TY - JOUR
T1 - Predicted secondary and tertiary structures of carp γ-crystallins with high methionine content
T2 - Role of methionine residues in the protein stability
AU - Liaw, Yen Chywan
AU - Chiou, Shyh Horng
AU - Chang, Tschining
AU - Chang, Wen Chang
PY - 1992/1/1
Y1 - 1992/1/1
N2 - A systematic structural comparison of several carp γ-crystalline with high methionine contents was made by the secondary-structure prediction together with computer model-building based on the established X-ray structure of calf γ-II crystallin. The overall surface hydrophilicity profile and the distribution of helices, β-sheets, and β-turns along the polypeptide chains are very similar among these carp γ-crystallins. In addition, their general polypeptide packing is close to the characteristic 2 domain/4 motif Greek key three-dimensional conformation depicted for the calf γ-II crystallin. Interestingly, most hydrophobic methionine residues are located on the protein surface with only a few buried inside the protein surface or in the interface between two motifs of each domain. The exposed hydrophobic and polarizable methionine cluster on the protein surface may have a bearing on the crystallin stability and dense packing in the piscine species, and probably also provides a malleable nonpolar surface for the interaction with other crystallin components for the maintenance of a clear and transparent lens.
AB - A systematic structural comparison of several carp γ-crystalline with high methionine contents was made by the secondary-structure prediction together with computer model-building based on the established X-ray structure of calf γ-II crystallin. The overall surface hydrophilicity profile and the distribution of helices, β-sheets, and β-turns along the polypeptide chains are very similar among these carp γ-crystallins. In addition, their general polypeptide packing is close to the characteristic 2 domain/4 motif Greek key three-dimensional conformation depicted for the calf γ-II crystallin. Interestingly, most hydrophobic methionine residues are located on the protein surface with only a few buried inside the protein surface or in the interface between two motifs of each domain. The exposed hydrophobic and polarizable methionine cluster on the protein surface may have a bearing on the crystallin stability and dense packing in the piscine species, and probably also provides a malleable nonpolar surface for the interaction with other crystallin components for the maintenance of a clear and transparent lens.
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U2 - 10.1093/oxfordjournals.jbchem.a123902
DO - 10.1093/oxfordjournals.jbchem.a123902
M3 - Article
C2 - 1429521
AN - SCOPUS:0026800769
SN - 0021-924X
VL - 112
SP - 341
EP - 344
JO - Journal of Biochemistry
JF - Journal of Biochemistry
IS - 3
ER -