Surface charge interactions of the FMN module govern catalysis by nitric-oxide synthase. 2006

Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
Department of Pathobiology, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio 44195, USA.

The FMN module of nitric-oxide synthase (NOS) plays a pivotal role by transferring NADPH-derived electrons to the enzyme heme for use in oxygen activation. The process may involve a swinging mechanism in which the same face of the FMN module accepts and provides electrons during catalysis. Crystal structure shows that this face of the FMN module is electronegative, whereas the complementary interacting surface is electropositive, implying that charge interactions enable function. We used site-directed mutagenesis to investigate the roles of six electronegative surface residues of the FMN module in electron transfer and catalysis in neuronal NOS. Results are interpreted in light of crystal structures of NOS and related flavoproteins. Neutralizing or reversing the negative charge of each residue altered the NO synthesis, NADPH oxidase, and cytochrome c reductase activities of neuronal NOS and also altered heme reduction. The largest effects occurred at the NOS-specific charged residue Glu(762). Together, the results suggest that electrostatic interactions of the FMN module help to regulate electron transfer and to minimize flavin autoxidation and the generation of reactive oxygen species during NOS catalysis.

UI MeSH Term Description Entries
D009251 NADPH-Ferrihemoprotein Reductase A flavoprotein that catalyzes the reduction of heme-thiolate-dependent monooxygenases and is part of the microsomal hydroxylating system. EC 1.6.2.4. Cytochrome P-450 Reductase,Ferrihemoprotein P-450 Reductase,NADPH Cytochrome P-450 Oxidoreductase,NADPH Cytochrome P-450 Reductase,NADPH Cytochrome c Reductase,Cytochrome P-450 Oxidase,Cytochrome P450 Reductase,Ferrihemoprotein P450 Reductase,NADPH Cytochrome P450 Oxidoreductase,NADPH Cytochrome P450 Reductase,NADPH-Cytochrome P450 Reductase,NADPH-P450 Reductase,Cytochrome P 450 Oxidase,Cytochrome P 450 Reductase,Ferrihemoprotein P 450 Reductase,NADPH Cytochrome P 450 Oxidoreductase,NADPH Cytochrome P 450 Reductase,NADPH Ferrihemoprotein Reductase,NADPH P450 Reductase,Oxidase, Cytochrome P-450,P-450 Oxidase, Cytochrome,P450 Reductase, Cytochrome,P450 Reductase, NADPH-Cytochrome,Reductase, Cytochrome P-450,Reductase, Cytochrome P450,Reductase, Ferrihemoprotein P-450,Reductase, Ferrihemoprotein P450,Reductase, NADPH-Cytochrome P450,Reductase, NADPH-Ferrihemoprotein,Reductase, NADPH-P450
D009474 Neurons The basic cellular units of nervous tissue. Each neuron consists of a body, an axon, and dendrites. Their purpose is to receive, conduct, and transmit impulses in the NERVOUS SYSTEM. Nerve Cells,Cell, Nerve,Cells, Nerve,Nerve Cell,Neuron
D010100 Oxygen An element with atomic symbol O, atomic number 8, and atomic weight [15.99903; 15.99977]. It is the most abundant element on earth and essential for respiration. Dioxygen,Oxygen-16,Oxygen 16
D011485 Protein Binding The process in which substances, either endogenous or exogenous, bind to proteins, peptides, enzymes, protein precursors, or allied compounds. Specific protein-binding measures are often used as assays in diagnostic assessments. Plasma Protein Binding Capacity,Binding, Protein
D002384 Catalysis The facilitation of a chemical reaction by material (catalyst) that is not consumed by the reaction. Catalyses
D004583 Electrons Stable elementary particles having the smallest known negative charge, present in all elements; also called negatrons. Positively charged electrons are called positrons. The numbers, energies and arrangement of electrons around atomic nuclei determine the chemical identities of elements. Beams of electrons are called CATHODE RAYS. Fast Electrons,Negatrons,Positrons,Electron,Electron, Fast,Electrons, Fast,Fast Electron,Negatron,Positron
D005415 Flavins Derivatives of the dimethylisoalloxazine (7,8-dimethylbenzo[g]pteridine-2,4(3H,10H)-dione) skeleton. Flavin derivatives serve an electron transfer function as ENZYME COFACTORS in FLAVOPROTEINS.
D006418 Heme The color-furnishing portion of hemoglobin. It is found free in tissues and as the prosthetic group in many hemeproteins. Ferroprotoporphyrin,Protoheme,Haem,Heme b,Protoheme IX
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D016297 Mutagenesis, Site-Directed Genetically engineered MUTAGENESIS at a specific site in the DNA molecule that introduces a base substitution, or an insertion or deletion. Mutagenesis, Oligonucleotide-Directed,Mutagenesis, Site-Specific,Oligonucleotide-Directed Mutagenesis,Site-Directed Mutagenesis,Site-Specific Mutagenesis,Mutageneses, Oligonucleotide-Directed,Mutageneses, Site-Directed,Mutageneses, Site-Specific,Mutagenesis, Oligonucleotide Directed,Mutagenesis, Site Directed,Mutagenesis, Site Specific,Oligonucleotide Directed Mutagenesis,Oligonucleotide-Directed Mutageneses,Site Directed Mutagenesis,Site Specific Mutagenesis,Site-Directed Mutageneses,Site-Specific Mutageneses

Related Publications

Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
October 1998, Current opinion in chemical biology,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
March 2013, The Biochemical journal,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
September 2000, Biochemical and biophysical research communications,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
May 2009, Biochemistry,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
May 2006, The Journal of biological chemistry,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
August 2010, The Journal of biological chemistry,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
September 2006, Chemical communications (Cambridge, England),
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
May 2024, Biochemistry,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
January 1996, Methods in enzymology,
Koustubh Panda, and Mohammad Mahfuzul Haque, and Elsa D Garcin-Hosfield, and Deborah Durra, and Elizabeth D Getzoff, and Dennis J Stuehr
August 2012, The Journal of biological chemistry,
Copied contents to your clipboard!