Nitric oxide Part G, Oxidative and nitrosative stress in redox regulation of cell signaling /

The Nobel Prize was awarded in Physiology or Medicine in 1998 to Louis J. Ignarro, Robert F. Furchgott and Ferid Murad for demonstrating the signaling properties of nitric oxide. Nitric Oxide (NO) is one of the few gaseous signaling molecules and is a key biological messenger that plays a role in ma...

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Bibliographic Details
Other Authors: Cadenas, Enrique, Packer, Lester
Format: Book
Language:English
Published: San Diego, CA : Elsevier/Academic Press, 2008
Series:Methods in enzymology ; v. 441
Subjects:
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246 3 0 |a Oxidative and nitrosative stress in redox regulation of cell signaling 
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490 1 |a Methods in enzymology ;  |v v. 441 
500 |a Description based on print version record 
504 |a Includes bibliographical references and index 
505 0 |a Methods to measure the reactivity of peroxynitrite-derived oxidants toward reduced fluoresceins and rhodamines / Peter Wardman -- Detection and characterization of peroxynitrite-induced modifications of tyrosine, tryptophan, and methionine residues by tandem mass spectrometry / Igor Rebrin, Catherine Bregere, Timothy K. Gallaher, and Rajindar S. Sohal -- Reductive gas-phase chemiluminescence and flow injection analysis for measurement of the nitric oxide pool in biological matrices / Ulrike Hendgen-Cotta, Marijke Grau, Tienush Rassaf, Putrika Gharini, Malte Kelm, and Petra Kleinbongard -- Detection and measurement for the modification and inactivation of caspase by nitrosative stress in vitro and in vivo / Hee-Jun Na, Hun-Taeg Chung, Kwon-Soo Ha, Hansoo Lee, Young-Guen Kwon, Timothy R. Billiar, and Young-Myeong Kim -- Interactive relations between nitric oxide (NO) and carbon monoxide (CO): Heme oxygenase-1/CO pathway is a key modulator in NO-mediated antiapoptosis and anti-inflammation / Hun-Taeg Chung, Byung-Min Choi, Young-Guen Kwon, and Young-Myeong Kim -- Detection and characterization of in vivo nitration and oxidation of tryptophan residues in proteins / Catherine Bregere, Igor Rebrin, and Rajindar S. Sohal -- In vivo real-time measurement of nitric oxide in anesthetized rat brain / Rui M. Barbosa, Cátia F. Lourenço, Ricardo M. Santos, Francois Pomerleau, Peter Huettl, Greg A. Gerhardt, and João Laranjinha -- Nitric oxide and cardiobiology-methods for intact hearts and isolated myocytes / Joshua M. Hare, Farideh Beigi, and Konstantinos Tziomalos -- Microscopic technique for the detection of nitric oxide-dependent angiogenesis in an animal model / Seung Namkoong, Byoung-Hee Chung, Kwon-Soo Ha, Hansoo Lee, Young-Geun Kwon, and Young-Myeong Kim 
505 0 |a Protein 3-nitrotyrosine in complex biological samples: Quantification by high-pressure liquid chromatography/Electrochemical detection and emergence of proteomic approaches for unbiased identification of modification sites / Tal Nuriel, Ruba S. Deeb, David P. Hajjar, and Steven S. Gross -- Selective fluorogenic derivatization of 3-nitrotyrosine and 3,4-dihydroxyphenylalanine in peptides: A method designed for quantitative proteomic analysis / Victor S. Sharov, Elena S. Dremina, Justin Pennington, Jacque Killmer, Christopher Asmus, Maria Thorson, Sung Jung Hong, Xioabao Li, John F. Stobaugh, and Christian Schöneich -- Nitroalkenes: Synthesis, characterization, and effects on macrophage activation / Ana María Ferreira, Andrés Trostchansky, Mariana Ferrari, José M. Souza, and Homero Rubbo -- In-gel detection of S-nitrosated proteins using fluorescence methods / Nicholas J. Kettenhofen, Xunde Wang, Mark T. Gladwin, and Neil Hogg -- The arachidonate-dependent survival signaling preventing toxicity in monocytes/ macrophages exposed to peroxynitrite / Orazio Cantoni, Ilaria Tommasini, and Liana Cerioni -- Practical approaches to investigate redox regulation of heat shock protein expression and intracellular glutathione redox state / Vittorio Calabrese, Anna Signorile, Carolin Cornelius, Cesare Mancuso, Giovanni Scapagnini, Bernardo Ventimiglia, Nicolo Ragusa, and Albena Dinkova-Kostova -- Monitoring oxidative stress in vascular endothelial cells in response to fluid shear stress: From biochemical analyses to micro- and nanotechnologies / Mahsa Rouhanizadeh, Wakako Takabe, Lisong Ai, Hongyu Yu, and Tzung Hsiai -- Determination of S-nitrosothiols in biological and clinical samples using electron paramagnetic resonance spectrometry with spin trapping / Paul G. Winyard, Iona A. Knight, Frances L. Shaw, Sophie A. Rocks, Claire A. Davies, Paul Eggleton, Richard Haigh, Matthew Whiteman, and Nigel Benjamin -- Novel method for measuring S-nitrosothiols using hydrogen sulfide / Xinjun Teng, T. Scott Isbell, Jack H. Crawford, Charles A. Bosworth, Gregory I. Giles, Jeffrey R. Koenitzer, Jack R. Lancaster, Jeannette E. Doeller, David W. Kraus, and Rakesh P. Patel -- Kinetic studies on peroxynitrite reduction by peroxiredoxins / Madia Trujillo, Gerardo Ferrer-Sueta, and Rafael Radi -- Nitrocytochrome c: Synthesis, purification, and functional studies / José M. Souza, Laura Castro, Adriana María Cassina, Carlos Batthyány, and Rafael Radi -- Tyrosine nitration, dimerization, and hydroxylation by peroxynitrite in membranes as studied by the hydrophobic probe N-t-BOC-l-tyrosine tert-Butyl ester / Silvina Bartesaghi, Gonzalo Peluffo, Hao Zhang, Joy Joseph, Balaraman Kalyanaraman, and Rafael Radi -- Assessment of superoxide production and NADPH oxidase activity by HPLC analysis of dihydroethidium oxidation products / Francisco R.M. Laurindo, Denise C. Fernandes, and Célio X.C. Santos 
506 |a License restrictions may limit access 
520 |a The Nobel Prize was awarded in Physiology or Medicine in 1998 to Louis J. Ignarro, Robert F. Furchgott and Ferid Murad for demonstrating the signaling properties of nitric oxide. Nitric Oxide (NO) is one of the few gaseous signaling molecules and is a key biological messenger that plays a role in many biological processes. NO research has led to new treatments for treating heart as well as lung diseases, shock and impotence. (Sildenafil, popularly known by the trade name Viagra, enhances signaling through nitric oxide pathways.) Scientists are currently testing whether NO can be used to stop the growth of cancerous tumors, since the gas can induce programmed cell death, apoptosis. This is another must-have volume packed with robust methods from authors around the globe. Researchers interested in the detailed biochemistry of nitric oxide and its synthesis will have this indispensable volume on their shelves. *Essential resource for every laboratory involved in NO-related work *Gathers tried and tested techniques from global labs which eliminates searching through many different sources and avoids pitfalls so the same mistakes are not made over and over. * Aids researchers in the design of medically important therapies for heart disease and cancer 
588 |a Description based on print version record 
650 0 |a Nitric oxide  |x Pathophysiology 
650 0 |a Nitric oxide  |x Physiological effect 
650 7 |a Nitric oxide  |x Pathophysiology  |2 fast 
650 7 |a Nitric oxide  |x Physiological effect  |2 fast 
650 7 |a SCIENCE  |x Life Sciences  |x Biochemistry  |2 bisacsh 
650 1 2 |a Nitric Oxide  |x physiology  |0 http://id.nlm.nih.gov/mesh/D009569Q000502 
650 1 2 |a Nitric Oxide  |x physiology 
650 2 2 |a Oxidation-Reduction  |0 http://id.nlm.nih.gov/mesh/D010084 
650 2 2 |a Oxidation-Reduction 
650 2 2 |a Oxidative Stress  |0 http://id.nlm.nih.gov/mesh/D018384 
650 2 2 |a Oxidative Stress 
650 2 2 |a Signal Transduction  |0 http://id.nlm.nih.gov/mesh/D015398 
650 2 2 |a Signal Transduction 
655 4 |a Electronic books 
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700 1 |a Cadenas, Enrique 
700 1 |a Packer, Lester  |1 http://viaf.org/viaf/39437578/ 
700 1 |a Packer, Lester 
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