Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Oxidized mucus proteinase inhibitor: a fairly potent neutrophil elastase inhibitor

View through CrossRef
N-chlorosuccinimide oxidizes one of the methionine residues of mucus proteinase inhibitor with a second-order rate constant of 1.5 M-1.s-1. Cyanogen bromide cleavage and NH2-terminal sequencing show that the modified residue is methionine-73, the P′1 component of the inhibitor's active centre. Oxidation of the inhibitor decreases its neutrophil elastase inhibitory capacity but does not fully abolish it. The kinetic parameters describing the elastase-oxidized inhibitor interaction are: association rate constant kass. = 2.6 x 10(5) M-1.s-1, dissociation rate constant kdiss. = 2.9 x 10(-3) s-1 and equilibrium dissociation constant Ki = 1.1 x 10(-8) M. Comparison with the native inhibitor indicates that oxidation decreases kass. by a factor of 18.8 and increases kdiss. by a factor of 6.4, and therefore leads to a 120-fold increase in Ki. Yet, the oxidized inhibitor may still act as a potent elastase inhibitor in the upper respiratory tract where its concentration is 500-fold higher than Ki, i.e. where the elastase inhibition is pseudo-irreversible. Experiments in vitro with fibrous human lung elastin, the most important natural substrate of elastase, support this view: 1.35 microM elastase is fully inhibited by 5-6 microM oxidized inhibitor whether the enzyme-inhibitor complex is formed in the presence or absence of elastin and whether elastase is pre-adsorbed on elastin or not.
Title: Oxidized mucus proteinase inhibitor: a fairly potent neutrophil elastase inhibitor
Description:
N-chlorosuccinimide oxidizes one of the methionine residues of mucus proteinase inhibitor with a second-order rate constant of 1.
5 M-1.
s-1.
Cyanogen bromide cleavage and NH2-terminal sequencing show that the modified residue is methionine-73, the P′1 component of the inhibitor's active centre.
Oxidation of the inhibitor decreases its neutrophil elastase inhibitory capacity but does not fully abolish it.
The kinetic parameters describing the elastase-oxidized inhibitor interaction are: association rate constant kass.
= 2.
6 x 10(5) M-1.
s-1, dissociation rate constant kdiss.
= 2.
9 x 10(-3) s-1 and equilibrium dissociation constant Ki = 1.
1 x 10(-8) M.
Comparison with the native inhibitor indicates that oxidation decreases kass.
by a factor of 18.
8 and increases kdiss.
by a factor of 6.
4, and therefore leads to a 120-fold increase in Ki.
Yet, the oxidized inhibitor may still act as a potent elastase inhibitor in the upper respiratory tract where its concentration is 500-fold higher than Ki, i.
e.
where the elastase inhibition is pseudo-irreversible.
Experiments in vitro with fibrous human lung elastin, the most important natural substrate of elastase, support this view: 1.
35 microM elastase is fully inhibited by 5-6 microM oxidized inhibitor whether the enzyme-inhibitor complex is formed in the presence or absence of elastin and whether elastase is pre-adsorbed on elastin or not.

Related Results

Neutrophil Proteinase (PR3) Regulates Neutrophil Transendothelial Cell Migration.
Neutrophil Proteinase (PR3) Regulates Neutrophil Transendothelial Cell Migration.
Abstract Abstract 1492 Neutrophil transmigration requires the localization of neutrophils to endothelial cell junctions where receptor-ligand interact...
Epidermal mucus as a potential biological and biochemical matrix for fish health analysis
Epidermal mucus as a potential biological and biochemical matrix for fish health analysis
Fish reside in ecosystems teeming with pathogens, so their mucus has developed antimicrobial properties that help inhibit these pathogens. The fish's epidermal mucus serves as the ...
Mucus from the Pulmonate Sea Slug Onchidium typhae: Biochemical composition and ecological implications for the intertidal community
Mucus from the Pulmonate Sea Slug Onchidium typhae: Biochemical composition and ecological implications for the intertidal community
AbstractMany marine organisms, especially molluscs, produce mucus, which can be used in several physiological processes, such as locomotion and defence. In addition to utilization ...
Role of phospholipid lining on respiratory mucus clearance by cough
Role of phospholipid lining on respiratory mucus clearance by cough
Phospholipid lining, present at the respiratory mucus-mucosa interface, may have an important role in the protective function of the airways by its abhesive properties and may also...
“Rogue” [DEspR+CD11b+] neutrophil subset correlates with severity in spontaneous intracerebral hemorrhage
“Rogue” [DEspR+CD11b+] neutrophil subset correlates with severity in spontaneous intracerebral hemorrhage
ObjectiveCumulative clinical, cellular, and molecular evidence reinforces the role of neutrophils in secondary brain injury in spontaneous intracerebral hemorrhage (sICH). However,...

Back to Top