Succinate-driven reverse electron transport (RET) through complex I is hypothesized to be a major source of reactive oxygen species (ROS) that induces permeability transition pore (PTP) opening and damages the heart during ischemia/reperfusion. Because RET can only generate ROS when mitochondria are fully polarized, this mechanism is self-limiting once PTP opens during reperfusion. In the accompanying article (Korge, P., Calmettes, G., John, S. A., and Weiss, J. N. (2017) J. Biol. Chem. 292, 9882-9895), we showed that ROS production after PTP opening can be sustained when complex III is damaged (simulated by antimycin). Here we show that complex II can also contribute to sustained ROS production in isolated rabbit cardiac mitochondria follo...
The mitochondrial electron transport chain is the major source of reactive oxygen species (ROS) duri...
Excessive mitochondrial reactive oxygen species (ROS) emission is a critical component in the etiolo...
The generation of mitochondrial superoxide (O2̇̄) by reverse electron transport (RET) at complex I c...
Succinate-driven reverse electron transport (RET) through complex I is hypothesized to be a major so...
Succinate-driven reverse electron transport (RET) through complex I is hypothesized to be a major so...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
The mitochondrial electron transport chain is the major source of reactive oxygen species (ROS) duri...
Reactive oxygen species (ROS) produced in the mitochondrial respiratory chain (RC) are primary signa...
Reactive oxygen species (ROS) produced in the mitochondrial respiratory chain (RC) are primary signa...
The mitochondrial electron transport chain is the major source of reactive oxygen species (ROS) duri...
Excessive mitochondrial reactive oxygen species (ROS) emission is a critical component in the etiolo...
The generation of mitochondrial superoxide (O2̇̄) by reverse electron transport (RET) at complex I c...
Succinate-driven reverse electron transport (RET) through complex I is hypothesized to be a major so...
Succinate-driven reverse electron transport (RET) through complex I is hypothesized to be a major so...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
Recent evidence has implicated succinate-driven reverse electron transport (RET) through complex I a...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
International audienceWe have investigated the consequences of permeability transition pore (PTP) op...
The mitochondrial electron transport chain is the major source of reactive oxygen species (ROS) duri...
Reactive oxygen species (ROS) produced in the mitochondrial respiratory chain (RC) are primary signa...
Reactive oxygen species (ROS) produced in the mitochondrial respiratory chain (RC) are primary signa...
The mitochondrial electron transport chain is the major source of reactive oxygen species (ROS) duri...
Excessive mitochondrial reactive oxygen species (ROS) emission is a critical component in the etiolo...
The generation of mitochondrial superoxide (O2̇̄) by reverse electron transport (RET) at complex I c...