Protein Carbonylation and Decarboylation

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Protein carbonylation and decarboylation: a new twist to the complex response of vascular cells to oxidative stress.

Although the Greek physician Galenos (129 to 216 AD) recognized early that ventilation of the lungs is important for the transfer of an unknown substance from the air into the blood, it took surprisingly long to discover that oxygen is a major “fuel” for our metabolism that oxidizes nutrients to generate chemical energy. Even William Harvey in his famous work about the circulatory system publis...

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Protein carbonylation.

Protein carbonylation is a type of protein oxidation that can be promoted by reactive oxygen species. It usually refers to a process that forms reactive ketones or aldehydes that can be reacted by 2,4-dinitrophenylhydrazine (DNPH) to form hydrazones. Direct oxidation of side chains of lysine, arginine, proline, and threonine residues, among other amino acids, in the ‘‘primary protein carbonylat...

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Protein carbonylation in human diseases.

Oxidative modifications of enzymes and structural proteins play a significant role in the aetiology and/or progression of several human diseases. Protein carbonyl content is the most general and well-used biomarker of severe oxidative protein damage. Human diseases associated with protein carbonylation include Alzheimer's disease, chronic lung disease, chronic renal failure, diabetes and sepsis...

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Rules Governing Selective Protein Carbonylation

BACKGROUND Carbonyl derivatives are mainly formed by direct metal-catalysed oxidation (MCO) attacks on the amino-acid side chains of proline, arginine, lysine and threonine residues. For reasons unknown, only some proteins are prone to carbonylation. METHODOLOGY/PRINCIPAL FINDINGS we used mass spectrometry analysis to identify carbonylated sites in: BSA that had undergone in vitro MCO, and 23...

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ژورنال

عنوان ژورنال: Circulation Research

سال: 2008

ISSN: 0009-7330,1524-4571

DOI: 10.1161/circresaha.108.172148