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Dive into the research topics where Gabriele Backes is active.

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Featured researches published by Gabriele Backes.


Biochemical and Biophysical Research Communications | 1990

Activation of the iron-containing B2 protein of ribonucleotide reductase by hydrogen peroxide

Margareta Sahlin; Britt-Marie Sjöberg; Gabriele Backes; Thomas M. Loehr; Joann Sanders-Loehr

The active form of protein B2, the small subunit of ribonucleotide reductase, contains two dinuclear Fe(III) centers and a tyrosyl radical. The inactive metB2 form also contains the same diferric complexes but lacks the tyrosyl radical. We now demonstrate that incubation of metB2 with hydrogen peroxide generates the tyrosyl radical. The reaction is optimal at 5.5 nM hydrogen peroxide, with a maximum of 25-30% tyrosyl radical being formed after approximately 1.5 hr of incubation. The activation reaction is counteracted by a hydrogen peroxide-dependent reduction of the tyrosyl radical. It is likely that the generation of the radical proceeds via a ferryl intermediate, as in the proposed mechanisms for cytochrome P-450 and the peroxidases.


Journal of the American Chemical Society | 1991

The environment of Fe4S4 clusters in ferredoxins and high-potential iron proteins. New information from X-ray crystallography and resonance Raman spectroscopy

Gabriele Backes; Yoshiki Mino; Thomas M. Loehr; T.E. Meyer; Michael A. Cusanovich; William V. Sweeney; Elinor T. Adman; Joann Sanders-Loehr


Journal of the American Chemical Society | 1990

(μ-Oxo)(μ-carboxylato)diiron(III) Complexes with Distinct Iron Sites. Consequences of the Inequivalence and Its Relevance to Dinuclear Iron-Oxo Proteins

Richard E. Norman; Shiping Yan; Lawrence Que; Gabriele Backes; Jinshu Ling; Joann Sanders-Loehr; Jian H. Zhang; Charles J. O'Connor


Biochemistry | 1989

Resonance Raman spectroscopy of ribonucleotide reductase. Evidence for a deprotonated tyrosyl radical and photochemistry of the binuclear iron center.

Gabriele Backes; Margareta Sahlin; Britt-Marie Sjöberg; Thomas M. Loehr; Joann Sanders-Loehr


Journal of the American Chemical Society | 1989

Dissymmetry effects in μ-oxo diiron(III) species: structures and spectroscopic properties of [N5FeOFeX3]+ (X = Cl, Br) and implications for oxo-bridged dinuclear iron proteins

Pedro Gómez-Romero; E. H. Witten; William M. Reiff; Gabriele Backes; Joann Sanders-Loehr; Geoffrey B. Jameson


Inorganic Chemistry | 1990

Resonance Raman spectra of high- and low-spin ferric phenolates. Models for dioxygenases and nitrile hydratase

Carl J. Carrano; Mary W. Carrano; Kamala D. Sharma; Gabriele Backes; Joann Sanders-Loehr


Biochemistry | 1991

Characterization of the tryptophan-derived quinone cofactor of methylamine dehydrogenase by resonance Raman spectroscopy

Gabriele Backes; Victor L. Davidson; Fienke Huitema; Johannis A. Duine; Joann Sanders-Loehr


Inorganic Chemistry | 1994

Studies of distortional isomers. II: Evidence that green [LWOCl2]PF6 is a ternary mixture

Patrick J. Desrochers; Kenneth W. Nebesny; Michael J. LaBarre; Michael A. Bruck; George F. Neilson; R. P. Sperline; John H. Enemark; Gabriele Backes; Karl Wieghardt


Inorganic Chemistry | 1991

Raman-scattering properties of Mo(V)=O and Mo(V)=S complexes as probes for molybdenum-containing enzymes

Gabriele Backes; John H. Enemark; Thomas M. Loehr


Biochemistry | 1995

Evidence for a methylammonium-binding site on methylamine dehydrogenase of Thiobacillus versutus

Antonius C. F. Gorren; Pierre Moënne-Loccoz; Gabriele Backes; Simon de Vries; Joann Sanders-Loehr; Johannis A. Duine

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Johannis A. Duine

Delft University of Technology

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Carl J. Carrano

San Diego State University

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