AbstractMuscle form of lactate dehydrogenase (M-LDH), a minor LDH form in cardiomyocytes, physically interacts with ATP-sensitive K+ (KATP) channel-forming subunits. Here, we have shown that expression of 193gly-M-LDH, an inactive mutant of M-LDH, inhibit regulation of the KATP channels activity by LDH substrates in embryonic rat heart H9C2 cells. In cells expressing 193gly-M-LDH chemical hypoxia has failed to activate KATP channels. The similar results were obtained in H9C2 cells expressing Kir6.2AFA, a mutant form of Kir6.2 with largely decreased K+ conductance. Kir6.2AFA has slightly, but significantly, reduced cellular survival under chemical hypoxia while the deleterious effect of 193gly-M-LDH was significantly more pronounced. The lev...
AbstractWe investigated consequences of cardiac arrest on sarcolemmal and mitochondrial effects of A...
The ATP-sensitive potassium (KATP) channels are crucial for stress adaptation in the heart. It has p...
Chronic exposure to lower oxygen tension may increase cellular resistance to different types of acut...
AbstractMuscle form of lactate dehydrogenase (M-LDH), a minor LDH form in cardiomyocytes, physically...
Muscle form of lactate dehydrogenase (M-LDH), a minor LDH form in cardiomyocytes, physically interac...
AbstractMuscle form of lactate dehydrogenase (M-LDH) physically associate with KATP channel subunits...
Muscle form of lactate dehydrogenase (M-LDH) physically associate with K-ATP, channel subunits, Kir6...
ATP-sensitive K+ (K-ATP) channels in the heart are normally closed by high intracellular ATP, but ar...
AbstractTransgenic mice overexpressing SUR2A, a subunit of ATP-sensitive K+ (KATP) channels, acquire...
AbstractHigh-altitude residents have lower mortality rates for ischaemic heart disease and this is a...
ATP-sensitive K+ (K-ATP) channels were originally described in cardiomyocytes, where physiological l...
AbstractATP-sensitive K+ (KATP) channels were originally described in cardiomyocytes, where physiolo...
High-altitude residents have lower mortality rates for ischaemic heart disease and this is ascribed ...
Transgenic mice overexpressing SUR2A, a subunit of ATP-sensitive K+ (K-ATP) channels, acquire resist...
AbstractWe investigated effects of blockade of cardiac ATP-sensitive potassium channels (KATP) with ...
AbstractWe investigated consequences of cardiac arrest on sarcolemmal and mitochondrial effects of A...
The ATP-sensitive potassium (KATP) channels are crucial for stress adaptation in the heart. It has p...
Chronic exposure to lower oxygen tension may increase cellular resistance to different types of acut...
AbstractMuscle form of lactate dehydrogenase (M-LDH), a minor LDH form in cardiomyocytes, physically...
Muscle form of lactate dehydrogenase (M-LDH), a minor LDH form in cardiomyocytes, physically interac...
AbstractMuscle form of lactate dehydrogenase (M-LDH) physically associate with KATP channel subunits...
Muscle form of lactate dehydrogenase (M-LDH) physically associate with K-ATP, channel subunits, Kir6...
ATP-sensitive K+ (K-ATP) channels in the heart are normally closed by high intracellular ATP, but ar...
AbstractTransgenic mice overexpressing SUR2A, a subunit of ATP-sensitive K+ (KATP) channels, acquire...
AbstractHigh-altitude residents have lower mortality rates for ischaemic heart disease and this is a...
ATP-sensitive K+ (K-ATP) channels were originally described in cardiomyocytes, where physiological l...
AbstractATP-sensitive K+ (KATP) channels were originally described in cardiomyocytes, where physiolo...
High-altitude residents have lower mortality rates for ischaemic heart disease and this is ascribed ...
Transgenic mice overexpressing SUR2A, a subunit of ATP-sensitive K+ (K-ATP) channels, acquire resist...
AbstractWe investigated effects of blockade of cardiac ATP-sensitive potassium channels (KATP) with ...
AbstractWe investigated consequences of cardiac arrest on sarcolemmal and mitochondrial effects of A...
The ATP-sensitive potassium (KATP) channels are crucial for stress adaptation in the heart. It has p...
Chronic exposure to lower oxygen tension may increase cellular resistance to different types of acut...