Literature DB >> 6603438

Phenol coupling initiated by one-electron oxidation of tyrosine units in peptides and histone.

W A Prütz, J Butler, E J Land.   

Abstract

Phenoxyl radicals generated pulse radiolytically by the reaction of N.3 with Gly-Tyr decay biomolecularly (2k = 4.7 X 10(8)M-1 s-1) with efficient formation of 2,2'-dimers, which enolize rapidly (k = 2.7 X 10(4) s-1) to produce the 2,2'-biphenolic product. The build-up of the characteristic 2,2'-biphenol fluorescence (400 nm) and absorption also indicated a delayed (k = 80 s-1) process, probably involving the phenoxyl <-> phenoxy-quinol equilibrium. About 60 per cent of the Gly-Tyr phenoxyls were found to dimerize to the 2,2'-biphenol, and a similarly efficient 2,2'-coupling seems to occur with other tyrosyls, such as Lys-Tyr-Lys and histone. gamma-Radiolysis was applied to estimate relative yields of formation of 2,2'-biphenols under various conditions. Dimerization is almost completely inhibited by cysteine or oxygen, consistent with phenoxyl 'repair' by cysteine or O-.2; disproportionation of O-.2 with SOD prevents repair. The phenol 2,2'-coupling is less efficient for .OH- and inefficient for e-aq-initiation.

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Year:  1983        PMID: 6603438     DOI: 10.1080/09553008314550981

Source DB:  PubMed          Journal:  Int J Radiat Biol Relat Stud Phys Chem Med        ISSN: 0020-7616


  14 in total

1.  Molecular basis of intramolecular electron transfer in proteins during radical-mediated oxidations: computer simulation studies in model tyrosine-cysteine peptides in solution.

Authors:  Ariel A Petruk; Silvina Bartesaghi; Madia Trujillo; Darío A Estrin; Daniel Murgida; Balaraman Kalyanaraman; Marcelo A Marti; Rafael Radi
Journal:  Arch Biochem Biophys       Date:  2012-05-26       Impact factor: 4.013

2.  Structural modifications of human beta 2 microglobulin treated with oxygen-derived radicals.

Authors:  C Capeillere-Blandin; T Delaveau; B Descamps-Latscha
Journal:  Biochem J       Date:  1991-07-01       Impact factor: 3.857

3.  The kinetics of oxidation of GSH by protein radicals.

Authors:  Thomas Nauser; Willem H Koppenol; Janusz M Gebicki
Journal:  Biochem J       Date:  2005-12-15       Impact factor: 3.857

4.  Vitamin E analogue Trolox C. E.s.r. and pulse-radiolysis studies of free-radical reactions.

Authors:  M J Davies; L G Forni; R L Willson
Journal:  Biochem J       Date:  1988-10-15       Impact factor: 3.857

5.  Formal Reduction Potentials of Difluorotyrosine and Trifluorotyrosine Protein Residues: Defining the Thermodynamics of Multistep Radical Transfer.

Authors:  Kanchana R Ravichandran; Allan B Zong; Alexander T Taguchi; Daniel G Nocera; JoAnne Stubbe; Cecilia Tommos
Journal:  J Am Chem Soc       Date:  2017-02-21       Impact factor: 15.419

6.  Biological effects of the electrostatic field: red blood cell-related alterations of oxidative processes in blood.

Authors:  Hayk A Harutyunyan; Gohar V Sahakyan
Journal:  Int J Biometeorol       Date:  2015-05-09       Impact factor: 3.787

7.  Identification of novel catecholamine absorbing proteins in the central nervous system.

Authors:  G M Ross; B E McCarry; S Thakur; R K Mishra
Journal:  J Mol Neurosci       Date:  1993       Impact factor: 3.444

8.  Inhibition of DNA-ethidium bromide intercalation due to free radical attack upon DNA. I. Comparison of the effects of various radicals.

Authors:  W A Prütz
Journal:  Radiat Environ Biophys       Date:  1984       Impact factor: 1.925

9.  Oxygen radical induced fluorescence in proteins; identification of the fluorescent tryptophan metabolite, N-formyl kynurenine, as a biological index of radical damage.

Authors:  H R Griffiths; J Lunec; D R Blake
Journal:  Amino Acids       Date:  1992-06       Impact factor: 3.520

10.  Requirements for superoxide-dependent tyrosine hydroperoxide formation in peptides.

Authors:  Christine C Winterbourn; Helena N Parsons-Mair; Silvia Gebicki; Janusz M Gebicki; Michael J Davies
Journal:  Biochem J       Date:  2004-07-01       Impact factor: 3.857

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