| Title : Thermostable variants of cocaine esterase for long-time protection against cocaine toxicity - Gao_2009_Mol.Pharmacol_75_318 |
| Author(s) : Gao D , Narasimhan DL , MacDonald J , Brim R , Ko MC , Landry DW , Woods JH , Sunahara RK , Zhan CG |
| Ref : Molecular Pharmacology , 75 :318 , 2009 |
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Abstract :
Enhancing cocaine metabolism by administration of cocaine esterase (CocE) has been recognized as a promising treatment strategy for cocaine overdose and addiction, because CocE is the most efficient native enzyme for metabolizing the naturally occurring cocaine yet identified. A major obstacle to the clinical application of CocE is the thermoinstability of native CocE with a half-life of only a few minutes at physiological temperature (37 degrees C). Here we report thermostable variants of CocE developed through rational design using a novel computational approach followed by in vitro and in vivo studies. This integrated computational-experimental effort has yielded a CocE variant with a approximately 30-fold increase in plasma half-life both in vitro and in vivo. The novel design strategy can be used to develop thermostable mutants of any protein. |
| PubMedSearch : Gao_2009_Mol.Pharmacol_75_318 |
| PubMedID: 18987161 |
Gao D, Narasimhan DL, MacDonald J, Brim R, Ko MC, Landry DW, Woods JH, Sunahara RK, Zhan CG (2009)
Thermostable variants of cocaine esterase for long-time protection against cocaine toxicity
Molecular Pharmacology
75 :318
Gao D, Narasimhan DL, MacDonald J, Brim R, Ko MC, Landry DW, Woods JH, Sunahara RK, Zhan CG (2009)
Molecular Pharmacology
75 :318