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Understanding electron transport systems of Streptomyces cytochrome P450

Authors
Chun, Y. -J.Shimada, T.Waterman, M.R.Guengerich, F.P.
Issue Date
Dec-2006
Publisher
PORTLAND PRESS LTD
Keywords
cytochrome P450; electron transport; Escherichia coli; ferredoxin; ferredoxin reductase; Streptomyces coelicolor
Citation
BIOCHEMICAL SOCIETY TRANSACTIONS, v.34, no.6, pp 1183 - 1185
Pages
3
Journal Title
BIOCHEMICAL SOCIETY TRANSACTIONS
Volume
34
Number
6
Start Page
1183
End Page
1185
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/53201
DOI
10.1042/BST0341183
ISSN
0300-5127
1470-8752
Abstract
Streptomyces spp. are known to produce various types of biologically active compounds including antibiotics, antiparasitic agents, herbicides and immunosuppressants. P450 (cytochrome P450) enzymes may have key roles in these biosynthetic and biotransformation reactions. Recent genomic analysis of Streptomyces coelicolor A3(2) indicates that S. coelicolor may have six ferredoxins (Fdxs), four putative Fdx reductases (FdRs) and 18 P450 genes. However, there are few clues to explain the mechanisms and functions of Streptomyces P450 systems. To solve these questions, we have expressed and purified five S. coelicolor P450s, four MRS and six Fdxs in Escherichia coli. of the purified P450s, CYP105D5 has fatty acid hydroxylation activity in a system reconstituted with putidaredoxin reductase and Fdx4 or with spinach FdR and spinach Fdx, although the reconstitutions with FdR2 or FdR3 and any of the Fdxs did not support CYP105DS-catalysed oleic acid hydroxylation. Elucidation of the detailed mechanisms of electron transport system for Streptomyces P450 may provide the perspective for usefulness of P450s as a biocatalyst.
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