Title of article :
Molecular Dynamics Simulations To Determine the Effect of Supercritical Carbon Dioxide on the Structural Integrity of Hen Egg White Lysozyme
Author/Authors :
Liu، Hsuan-Liang نويسنده , , Hsieh، Wei-Chan نويسنده , , Liu، Hwai-Shen نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
-92
From page :
93
To page :
0
Abstract :
In this study, various molecular dynamics simulations were conducted to investigate the effect of supercritical carbon dioxide on the structural integrity of hen egg white lysozyme. The analyses of backbone root-mean-square deviation, radius of gyration, and secondary structure stability all show that supercritical CO2 exhibits the ability to increase the stability of this protein, probably as a result of the solvent with less polarity, where hydrophobic interactions stabilizing the native structure are weakened and simultaneously the local hydrogen bonds are strengthened, resulting in stabilization of the secondary structures. The hydrophobic cores in the (alpha)- and (beta)-domains also play an important role in preventing this protein from thermal unfolding. As supercritical CO2 has been attractive for biomedical applications because of the advantages of mild critical condition, nonflammability, nontoxity, and the purity of the resulting products, the structural stabilizing effect found in this study strongly suggests that it is possible to increase the thermostability of hen egg white lysozyme by pretreatment with supercritical CO2, leading to better industrial applications of this protein.
Keywords :
molecular data , molecular processes , ISM: molecules
Journal title :
BIOTECHNOLOGY PROGRESS
Serial Year :
2004
Journal title :
BIOTECHNOLOGY PROGRESS
Record number :
4999
Link To Document :
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