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Substrate Access to Cytochrome P450cam: A Comparison of a Thermal Motion Pathway Analysis with Molecular Dynamics Simulation Data
- Source :
- Journal of Molecular Modeling. 3:369-374
- Publication Year :
- 1997
- Publisher :
- Springer Science and Business Media LLC, 1997.
-
Abstract
- Cytochrome P450 enzymes are hemoprotein monooxygenases that catalyse the oxidation of a variety of compounds. The mechanism by which camphor, the natural substrate of Cytochrome P450cam (P450cam), accesses the active site is a long-standing puzzle, although putative access channels have been proposed. A thermal motion pathway (TMP) analysis was performed on the crystal structure of P450cam with camphor bound. Hereby, three distinct thermal motion pathway families (TMPFs) were found. Possible substrate access channels obtained by this analysis based on B-factors are compared with exit channels explored by molecular dynamics simulations (MDS) by imposing an artificial expulsion force on the substrate in addition to the standard MD force field. Two out of three TMPFs are supported by results obtained with the random expulsion MDS method. However, the pathway found by the TMP method to have the highest average B-factor could not be observed by MDS. The pathway proposed from crystallographic data, which is a small opening above the active site located near residues 185, 87 and 395 corresponds to the TMPF with the second highest average B-factor.
- Subjects :
- Hemeprotein
biology
Cytochrome
Chemistry
Protein dynamics
Organic Chemistry
Active site
Crystal structure
Monooxygenase
Catalysis
Force field (chemistry)
Computer Science Applications
Inorganic Chemistry
Molecular dynamics
Crystallography
Computational Theory and Mathematics
biology.protein
Physical and Theoretical Chemistry
Subjects
Details
- ISSN :
- 09485023 and 16102940
- Volume :
- 3
- Database :
- OpenAIRE
- Journal :
- Journal of Molecular Modeling
- Accession number :
- edsair.doi...........50b15d3b5fff496ebcd1562652a3949a