β-Crystallins are complex oligomers composed of many related subunits. In order to understand their interactions we have built molecular models of several bovine β-crystallins, based on their sequence similarity to the well-defined γ-II crystallin structure, using interactive computer graphics techniques. Their common origin with γ-crystallin is displayed in both the retention of four-fold sequence repeats of critical residues involved with stabilizing a folded β-hairpin and the conservation of core-filling hydrophobic side-chains. The β-crystallins have been built as bilobal molecules with each domain composed of two ‘Greek key motifs which associate about an approximate two-fold axis to form β-sheets. The β-crystallin sequences have previ...
We report structural models for the most abundant oligomers populated by the polydisperse molecular ...
SummaryWe report structural models for the most abundant oligomers populated by the polydisperse mol...
Abstractα-Crystallin, the major protein in all vertebrate lenses, functions as a chaperone. In the p...
β-Crystallins are complex oligomers composed of many related subunits. In order to understand their ...
THE β, γ-crystallins form a class of homologous proteins in the eye lens. Each γ-crystallin comprise...
AbstractMolecular models for Rana γ-1 and γ-2 crystallins have been constructed using computer graph...
THE β, γ-crystallins form a class of homologous proteins in the eye lens. Each γ-crystallin comprise...
The 3-dimensional organisation of crystallin polypeptides into globular proteins and their interacti...
The 3-dimensional organisation of crystallin polypeptides into globular proteins and their interacti...
β-Crystallins are polydisperse, oligomeric structural proteins that have a major role in forming the...
β-Crystallins are polydisperse, oligomeric structural proteins that have a major role in forming the...
<p>Top panel: βA3, βB1, and βB2 self-associate in a reversible manner to form dimers. The homo-assoc...
Purpose: α-Crystallin, a hetero-oligomer of αA- and αB-crystallin, is involved in maintaining eye le...
AbstractHuman lens β-crystallin contains four acidic (βA1→βA4) and three basic (βB1→βB3) subunits. T...
AbstractMolecular models for Rana γ-1 and γ-2 crystallins have been constructed using computer graph...
We report structural models for the most abundant oligomers populated by the polydisperse molecular ...
SummaryWe report structural models for the most abundant oligomers populated by the polydisperse mol...
Abstractα-Crystallin, the major protein in all vertebrate lenses, functions as a chaperone. In the p...
β-Crystallins are complex oligomers composed of many related subunits. In order to understand their ...
THE β, γ-crystallins form a class of homologous proteins in the eye lens. Each γ-crystallin comprise...
AbstractMolecular models for Rana γ-1 and γ-2 crystallins have been constructed using computer graph...
THE β, γ-crystallins form a class of homologous proteins in the eye lens. Each γ-crystallin comprise...
The 3-dimensional organisation of crystallin polypeptides into globular proteins and their interacti...
The 3-dimensional organisation of crystallin polypeptides into globular proteins and their interacti...
β-Crystallins are polydisperse, oligomeric structural proteins that have a major role in forming the...
β-Crystallins are polydisperse, oligomeric structural proteins that have a major role in forming the...
<p>Top panel: βA3, βB1, and βB2 self-associate in a reversible manner to form dimers. The homo-assoc...
Purpose: α-Crystallin, a hetero-oligomer of αA- and αB-crystallin, is involved in maintaining eye le...
AbstractHuman lens β-crystallin contains four acidic (βA1→βA4) and three basic (βB1→βB3) subunits. T...
AbstractMolecular models for Rana γ-1 and γ-2 crystallins have been constructed using computer graph...
We report structural models for the most abundant oligomers populated by the polydisperse molecular ...
SummaryWe report structural models for the most abundant oligomers populated by the polydisperse mol...
Abstractα-Crystallin, the major protein in all vertebrate lenses, functions as a chaperone. In the p...