Ferrous oxygenated (Fe(II)O-2) hemoglobins (Hb's) and myoglobins (Mb's) have been shown to react very rapidly with NO, yielding NO3- and the ferric heme-protein derivative (Fe(III)), by means of the ferric heme-bound peroxynitrite intermediate (Fe(III)OONO), according to the minimum reaction scheme: Fe(II)O-2 + NO ->(kon) Fe(III)OONO ->(h) Fe(III) + NO3- For most Hb's and Mb's, the first step (indicated by k(on)) is rate limiting, the overall reaction following a bimolecular behavior. By contrast, the rate of isomerization and dissociation of Fe(III)OONO (indicated by h) is rate limiting in NO scavenging by Fe(II)O-2 murine neuroglobin, thus the overall reaction follows a monomolecular behavior. Here. we report the characterization of the NO scavenging reaction by Fe(II)O-2 truncated Hb GlbO from Mycobacterium leprae. Values of k(on) (=2.1 x 10(6) M-1 s(-1)) and h (=3.4 s(-1)) For NO scavenging by Fe(II)O-2 M. leprae GlbO have been determined at pH 7.3 and 20.0 degrees C, the rate of Fe(III)OONO decay (h) is rate limiting. The Fe(III)OONO intermediate has been characterized by optical absorption spectroscopy in the Soret region. These results have been analyzed in parallel with those of monomeric and tetrameric globins as well as of flavoHb and discussed with regard to the three-dimensional structure of mycobacterial truncated Hbs and their proposed role in protection from nitrosative stress. (c) 2005 Elsevier Inc. All rights reserved.

Nitric oxide scavenging by Mycobacterium leprae GlbO involves the formation of the ferric heme-bound peroxynitrite intermediate

Bolognesi M;
2006

Abstract

Ferrous oxygenated (Fe(II)O-2) hemoglobins (Hb's) and myoglobins (Mb's) have been shown to react very rapidly with NO, yielding NO3- and the ferric heme-protein derivative (Fe(III)), by means of the ferric heme-bound peroxynitrite intermediate (Fe(III)OONO), according to the minimum reaction scheme: Fe(II)O-2 + NO ->(kon) Fe(III)OONO ->(h) Fe(III) + NO3- For most Hb's and Mb's, the first step (indicated by k(on)) is rate limiting, the overall reaction following a bimolecular behavior. By contrast, the rate of isomerization and dissociation of Fe(III)OONO (indicated by h) is rate limiting in NO scavenging by Fe(II)O-2 murine neuroglobin, thus the overall reaction follows a monomolecular behavior. Here. we report the characterization of the NO scavenging reaction by Fe(II)O-2 truncated Hb GlbO from Mycobacterium leprae. Values of k(on) (=2.1 x 10(6) M-1 s(-1)) and h (=3.4 s(-1)) For NO scavenging by Fe(II)O-2 M. leprae GlbO have been determined at pH 7.3 and 20.0 degrees C, the rate of Fe(III)OONO decay (h) is rate limiting. The Fe(III)OONO intermediate has been characterized by optical absorption spectroscopy in the Soret region. These results have been analyzed in parallel with those of monomeric and tetrameric globins as well as of flavoHb and discussed with regard to the three-dimensional structure of mycobacterial truncated Hbs and their proposed role in protection from nitrosative stress. (c) 2005 Elsevier Inc. All rights reserved.
2006
INFM
ESCHERICHIA-COLI FLAVOHEMOGLOBIN
LIGAND-BINDING PROPERTIES
TRUNCATED HEMOGLOBIN-O
NITROSATIVE STRESS
BORDERLINE LEPROSY
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/115722
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