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Featured researches published by Aida Uribe.


The International Journal of Biochemistry & Cell Biology | 1999

Presence of two enzymes, different from the F1F0-ATPase, hydrolyzing nucleotides in human term placental mitochondria.

Aida Uribe; Oscar Flores-Herrera; Juan L. Rendón; Ma.Teresa Espinosa-García; Frederico Martinez

The hydrolysis of ATP, ADP or GTP was characterized in mitochondria and submitochondrial particles since a tightly-bound ATPase associated with the inner mitochondrial membrane from the human placenta has been described. Submitochondrial particles, which are basically inner membranes, were used to define the location of this enzyme. Mitochondria treated with trypsin and specific inhibitors were also used. The oxygen consumption stimulated by ATP or ADP was 100% inhibited in intact mitochondria by low concentrations of oligomycin (0.5 microgram/mg) or venturicidine (0.1 microgram/mg), while the hydrolysis of ATP or ADP was insensitive to higher concentrations of these inhibitors but it was inhibited by vanadate. Oligomycin or venturicidine showed a different inhibition pattern in intact mitochondria in relation to the hydrolysis of ATP, ADP or GTP. When submitochondrial particles were isolated from mitochondria incubated with oligomycin or venturicidine, no further inhibition of the nucleotide hydrolysis was observed, contrasting with the partial inhibition observed in the control. By incubating the placental mitochondria with trypsin, a large fraction of the hydrolysis of nucleotides was eliminated. In submitochondrial particles obtained from mitochondria treated with trypsin or trypsin plus oligomycin, the hydrolysis of ATP was 100% sensitive to oligomycin at low concentrations, resembling the oxygen consumption; however, this preparation still showed some ADP hydrolysis. Native gel electrophoresis showed two bands hydrolyzing ADP, suggesting at least two enzymes involved in the hydrolysis of nucleotides, besides the F1F0-ATPase. It is concluded that human placental mitochondria possesses ADPase and ATP-diphosphohydrolase activities (247).


The International Journal of Biochemistry & Cell Biology | 2002

Differential effects of magnesium on the hydrolysis of ADP and ATP in human term placenta: Effect of substrates and potassium

Federico Martínez; Aida Uribe; Rebeca Milán; M.Teresa Espinosa-Garcı́a; Cecilia Gracı́a-Pérez; Oscar Flores-Herrera

This study evaluates the effect of Mg2+ on the extramitochondrial hydrolysis of ATP and ADP by human term placental mitochondria (HPM) and submitochondrial particle (SMP). Extramitochondrial ATPase and ADPase activities were evaluated in the presence or absence of K+, and different oxidizable substrates. Mg2+ increased both ATP and ADP hydrolysis according to the experimental conditions, and this stimulation was related to the mitochondrial intactness. The ADPase activity in intact mitochondria is 100-fold higher in presence of K+, succinate and 1mM Mg2+ while this activity is only increased by two-fold on the SMP when compared to the sample without Mg2+. It is clearly demonstrated that up-regulation of these enzyme activities occur in intact mitochondria and not on the enzyme itself. The results suggest that the regulation of ATP and ADP hydrolysis is complex, and Mg2+ plays an important role in the modulation of the extramitochondrial ATPase and ADPase activities in HPM


The International Journal of Biochemistry & Cell Biology | 2002

Calcium modulates the ATP and ADP hydrolysis in human placental mitochondria.

Federico Martínez; Aida Uribe; M.Teresa Espinosa-Garcı́a; Oscar Flores-Herrera; Cecilia Garcı́a-Pérez; Rebeca Milán

This study evaluated the effect of Ca2+ on the extramitochondrial hydrolysis of ATP and ADP by the extramitochondrial ATPase in isolated mitochondria and submitochondrial particles (SMPs) from human term placenta. The effect of different oxidizable substrates on the hydrolysis of ATP and ADP in the presence of sucrose or K+ was evaluated. Ca2+ increased phosphate release from ATP and ADP, but this stimulation showed different behavior depending on the oxidizable substrate present in the incubation media. Ca2+ stimulated the hydrolysis of ATP and ADP in the presence of sucrose. However, Ca2+ did not stimulate the hydrolysis of ADP in the medium containing K+. Ca2+ showed inhibition depending on the respiratory substrate. This study suggests that the energetic state of mitochondria controls the extramitochondrial ATPase activity, which is modulated by Ca2+ and respiratory substrates.


Molecular and Biochemical Parasitology | 2004

Purification, characterization and kinetic properties of the multifunctional thioredoxin-glutathione reductase from Taenia crassiceps metacestode (cysticerci).

Juan L. Rendón; Irene P. del Arenal; Alberto Guevara-Flores; Aida Uribe; A. Plancarte; Guillermo Mendoza-Hernández


Archives of Biochemistry and Biophysics | 2003

Contact sites from human placental mitochondria: Characterization and role in progesterone synthesis

Aida Uribe; Jerome F. Strauss; Federico Martínez


Placenta | 1999

Differences in cholesterol incorporation into mitochondria from hepatoma AS-30D and human term placenta.

J. Navarrete; Oscar Flores-Herrera; Aida Uribe; Federico Martínez


Placenta | 1999

A novel ATP-diphosphohydrolase from human term placental mitochondria.

Oscar Flores-Herrera; Aida Uribe; Juan Pablo Pardo; Juan L. Rendón; Federico Martínez


Biochimica et Biophysica Acta | 2002

5′-p-Fluorosulfonylbenzoyl adenosine inhibits progesterone synthesis in human placental mitochondria

Oscar Flores-Herrera; Aida Uribe; Cecilia Garcı́a-Pérez; Rebeca Milán; Federico Martínez


Placenta | 1996

Characterization of the F1F0-ATPase and the tightly-bound ATPase activities in submitochondrial particles from human term placenta

Federico Martínez; A. Meaney; Ma.Teresa Espinosa-García; Juan Pablo Pardo; Aida Uribe; Oscar Flores-Herrera


Revista de la Facultad de Medicina | 2001

El colesterol es esencial en el desarrollo embrionario y en el crecimiento celular

Oscar Flores Herrera; Cecilia García; Guadalupe Maldonado; Federico Martínez; Rebeca Millán; Aida Uribe; María Teresa Espinosa García

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Federico Martínez

National Autonomous University of Mexico

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Oscar Flores-Herrera

National Autonomous University of Mexico

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Juan L. Rendón

National Autonomous University of Mexico

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Rebeca Milán

National Autonomous University of Mexico

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Juan Pablo Pardo

National Autonomous University of Mexico

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Oscar Flores Herrera

National Autonomous University of Mexico

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Cecilia Garcı́a-Pérez

National Autonomous University of Mexico

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M.Teresa Espinosa-Garcı́a

National Autonomous University of Mexico

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Ma.Teresa Espinosa-García

National Autonomous University of Mexico

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A. Meaney

National Autonomous University of Mexico

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