Literature DB >> 20401673

Protein oxidation: role in signalling and detection by mass spectrometry.

Corinne M Spickett1, Andrew R Pitt.   

Abstract

Proteins can undergo a wide variety of oxidative post-translational modifications (oxPTM); while reversible modifications are thought to be relevant in physiological processes, non-reversible oxPTM may contribute to pathological situations and disease. The oxidant is also important in determining the type of oxPTM, such as oxidation, chlorination or nitration. The best characterized oxPTMs involved in signalling modulation are partial oxidations of cysteine to disulfide, glutathionylated or sulfenic acid forms that can be reversed by thiol reductants. Proline hydroxylation in HIF signalling is also quite well characterized, and there is increasing evidence that specific oxidations of methionine and tyrosine may have some biological roles. For some proteins regulated by cysteine oxidation, the residues and molecular mechanism involved have been extensively studied and are well understood, such as the protein tyrosine phosphatase PTP1B and MAP3 kinase ASK1, as well as transcription factor complex Keap1-Nrf2. The advances in understanding of the role oxPTMs in signalling have been facilitated by advances in analytical technology, in particular tandem mass spectrometry techniques. Combinations of peptide sequencing by collisionally induced dissociation and precursor ion scanning or neutral loss to select for specific oxPTMs have proved very useful for identifying oxidatively modified proteins and mapping the sites of oxidation. The development of specific labelling and enrichment procedures for S-nitrosylation or disulfide formation has proved invaluable, and there is ongoing work to establish analogous methods for detection of nitrotyrosine and other modifications.

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Year:  2010        PMID: 20401673     DOI: 10.1007/s00726-010-0585-4

Source DB:  PubMed          Journal:  Amino Acids        ISSN: 0939-4451            Impact factor:   3.520


  10 in total

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2.  Redox modification of cysteine residues regulates the cytokine activity of high mobility group box-1 (HMGB1).

Authors:  Huan Yang; Peter Lundbäck; Lars Ottosson; Helena Erlandsson-Harris; Emilie Venereau; Marco E Bianchi; Yousef Al-Abed; Ulf Andersson; Kevin J Tracey; Daniel J Antoine
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3.  Effects of exposure to glyphosate on oxidative stress, inflammation, and lung function in maize farmers, Northern Thailand.

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Review 4.  Proteomic approaches to analyze protein tyrosine nitration.

Authors:  Maria B Feeney; Christian Schöneich
Journal:  Antioxid Redox Signal       Date:  2013-01-03       Impact factor: 8.401

5.  Protein Sulfenylation: A Novel Readout of Environmental Oxidant Stress.

Authors:  Phillip A Wages; Katelyn S Lavrich; Zhenfa Zhang; Wan-Yun Cheng; Elizabeth Corteselli; Avram Gold; Philip Bromberg; Steven O Simmons; James M Samet
Journal:  Chem Res Toxicol       Date:  2015-12-07       Impact factor: 3.739

6.  Plasmodium vivax trophozoite-stage proteomes.

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Review 7.  Mass spectrometry-based methods for identifying oxidized proteins in disease: advances and challenges.

Authors:  Ivan Verrastro; Sabah Pasha; Karina Tveen Jensen; Andrew R Pitt; Corinne M Spickett
Journal:  Biomolecules       Date:  2015-04-14

Review 8.  Genetic Code Expansion: A Powerful Tool for Understanding the Physiological Consequences of Oxidative Stress Protein Modifications.

Authors:  Joseph J Porter; Ryan A Mehl
Journal:  Oxid Med Cell Longev       Date:  2018-04-23       Impact factor: 6.543

9.  Redox modifications of cysteine residues regulate the cytokine activity of HMGB1.

Authors:  Huan Yang; Peter Lundbäck; Lars Ottosson; Helena Erlandsson-Harris; Emilie Venereau; Marco E Bianchi; Yousef Al-Abed; Ulf Andersson; Kevin J Tracey
Journal:  Mol Med       Date:  2021-06-07       Impact factor: 6.354

10.  The response of human skin commensal bacteria as a reflection of UV radiation: UV-B decreases porphyrin production.

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  10 in total

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