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Structure, dynamics, and function of the monooxygenase P450 BM-3: insights from computer simulations studies

journal contribution
posted on 2023-10-29, 10:19 authored by Danilo RoccatanoDanilo Roccatano
<p>The monooxygenase P450 BM-3 is a NADPH-dependent fatty acid hydroxylase enzyme isolated from soil bacterium Bacillus megaterium. As a pivotal member of cytochrome P450 superfamily, it has been intensely studied for the comprehension of structure-dynamics-function relationships in this class of enzymes. In addition, due to its peculiar properties, it is also a promising enzyme for biochemical and biomedical applications. However, despite the efforts, the full understanding of the enzyme structure and dynamics is not yet achieved. Computational studies, particularly molecular dynamics (MD) simulations, have importantly contributed to this endeavor by providing new insights at an atomic level regarding the correlations between structure, dynamics, and function of the protein. This topical review summarizes computational studies based on MD simulations of the cytochrome P450 BM-3 and gives an outlook on future directions.</p>

History

School affiliated with

  • School of Mathematics and Physics (Research Outputs)

Publication Title

Journal of Physics: Condensed matter : an Institute of Physics journal

Volume

27

Issue

27

Pages/Article Number

273102

Publisher

IOP Publishing

ISSN

0953-8984

eISSN

1361-648X

Date Submitted

2015-10-26

Date Accepted

2015-04-20

Date of First Publication

2015-06-10

Date of Final Publication

2015-06-10

Date Document First Uploaded

2015-10-27

ePrints ID

19234

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