2 resultados para Escoto, John Duns, 1270-1308

em Biblioteca Digital da Produção Intelectual da Universidade de São Paulo


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Este texto examina as principais diferenças de enfoque relacionadas ao papel dos intérpretes na realização de duas diferentes propostas de jogo. Para tanto, são comparadas algumas obras de John Cage e as práticas de grupos que se dedicam à livre improvisação musical, principalmente do grupo Akronon.1 Procura-se demonstrar que as propostas de Cage, que estão situadas num plano conceitual, e as propostas da livre improvisação, que partem de uma prática experimental interativa baseada numa manipulação empírica dos sons, resultam em concepções bastante distintas a respeito do papel do intérprete. A partir desta perspectiva, afirma-se o caráter potente da livre improvisação que pode ser pensada enquanto prática de um jogo ideal conforme conceituação proposta pelo filósofo francês Gilles Deleuze

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The interaction of cytochrome c (cyt c) with cardiolipin (CL) induces protein conformational changes that favor peroxidase activity. This process has been correlated with CL oxidation and the induction of cell death. Here we report evidence demonstrating the generation of singlet molecular oxygen [O-2((1)Delta(g))] by a cyt c-CL complex in a model membrane containing CL. The formation of singlet oxygen was directly evidenced by luminescence measurements at 1270 nm and by chemical trapping experiments. Singlet oxygen generation required cyt c-CL binding and occurred at pH values higher than 6, consistent with lipid-protein interactions involving fully deprotonated CL species and positively charged residues in the protein. Moreover, singlet oxygen formation was specifically observed for tetralinoleoyl CL species and was not observed with monounsaturated and saturated CL species. Our results show that there are at least two mechanisms leading to singlet oxygen formation: one with fast kinetics involving the generation of singlet oxygen directly from CL hydroperoxide decomposition and the other involving CL oxidation. The contribution of the first mechanism was clearly evidenced by the detection of labeled singlet oxygen [O-18(2)((1)Delta(g))] from liposomes supplemented with 18-oxygen-labeled CL hydroperoxides. However quantitative analysis showed that singlet oxygen yield from CL hydroperoxides was minor (<5%) and that most of the singlet oxygen is formed from the second mechanism. Based on these data and previous findings we propose a mechanism of singlet oxygen generation through reactions involving peroxyl radicals (Russell mechanism) and excited triplet carbonyl intermediates (energy transfer mechanism).