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PMID: 9073575 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Interplay between NO and [Fe-S] clusters: relevance to biological systems.

Methods (San Diego, Calif.) ·Vol. 11 ·No. 3 ·1997-03-00 ·Pages 319-29

Drapier JC

Abstract

In mammalian cells, nitric oxide (NO) synthesis results in the inactivation of several mitochondrial iron-sulfur enzymes involved in ATP synthesis that correlates with the appearance of complexes of the [(NO)2Fe(SR)2] type detectable by electron paramagnetic resonance spectroscopy. More specifically, the activity of two [Fe-S] enzymes was followed during the course of NO synthase expression:mitochondrial aconitase, which catalyzes citrate:isocitrate conversion in the Krebs cycle, and cytoplasmic aconitase, or iron regulatory protein (IRP), a trans-regulator that controls expression at the posttranscriptional level of proteins involved in iron metabolism. In response to physiological stimuli, the synthesis of NO leads to inhibition of enzymatic activities of both mitochondrial and cytoplasmic aconitases, whereas the RNA binding activity of IRP is increased. Coordination of the diffusible gas NO with [Fe-S] clusters is thought to result in impairment of metabolic functions. Here it is proposed that the interplay between NO (or some NO-derived molecule) and [Fe-S] clusters at critical catalytic or allosteric sites is crucial in the response to environmental signals within cells.

MeSH Terms
Aconitate Hydratase/metabolism Animals Arginine/metabolism Binding Sites Gene Expression Regulation Iron-Regulatory Proteins Iron-Sulfur Proteins/genetics,metabolism Kinetics Macrophage Activation Macrophages/metabolism Mice Nitric Oxide/chemistry,metabolism Nitric Oxide Synthase/metabolism RNA-Binding Proteins/genetics,metabolism Regulatory Sequences, Nucleic Acid
Chemicals
Iron-Regulatory Proteins Iron-Sulfur Proteins RNA-Binding Proteins Nitric Oxide Arginine Nitric Oxide Synthase Aconitate Hydratase
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Drapier J C
U 365 Inserm, Section de Recherche, Institut Curie, Paris, France.
Article Info
Journal
Methods (San Diego, Calif.)
Abbr.
Methods
ISSN
1046-2023
Published
1997-03-00
Pages
319-29
Language
English
Region
United States
NLM ID
9426302
Subset
IM
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