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1.
São Paulo; s.n; 2009. 207 p. ilus, tab.
Thesis in Portuguese | LILACS | ID: lil-594175

ABSTRACT

A oxidação do DNA por espécies reativas de oxigênio, como o oxigênio molecular singlete [O2 (1Δg)] , pode estar relacionada ao aparecimento de mutações e ao desenvolvimento de doenças. O O2 (1Δg) pode ser gerado biologicamente por reação de fotossensibilização, pela reação de H2O2 e HOCl e pela decomposição de peróxidos orgânicos contendo hidrogênio alfa (α-ROOH), na presença de metais de transição (Fe2+, Cu2+) ou HOCl. A decomposição de α-ROOH, como hidroperóxidos de lipídeos ou proteínas na presença de metais de transição, pode gerar O2 (1Δg) via mecanismo de Russell. Neste mecanismo, a oxidação de α -ROOH gera radicais peroxila, que podem reagir entre si, formando um intermediário tetraóxido linear. Este intermediário tetraóxido linear pode decompor através de um mecanismo cíclico e produzir O2 (1Δg), um álcool e um composto carbonílico. Como a decomposição de α-ROOH pelo mecanismo de Russell pode ser uma importante fonte biológica de O2 (1Δg) decidimos investigar se o α-hidroperóxido de timina, 5-(hidroperoximetil)uracil (5-HMPU), poderia gerar esta espécie reativa na presença de metais (Ce4+, Fe2+, Cu2+) e HOCl. Outro objetivo foi avaliar os efeitos oxidativos, em DNA plasmidial (pBR322), da decomposição de 5-HPMU na presença de Cu2+. A geração de O2 (1Δg) na reação de 5-HPMU e Ce4+ ou HOCl foi demonstrada por meio do monitoramento da emissão de luz monomolecular de O2 (1Δg) na região do infravermelho próximo (IR-próximo, λ = 1270 nm) e bimolecular na região do visível (λ = 634 e 703 nm). A aquisição do espectro de emissão de O2 (1Δg) forneceu evidências inequívocas da geração desta espécie reativa na reação de 5-HPMU e Ce4+ ou HOCl. Além disto, a formação de O2 (1Δg) na reação de 5-HPMU e Fe2+, Cu2+ ou HOCl foi demonstrada através da captação química de O2 (1Δg) utilizando 9,10- divinilsulfonatoantraceno (AVS) e detecção por HPLC/MS/MS do endoperóxido (AVSO2) formado. A detecção por HPLC/MS/MS dos produtos de decomposição de 5-HPMU...


Oxidation of DNA by singlet molecular oxygen O2 (1Δg) can be involved in the development of mutations and diseases. In vivo, O2 (1Δg) can be generated by photosensitization reaction, H2O2 and HOCl reaction and decomposition of organic hydroperoxides with α-hydrogen (α-ROOH) in the presence of metal ions (Fe2+, Cu2+) or HOCl. The α-ROOH decomposition, such as lipid or protein hydroperoxides in the presence of metal ions or HOCl can generate O2 (1Δg) by Russell mechanism. In this mechanism, the self-reaction of peroxyl radicals generates a linear tetraoxide intermediate that decomposes to O2 (1Δg) , an alcohol and an aldehyde. Therefore, the purpose of this work is to investigate if O2 (1Δg) can be generated by α-thymine hydroperoxide, 5- (hydroperoxymethyl)uracil (5-HPMU) in the presence of Ce4+, Fe2+, Cu2+ or HOCl. Another purpose is to study base modification and strand breaks formation in plasmid DNA (pBR322) by 5-HPMU decomposition in the presence of Cu2+. The generation of O2 (1Δg) in the reaction of 5- HPMU and Ce4+ or HOCl was monitored by monomol light emission in the near-infrared region (NIR, λ = 1270 nm) and dimol light emission in the visible region (λ = 634 e 703 nm). The generation of O2 (1Δg) during the reaction of 5-HPMU and Ce4+ or HOCl was confirmed by acquisition of the light emission spectrum in the NIR. Furthermore, the generation of O2 (1Δg) produced by 5-HPMU and Fe2+, Cu2+ or HOCl was also confirmed by chemical trapping using anthracene-9,10-divinylsulfonate (AVS) and HPLC/MS/MS detection of the corresponding endoperoxide (AVSO2). The detection by HPLC/MS/MS of 5-(hydroxymethyl)uracil (5-HMU) and 5-formyluracil (5-FoU), two 5-HPMU decomposition products, support the Russell mechanism. Plasmid results from pBR322, 5-HPMU and Cu2+ reaction showed formation of DNA open circular form (OC), probably produced by 5-HPMU peroxyl and alkoxyl radicals. Additionally, the reaction of pBR322, 5-HPMU and Cu2+ following by Fpg and NTH enzyme treatment...


Subject(s)
Biologic Oxidation/methods , Singlet Oxygen/chemistry , Thymine/chemical synthesis , Chromatography, High Pressure Liquid , Luminescence , Uracil/chemistry
2.
Indian J Biochem Biophys ; 2001 Feb-Apr; 38(1-2): 115-9
Article in English | IMSEAR | ID: sea-27945

ABSTRACT

The Crick wobble hypothesis attributes the phenomenon of codon degeneracy to a certain impreciseness of pairing between the third base of the codon and the first base of the anticodon. This theoretical study investigates the pairing properties of some wobble bases, including both, observed and unobserved pairs. Some wobble base-pairs are predicted to follow the Watson-Crick pairs in configuration and pairing facility, while others deviate from this norm. The observed U:V pair is unique in that a pairing configuration may be suggested for it wherein the hydrogen-bonding involves the exocyclic 5-carboxymethoxy group of V. By comparing the theoretical data on the configurations of these pairs with the evidence for their existence/non-existence in nature, some guidelines emerge for differentiating between observed and unobserved base pairs on the basis of the pairing configuration.


Subject(s)
Adenine/chemistry , Anticodon , Base Pairing , Codon , Computer Simulation , Cytosine/chemistry , DNA/chemistry , Guanine/chemistry , Hydrogen Bonding , Inosine/chemistry , Models, Chemical , Nitrogen/chemistry , Nucleic Acid Conformation , Uracil/chemistry
3.
Egyptian Journal of Pharmaceutical Sciences. 1996; 37 (1-6): 493-500
in English | IMEMR | ID: emr-40815

ABSTRACT

Some amino naphthalene nucleosides were prepared by the reaction of both of 1-amino, 1-aminomethyl, 1,5-diamino and 2,6-bis [aminomethyl] naphthalene derivatives with 2,3,5-tri-O-acetyl ribofuranosyl chloride. On the other hand, the reactions of 2',3'-O-isopropylidene 5-amino uridine and its 5-aminomethyl analogue with gluconolactone and the reactions of 2',3'-O-isopropylidene-5-chloromethyl uridine with sodium N-methyl taurinate have been described


Subject(s)
2-Naphthylamine/chemical synthesis , Uracil/chemistry , Nucleosides/analogs & derivatives
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