Literature DB >> 9378370

Mass spectrometric quantification of 3-chlorotyrosine in human tissues with attomole sensitivity: a sensitive and specific marker for myeloperoxidase-catalyzed chlorination at sites of inflammation.

S L Hazen1, J R Crowley, D M Mueller, J W Heinecke.   

Abstract

Oxidative modification of proteins has been implicated in a variety of processes ranging from atherosclerosis to aging. Identifying the underlying oxidation pathways has proven difficult, however, due to the lack of specific markers for distinct oxidation pathways. Previous in vitro studies demonstrated that 3-chlorotyrosine is a specific product of myeloperoxidase-catalyzed oxidative damage and that the chlorinated amino acid may thus serve as an index of phagocyte-mediated tissue injury in vivo. Here we describe a highly sensitive and specific analytical method for the quantification of 3-chlorotyrosine content of tissues. The assay combines gas chromatography with stable isotope dilution mass spectrometry, and it detects attomole levels of 3-chlorotyrosine in a single determination. Furthermore, the method is highly reproducible, with inter- and intra-sample coefficients of variance of < 3%. The specificity, sensitivity, and reproducibility of 3-chlorotyrosine determination should make this method useful for exploring the role of myeloperoxidase in catalyzing oxidative reactions in vivo.

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Year:  1997        PMID: 9378370     DOI: 10.1016/s0891-5849(97)00084-1

Source DB:  PubMed          Journal:  Free Radic Biol Med        ISSN: 0891-5849            Impact factor:   7.376


  29 in total

1.  Quantitative analysis of amino Acid oxidation markers by tandem mass spectrometry.

Authors:  Anuradha Vivekanandan-Giri; Jaeman Byun; Subramaniam Pennathur
Journal:  Methods Enzymol       Date:  2011       Impact factor: 1.600

2.  Myeloperoxidase-mediated protein lysine oxidation generates 2-aminoadipic acid and lysine nitrile in vivo.

Authors:  Hongqiao Lin; Bruce S Levison; Jennifer A Buffa; Ying Huang; Xiaoming Fu; Zeneng Wang; Valentin Gogonea; Joseph A DiDonato; Stanley L Hazen
Journal:  Free Radic Biol Med       Date:  2017-01-06       Impact factor: 7.376

3.  Inflaming the diseased brain: a role for tainted melanins.

Authors:  T M Jeitner; M Kalogiannis; P A Patrick; I Gomolin; T Palaia; L Ragolia; D Brand; E J Delikatny
Journal:  Biochim Biophys Acta       Date:  2015-01-10

4.  Formation of chlorinated lipids post-chlorine gas exposure.

Authors:  David A Ford; Jaideep Honavar; Carolyn J Albert; Mark A Duerr; Joo Yeun Oh; Stephen Doran; Sadis Matalon; Rakesh P Patel
Journal:  J Lipid Res       Date:  2016-06-20       Impact factor: 5.922

5.  Myeloperoxidase-generated reactive nitrogen species convert LDL into an atherogenic form in vitro.

Authors:  E A Podrez; D Schmitt; H F Hoff; S L Hazen
Journal:  J Clin Invest       Date:  1999-06       Impact factor: 14.808

6.  Sarcoendoplasmic reticulum Ca(2+) ATPase. A critical target in chlorine inhalation-induced cardiotoxicity.

Authors:  Shama Ahmad; Aftab Ahmad; Tara B Hendry-Hofer; Joan E Loader; William C Claycomb; Olivier Mozziconacci; Christian Schöneich; Nichole Reisdorph; Roger L Powell; Joshua D Chandler; Brian J Day; Livia A Veress; Carl W White
Journal:  Am J Respir Cell Mol Biol       Date:  2015-04       Impact factor: 6.914

7.  Vasculoprotective Effects of Apolipoprotein Mimetic Peptides: An Evolving Paradigm In Hdl Therapy (Vascular Disease Prevention, In Press.).

Authors:  C Roger White; Geeta Datta; Paulina Mochon; Zhenghao Zhang; Ollie Kelly; Christine Curcio; Dale Parks; Mayakonda Palgunachari; Shaila Handattu; Himanshu Gupta; David W Garber; G M Anantharamaiah
Journal:  Vasc Dis Prev       Date:  2009-01-01

8.  Inhibition of hypochlorous acid-induced cellular toxicity by nitrite.

Authors:  Matthew Whiteman; D Craig Hooper; Gwen S Scott; Hilary Koprowski; Barry Halliwell
Journal:  Proc Natl Acad Sci U S A       Date:  2002-09-09       Impact factor: 11.205

9.  Simultaneous Measurement of 3-Chlorotyrosine and 3,5-Dichlorotyrosine in Whole Blood, Serum and Plasma by Isotope Dilution HPLC-MS-MS.

Authors:  Brian S Crow; Jennifer Quiñones-González; Brooke G Pantazides; Jonas W Perez; W Rucks Winkeljohn; Joshua W Garton; Jerry D Thomas; Thomas A Blake; Rudolph C Johnson
Journal:  J Anal Toxicol       Date:  2016-03-13       Impact factor: 3.367

10.  In vitro oxidative footprinting provides insight into apolipoprotein B-100 structure in low-density lipoprotein.

Authors:  Sourav Chakraborty; Yang Cai; Matthew A Tarr
Journal:  Proteomics       Date:  2014-10-09       Impact factor: 3.984

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