4.7 Article

Creation of allotypic active sites during oxidative stress

Journal

JOURNAL OF PROTEOME RESEARCH
Volume 5, Issue 9, Pages 2159-2168

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/pr060021d

Keywords

allotypic active sites; proteomics; oxidative stress; hydrogen peroxide; yeast; biotin hydrazide; avidin affinity chromatography; site-specific oxidation; carbonylation; protein carbonyls; biotinylation; in vivo oxidation

Funding

  1. NIA NIH HHS [P30-AG13319, R01 AG025362] Funding Source: Medline

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Oxidative stress is a factor in a series of diseases and aging, primarily through irreversible oxidative modification of proteins.(1-3) A major question is how nonenzymatic oxidation has the specificity to impact cellular regulation. Here, we report the degree to which in vivo protein oxidation to the ketone and aldehyde level is random using yeast as a simple model system and hydrogen peroxide as an environmental oxidative stress agent. Among 415 affinity-selected proteins identified throughout the matrix of stressed cells, oxidation sites were found in 87, predominantly on lysine, arginine, proline, histidine, threonine, and methionine residues. In almost all cases, one to two specific oxidation sites on the exterior of proteins were identified using MS-derived sequence and publicly available 3-D structural data. This suggests that, when regulation or disease progression is mediated by protein oxidation, specific new allotypic active sites are being created in proteins that trigger the process.

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