomeric proteins is...
Thesis (Ph.D.)--University of Washington, 2017-06Previously, general principles relating secondary s...
Most homodimeric proteins have symmetric structure. Although symmetry is known to confer structural ...
The minimum free energy state of a protein (the native state) is encoded by its amino-acid sequence....