Regioselectivity of CYP2B6: homology modeling, molecular dynamics simulation, docking
被引:0
作者:
Christine Bathelt
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机构:Institute of Technical Biochemistry,
Christine Bathelt
Rolf D. Schmid
论文数: 0引用数: 0
h-index: 0
机构:Institute of Technical Biochemistry,
Rolf D. Schmid
Jürgen Pleiss
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h-index: 0
机构:Institute of Technical Biochemistry,
Jürgen Pleiss
机构:
[1] Institute of Technical Biochemistry,
[2] University of Stuttgart,undefined
[3] Allmandring 31,undefined
[4] 70569 Stuttgart,undefined
[5] Germany,undefined
来源:
Molecular modeling annual
|
2002年
/
8卷
关键词:
Loop MD simulation P450 monooxygenase;
D O I:
暂无
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学科分类号:
摘要:
Human cytochrome P450 (CYP) 2B6 activates the anticancer prodrug cyclophosphamide (CPA) by 4-hydroxylation. In contrast, the same enzyme catalyzes N-deethylation of a structural isomer, the prodrug ifosfamide (IFA), thus causing severe adverse drug effects. To model the molecular interactions leading to a switch in regioselectivity, the structure of CYP2B6 was modeled based on the structure of rabbit CYP2C5. We modeled the missing 22-residue loop in CYP2C5 between helices F and G (the F–G loop), which is not resolved in the X-ray structure, by molecular dynamics (MD) simulations using a simulated annealing protocol. The modeled conformation of the loop was validated by unconstrained MD simulations of the complete enzymes (CYP2C5 and CYP2B6) in water for 70 and 120 ps, respectively. The simulations were stable and led to a backbone r.m.s. deviation of 1.7 Å between the two CYPs.