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M513101200v1
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Papers In Press, published online ahead of print December 27, 2005
J. Biol. Chem, 10.1074/jbc.M513101200
Submitted on December 8, 2005
Accepted on December 23, 2005

CYP4F18 is the LTB4 omega -1 /omega -2 hydroxylase in mouse polymorphonuclear leukocytes: Identification as the functional orthologue of human PMN CYP4F3A in the down-regulation of responses to LTB4

Peter Christmas, Karine Tolentino, Valeria Primo, Karin Zemski Berry, Robert C. Murphy, Mei Chen, David M. Lee, and Roy J. Soberman

Medicine, massachusetts general hospital east, Charlestown, MA 02129

Corresponding Author: soberman{at}helix.mgh.harvard.edu

Leukotriene B4 (LTB4) is a potent chemoattractant for polymorphonuclear leukocytes (PMN) and other cells. Human PMN inactivate LTB4 by w-oxidation catalyzed by cytochrome P450 (CYP) 4F3A. The contribution of the enzymatic inactivation of LTB4 by CYP4Fs to down-regulating functional responses of cells to LTB4 is unknown. To elucidate the role of CYP4F-mediated inactivation of LTB4 in terminating the responses of PMN to LTB4, and to identify a target for future genetic studies in mice, we have identified the enzyme that catalyzes the -1 and -2 oxidation of LTB4 in mouse myeloid cells as CYP4F18. As determined by mass spectrometry, this enzyme catalyzes the conversion of LTB4 to 19-OH LTB4 and to a lesser extent 18-OH LTB4. Inhibition of CYP4F18 resulted in a marked increase in calcium flux and a 220% increase in the chemotactic response of mouse PMN to LTB4. CYP4F18 expression was induced in bone marrow-derived dendritic cells by bacterial lipopolysaccharide, a ligand for TLR4, and by poly (I:C), a ligand for TLR3. However, when bone marrow-derived myeloid dendritic cells trafficked to popliteal lymph nodes from paw pads, the expression of CYP4F18 was down-regulated. The results identify CYP4F18 as a critical protein in the regulation of LTB4 metabolism and functional responses in mouse PMN, and identify it as the functional orthologue of human PMN CYP4F3A.


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