The ubiquinone (Q) pool represents a node in the mitochondrial electron transport chain (ETC) onto which the electrons of all respiratory dehydrogenases converge. The redox state of the Q pool correlates closely with the electron flux through the ETC and is thus a parameter of great metabolic value for both the mitochondrial and cellular metabolism. Here, we describe the simultaneous measurement of respiratory rates of isolated mouse heart mitochondria and the redox state of their Q pool using a custom-made combination of a Clark-type oxygen electrode and a Q electrode
A computational model for the mitochondrial respiratory chain that appropriately balances mass, char...
We report the first detailed study on the ubiquinone (coenzyme Q; abbreviated to Q) analogue specifi...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Working with isolated mitochondria is the gold standard approach to investigate the function of the ...
Mitochondrial respiration produces both complete and partially reduced oxygen species that are invol...
Most of the cell's energy is obtained through the degradation of glucose, fatty acids, and amino aci...
Mitochondrial respiration generates reactive oxygen species that are involved in physiological and p...
International audienceMitochondrial oxidative phosphorylation is central for generating ATP and main...
AbstractThe redox potentials of the hemes of the mitochondrial bc1 complex are dependent on the prot...
AbstractWe have investigated the dependence of the respiratory rate on the redox poise of the quinon...
Mitochondria are cell organelles that have a crucial role in cellular energy metabolism. Mitochondri...
The generation of mitochondrial superoxide (O2̇̄) by reverse electron transport (RET) at complex I c...
Coenzyme Q (CoQ) is an essential cofactor, primarily found in the mitochondrial inner membrane where...
Summary: Depending on metabolic requirements, skeletal muscle mitochondria integrate O2 consumption ...
In this thesis a study has been made of the interaction of the components of the mitochondrial respi...
A computational model for the mitochondrial respiratory chain that appropriately balances mass, char...
We report the first detailed study on the ubiquinone (coenzyme Q; abbreviated to Q) analogue specifi...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...
Working with isolated mitochondria is the gold standard approach to investigate the function of the ...
Mitochondrial respiration produces both complete and partially reduced oxygen species that are invol...
Most of the cell's energy is obtained through the degradation of glucose, fatty acids, and amino aci...
Mitochondrial respiration generates reactive oxygen species that are involved in physiological and p...
International audienceMitochondrial oxidative phosphorylation is central for generating ATP and main...
AbstractThe redox potentials of the hemes of the mitochondrial bc1 complex are dependent on the prot...
AbstractWe have investigated the dependence of the respiratory rate on the redox poise of the quinon...
Mitochondria are cell organelles that have a crucial role in cellular energy metabolism. Mitochondri...
The generation of mitochondrial superoxide (O2̇̄) by reverse electron transport (RET) at complex I c...
Coenzyme Q (CoQ) is an essential cofactor, primarily found in the mitochondrial inner membrane where...
Summary: Depending on metabolic requirements, skeletal muscle mitochondria integrate O2 consumption ...
In this thesis a study has been made of the interaction of the components of the mitochondrial respi...
A computational model for the mitochondrial respiratory chain that appropriately balances mass, char...
We report the first detailed study on the ubiquinone (coenzyme Q; abbreviated to Q) analogue specifi...
Mitochondrial redox signals have a central role in neuronal physiology and disease. Here we describe...