Cloning, expression and characterization of a fast self-sufficient P450:: CYP102A5 from Bacillus cereus

被引:44
作者
Chowdhary, Puneet K. [1 ]
Alemseghed, Mussie [1 ]
Haines, Donovan C. [1 ]
机构
[1] Univ Texas, Dept Chem, Richardson, TX 75083 USA
关键词
cytochrome P450; cytochrome P450 reductase; fatty acid metabolism; enzymology; Bacillus cereus; CYP102A1; CYP102A5; anthrax;
D O I
10.1016/j.abb.2007.09.010
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
CYP102s represent a family of natural self-sufficient fusions of cytochrome P450 and cytochrome P450 reductase found in some bacteria. One member of this family, named CYP102A1 or more traditionally P450BM-3, has been widely studied as a model of human P450 cytochromes. Remarkable detail of P450 structure and function has been revealed using this highly efficient enzyme. The recent rapid expansion of microbial genome sequences has revealed many relatives of CYP102A1, but to date only two from Bacillus subtilis have been characterized. We report here the cloning and expression of CYP102A5, a new member of this family that is very closely related to CYP102A4 from Bacillus anthracis. Characterization of the substrate specificity of CYP102A5 shows that it, like the other CYP102s, will metabolize saturated and unsaturated fatty acids as well as N-acylamino acids. CYP102A5 catalyzes very fast substrate oxidation, showing one of the highest turnover rates for any P450 monooxygenase studied so far. It does so with more specificity than other CYP102s, yielding primarily omega-1 and omega-2 hydroxylated products. Measurement of the rate of electron transfer through the reductase domain reveals that it is significantly faster in CYP102A5 than in CYP102A1, providing a likely explanation for the increased monooxygenation rate. The availability of this new, very fast fusion P450 will provide a great too] for comparative structure-function studies between CYP102A5 and the other characterized CYP102s. (C) 2007 Elsevier Inc. All rights reserved.
引用
收藏
页码:32 / 43
页数:12
相关论文
共 66 条
[1]  
Aliverti A., 1999, FLAVOPROTEIN PROTOCO
[2]   FATTY-ACID MONOOXYGENATION BY P450BM-3 - PRODUCT IDENTIFICATION AND PROPOSED MECHANISMS FOR THE SEQUENTIAL HYDROXYLATION REACTIONS [J].
BODDUPALLI, SS ;
PRAMANIK, BC ;
SLAUGHTER, CA ;
ESTABROOK, RW ;
PETERSON, JA .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1992, 292 (01) :20-28
[3]  
BODDUPALLI SS, 1990, J BIOL CHEM, V265, P4233
[4]   Cloning, expression and characterisation of CYP102A2, a self-sufficient P450 monooxygenase from Bacillus subtilis [J].
Budde, M ;
Maurer, SC ;
Schmid, RD ;
Urlacher, VB .
APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2004, 66 (02) :180-186
[5]   Selective hydroxylation of highly branched fatty acids and their derivatives by CYP102A1 from Bacillus megaterium [J].
Budde, Michael ;
Morr, Michael ;
Schmid, Rolf D. ;
Urlacher, Viada B. .
CHEMBIOCHEM, 2006, 7 (05) :789-794
[6]   The highly stereoselective oxidation of polyunsaturated fatty acids by cytochrome P450BM-3 [J].
Capdevila, JH ;
Wei, SZ ;
Helvig, C ;
Falck, JR ;
Belosludtsev, Y ;
Truan, G ;
GrahamLorence, SE ;
Peterson, JA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (37) :22663-22671
[7]   Structural determinants of active site binding affinity and metabolism by cytochrome P450BM-3 [J].
Cowart, LA ;
Falck, JR ;
Capdevila, JH .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 2001, 387 (01) :117-124
[8]   Are branched chain fatty acids the natural substrates for P450BM3? [J].
Cryle, Max J. ;
Espinoza, Rocio D. ;
Smith, Sarah J. ;
Matovic, Nicholas J. ;
De Voss, James J. .
CHEMICAL COMMUNICATIONS, 2006, (22) :2353-2355
[9]   Characterization of Bacillus probiotics available for human use [J].
Duc, LH ;
Hong, HA ;
Barbosa, TM ;
Henriques, AO ;
Cutting, SM .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2004, 70 (04) :2161-2171
[10]   Fatty acid signals in Bacillus megaterium are attenuated by cytochrome P-450-mediated hydroxylation [J].
English, N ;
Palmer, CNA ;
Alworth, WL ;
Kang, L ;
Hughes, V ;
Wolf, CR .
BIOCHEMICAL JOURNAL, 1997, 327 :363-368