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Dive into the research topics where Andrea Miyasaka Almeida is active.

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Featured researches published by Andrea Miyasaka Almeida.


FEBS Letters | 1998

Free fatty acids regulate the uncoupling protein and alternative oxidase activities in plant mitochondria

Francis Sluse; Andrea Miyasaka Almeida; Wieslawa Jarmuszkiewicz; Anibal E. Vercesi

Two energy‐dissipating systems, an alternative oxidase and an uncoupling protein, are known to exist in plant mitochondria. In tomato fruit mitochondria linoleic acid, a substrate for the uncoupling protein, inhibited the alternative oxidase‐sustained respiration and decreased the ADP/O ratio to the same value regardless of the level of alternative oxidase activity. Experiments with varying concentrations of linoleic acid have shown that inhibition of the alternative oxidase is more sensitive to the linoleic acid concentration than the uncoupling protein activation. It can be proposed that these dissipating systems work sequentially during the life of the plant cell, since a high level of free fatty acid‐induced uncoupling protein activity excludes alternative oxidase activity.


Journal of Bioenergetics and Biomembranes | 2002

The Energy-Conserving and Energy-Dissipating Processes in Mitochondria Isolated from Wild Type and Nonripening Tomato Fruits During Development on the Plant

Andrea Miyasaka Almeida; Rachel Navet; Wieslawa Jarmuszkiewicz; Anibal E. Vercesi; Claudined M. Sluse-Goffart; Francis Sluse

Bioenergetics of tomato (Lycopersicon esculentum) development on the plant was followed from the early growing stage to senescence in wild type (climacteric) and nonripening mutant (nor, nonclimacteric) fruits. Fruit development was expressed in terms of evolution of chlorophyll a content allowing the assessment of a continuous time-course in both cultivars. Measured parameters: the cytochrome pathway-dependent respiration, i.e., the ATP synthesis-sustained respiration (energy-conserving), the uncoupling protein (UCP) activity-sustained respiration (energy-dissipating), the alternative oxidase(AOX)-mediated respiration (energy-dissipating), as well as the protein expression of UCP and AOX, and free fatty acid content exhibited different evolution patterns in the wild type and nor mutant that can be attributed to their climacteric/nonclimacteric properties, respectively. In the wild type, the climacteric respiratory burst observed in vitro depended totally on an increse in the cytochrome pathway activity sustained by ATP synthesis, while the second respiratory rise during the ripening stage was linked to a strong increase in AOX activity accompanied by an overexpression of AOX protein. In wild type mitochondria, the 10-μM linoleic acid-stimulated UCP-activity-dependent respiration remained constant during the whole fruit development except in senescence where general respiratory decay was observed.


Free Radical Biology and Medicine | 1999

Diphenylacetaldehyde-generated excited states promote damage to isolated rat liver mitochondrial DNA, phospholipids, and proteins

Andrea Miyasaka Almeida; Etelvino J. H. Bechara; Anibal E. Vercesi; Iseli L. Nantes

This work studies damage to rat liver mitochondrial protein, lipid, and DNA caused by electronically excited states generated by cytochrome c-catalyzed diphenylacetaldehyde enol oxidation to triplet benzophenone. The extension of lipid peroxidation was estimated by production of thiobarbituric acid-reactive substances and by formation of Schiff bases with membrane proteins, evaluated by SDS-polyacrylamide gel electrophoresis. Concomitant with DPAA-driven mitochondrial permeabilization, extensive mtDNA fragmentation occurred and DNA adducts with aldehydes-products of fatty acid oxidation-were observed. The degree of lipid peroxidation and mtDNA alterations were significantly decreased by butylated hydroxytoluene, a potent peroxidation chain breaker. The lipid peroxidation process was also partially inhibited by the bioflavonoid rutin and urate totally prevented the mitochondrial transmembrane potential collapse. In all cases, the mitochondrial damage was dependent on the presence of phosphate ions, a putative bifunctional catalyst of carbonyl enolization. These data are consistent with the notion that triplet ketones may act like alkoxyl radicals as deleterious reactive oxygen species on biologic structures. Involvement of singlet dioxygen formed by triplet-triplet energy transfer from benzophenone in the model reaction with DPAA/cytochrome c in the presence of DCP liposomes was suggested by quenching of the accompanying chemiluminescence upon addition of histidine and lycopene.


Journal of Bioenergetics and Biomembranes | 2003

Energy conservation and dissipation in mitochondria isolated from developing tomato fruit of ethylene-defective mutants failing normal ripening: the effect of ethephon, a chemical precursor of ethylene.

Rachel Navet; Wieslawa Jarmuszkiewicz; Andrea Miyasaka Almeida; Claudine M. Sluse-Goffart; Francis Sluse

Alternative oxidase (AOX) and uncoupling protein (UCP) are present simultaneously in tomato fruit mitochondria. In a previous work, it has been shown that protein expression and activity of these two energy-dissipating systems exhibit large variations during tomato fruit development and ripening on the vine. It has been suggested that AOX and UCP could be responsible for the respiration increase at the end of ripening and that the cytochrome pathway could be implicated in the climacteric respiratory burst before the onset of ripening. In this study, the use of tomato mutants that fail normal ripening because of deficiencies in ethylene perception or production as well as the treatment of one selected mutant with a chemical precursor of ethylene have revealed that the bioenergetics of tomato fruit development and ripening is under the control of this plant hormone. Indeed, the evolution pattern of bioenergetic features changes with the type of mutation and with the introduction of ethylene into an ethylene-synthesis-deficient tomato fruit mutant during its induced ripening.


Journal of Bioenergetics and Biomembranes | 2002

Mitochondrial permeability transition induced by chemically generated singlet oxygen

Ricardo G. Cosso; Jussiani Turim; Iseli L. Nantes; Andrea Miyasaka Almeida; Paolo Di Mascio; Anibal E. Vercesi

Pure singlet molecular oxygen (1O2) generated by thermal decomposition of the 3,3′-(1,4-naphthylidene) dipropionate endoperoxide (NDPO2), inhibited respiration of isolated rat liver mitochondria supported by NADH-linked substrates or succinate, but not by N,N,N,N-tetramehyl-p-phenylene-diamine (TMPD)/ascorbate. Under the latter conditions, mitochondria treated with 2.7 mM NDPO2 exhibited a decrease in transmembrane potential (ΔΨ) in manner dependent on NDPO2 exposure time. This process was sensitive to the mitochondrial permeability transition inhibitors EGTA, dithiothreitol, ADP, and cyclosporin A. The presence of deuterium oxide (D2O), that increases 1O2 lifetime, significantly enhanced NDPO2-promoted mitochondrial permeabilization. In addition, NDPO2-induced mitochondrial permeabilization was accompanied by DTT or ADP-sensitive membrane protein thiol oxidation. Taken together, these results provide evidence that mitochondrial permeability transition induced by chemically generated singlet oxygen is mediated by the oxidation of membrane protein thiols.


Plant Physiology | 1999

Cyanide-resistant, ATP-synthesis-sustained, and uncoupling-protein-sustained respiration during postharvest ripening of tomato fruit

Andrea Miyasaka Almeida; Wieslawa Jarmuszkiewicz; Hamid Khomsi; Paulo Arruda; Anibal E. Vercesi; Francis Sluse


Journal of Biological Chemistry | 1998

Linoleic Acid-induced Activity of Plant Uncoupling Mitochondrial Protein in Purified Tomato Fruit Mitochondria during Resting, Phosphorylating, and Progressively Uncoupled Respiration

Wieslawa Jarmuszkiewicz; Andrea Miyasaka Almeida; Claudine M. Sluse-Goffart; Francis Sluse; Anibal E. Vercesi


Journal of Biological Chemistry | 2000

Proton re-uptake partitioning between uncoupling protein and ATP synthase during benzohydroxamic acid-resistant state 3 respiration in tomato fruit mitochondria.

Wieslawa Jarmuszkiewicz; Andrea Miyasaka Almeida; Anibal E. Vercesi; Francis Sluse; Claudine M. Sluse-Goffart


Anais Da Academia Brasileira De Ciencias | 2006

Mitochondrial DNA damage associated with lipid peroxidation of the mitochondrial membrane induced by Fe2+-citrate

Andrea Miyasaka Almeida; Clelia Bertoncini; Jiri Borecký; Nadja C. de Souza-Pinto; Anibal E. Vercesi


Archive | 2000

Proton partitioning between ATP synthase and uncoupling protein during cytochrome pathway state 3 respiration in tomato fruit mitochondria

Francis Sluse; W. Jarmuszkiewicz; Andrea Miyasaka Almeida; Anibal E. Vercesi; C. Sluse-Goffart

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Anibal E. Vercesi

State University of Campinas

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Wieslawa Jarmuszkiewicz

Adam Mickiewicz University in Poznań

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Iseli L. Nantes

State University of Campinas

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W. Jarmuszkiewicz

Adam Mickiewicz University in Poznań

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Wieslawa Jarmuszkiewicz

Adam Mickiewicz University in Poznań

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