The ferrous dioxygen complex of the oxygenase domain of neuronal nitric-oxide synthase

Citation
M. Couture et al., The ferrous dioxygen complex of the oxygenase domain of neuronal nitric-oxide synthase, J BIOL CHEM, 275(5), 2000, pp. 3201-3205
Citations number
54
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
275
Issue
5
Year of publication
2000
Pages
3201 - 3205
Database
ISI
SICI code
0021-9258(20000204)275:5<3201:TFDCOT>2.0.ZU;2-S
Abstract
The mechanisms by which nitric-oxide synthases (NOSs) bind and activate oxy gen at their P450-type heme active site in order to synthesize nitric oxide from the substrate L-arginine are mostly unknown. To obtain information co ncerning the structure and properties of the first oxygenated intermediate of the enzymatic cycle, we have used a rapid continuous flow mixer and reso nance Raman spectroscopy to generate and identify the ferrous dioxygen comp lex of the oxygenase domain of nNOS (Fe2+O2 nNOSoxy), We detect a line at 1 135 cm(-1) in the resonance Raman spectrum of the intermediate formed from 0.6 to 3.0 ms after the rapid mixing of the ferrous enzyme with oxygen that is shifted to 1068 cm(-1) with O-18(2). This line is assigned as the O-O s tretching mode (upsilon(O-O)) of the oxygenated complex of nNOSoxy. Rapid m ixing experiments performed with nNOSoxy saturated with L-arginine or N-ome ga-hydroxy-L-arginine, in the presence or absence of (6R)-5,6,7,8-tetrahydr o-L-biopterin, reveal that the upsilon(O-O) line is insensitive to the pres ence of the substrate and the pterin. The optical spectrum of this ferrous dioxygen species, with a Soret band wavelength maximum at 430 nm, confirms the identification of the previously reported oxygenated complexes generate d by stopped flow techniques.