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Dive into the research topics where Gábor Baráth is active.

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Featured researches published by Gábor Baráth.


Chemical Communications | 2009

One metal–two pathways to the carboxylate-enhanced, iron-containing quercetinase mimics

Gábor Baráth; József Kaizer; Gábor Speier; László Párkányi; E. Kuzmann; Attila Vértes

Mononuclear iron(iii) flavonolate was synthesized as synthetic enzyme-substrate complex, and its direct and carboxylate-enhanced dioxygenation as biomimetic functional models with relevance to flavonol 2,4-dioxygenase are briefly described.


Journal of Inorganic Biochemistry | 2012

Bio-inspired flavonol and quinolone dioxygenation by a non-heme iron catalyst modeling the action of flavonol and 3-hydroxy-4(1H)-quinolone 2,4-dioxygenases

József S. Pap; Andrea Matuz; Gábor Baráth; Balázs Kripli; Michel Giorgi; Gábor Speier; József Kaizer

The mononuclear complex, Fe(III)(O-bs)(salen) (salenH(2)=1,6-bis(2-hydroxyphenyl)-2,5-diaza-hexa-1,5-diene; O-bsH=O-benzoylsalicylic acid) was synthesized as synthetic enzyme-depside complex, and characterized by spectroscopic methods and X-ray crystal analysis. The dioxygenation of flavonol (flaH) and 3-hydroxy-4-quinolone (quinH(2)) derivatives in the presence of catalytic amounts of Fe(III)(O-bs)(salen) results in the oxidative cleavage of the heterocyclic ring to give the corresponding O-benzoylsalicylic and anthranilic acid derivatives with concomitant release of carbon monoxide. These reactions can be regarded as biomimetic functional models with relevance to the iron-containing flavonol and the cofactor-independent 3-hydroxy-4(1H)-quinolone 2,4-dioxygenases.


Journal of Inorganic Biochemistry | 2008

Catechol oxidase and phenoxazinone synthase activity of a manganese(II) isoindoline complex

József Kaizer; Gábor Baráth; Róbert Csonka; Gábor Speier; László Korecz; Antal Rockenbauer; László Párkányi


Inorganic Chemistry Communications | 2007

Synthesis, structure and catalase mimics of novel homoleptic manganese(II) complexes of 1,3-bis(2′-pyridylimino)isoindoline, Mn(4R-ind)2 (R = H, Me)

József Kaizer; Gábor Baráth; Gábor Speier; Marius Réglier; Michel Giorgi


European Journal of Inorganic Chemistry | 2013

An Iron(II)[1,3‐bis(2′‐pyridylimino)isoindoline] Complex as a Catalyst for Substrate Oxidation with H2O2 – Evidence for a Transient Peroxidodiiron(III) Species

József S. Pap; Matthew A. Cranswick; É. Balogh-Hergovich; Gábor Baráth; Michel Giorgi; Gregory T. Rohde; József Kaizer; Gábor Speier; Lawrence Que


Transition Metal Chemistry | 2007

Synthesis, properties, and catecholase-like activity of the [1,4-di(6′-methyl-2′-pyridyl)aminophthalazine]dimanganese(II) complex, Mn2(6′Me2PAP)2Cl4

József Kaizer; Róbert Csonka; Gábor Baráth; Gábor Speier


Chemical Communications | 2007

Manganese and iron flavonolates as flavonol 2,4-dioxygenase mimics.

József Kaizer; Gábor Baráth; József S. Pap; Gábor Speier; Michel Giorgi; Marius Réglier


Inorganic Chemistry Communications | 2011

Correlation between the SOD-like activity of hexacoordinate iron(II) complexes and their Fe3+/Fe2+ redox potentials

Balázs Kripli; Gábor Baráth; É. Balogh-Hergovich; Michel Giorgi; A. Jalila Simaan; László Párkányi; József S. Pap; József Kaizer; Gábor Speier


Chemical Communications | 2010

Bio-inspired amino acid oxidation by a non-heme iron catalyst modeling the action of 1-aminocyclopropane-1-carboxylic acid oxidase

Gábor Baráth; József Kaizer; József S. Pap; Gábor Speier; Nadia El Bakkali-Taheri; A. Jalila Simaan


Journal of Inorganic Biochemistry | 2013

Bio-inspired amino acid oxidation by a non-heme iron catalyst

Szabina Góger; Dóra Bogáth; Gábor Baráth; A. Jalila Simaan; Gábor Speier; József Kaizer

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Michel Giorgi

Aix-Marseille University

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László Párkányi

Hungarian Academy of Sciences

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Marius Réglier

Université Paul Cézanne Aix-Marseille III

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