Inward rectifier (Kir) potassium channels contribute to the control of electrical activity in excitable tissues and their activity is modulated by many biochemical factors, including protons. Heteromeric Kir4.1-Kir5.1 channels are highly pH sensitive within the physiological range of pH changes and are strongly expressed by the peripheral chemosensors as well as in the brainstem pH-sensitive areas which mediate respiratory responses to changes in blood and brain levels of P(CO(2))/[H(+)]. In the present study, Kir5.1 knockout mice (Kir5.1(-/-)) were used to determine the role of these channels in the chemosensory control of breathing. We found that Kir5.1(-/-) mice presented with persistent metabolic acidosis and a clear respiratory phenoty...
Acid-sensitive K+ channels of the tandem P-domain K+-channel family (TASK-1 and TASK-3) have been im...
O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid bod...
Considerable progress has been made elucidating the cellular signals and ion channel targets involve...
Inward rectifier (Kir) potassium channels contribute to the control of electrical activity in excita...
The molecular identity of ion channels which confer PCO2/pH sensitivity in the brain is unclear. Het...
Medullary neurons expressing pH sensitive potassium channels have been proposed to play a role in ce...
Previous reports indicate roles for acid-sensing ion channels (ASICs) in both peripheral and central...
Despite intensive research, the exact function of TASK potassium channels in central and peripheral ...
The carotid body (CB) is a primary chemosensory organ for arterial hypoxia. Inhibition of K channels...
Background K2P channels are tightly regulated by different stimuli including variations of external ...
Background K+ channels of the TASK family are believed to participate in sensory transduction by che...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
International audienceBreathing is a spontaneous, rhythmic motor behavior critical for maintaining O...
TASK-1 potassium channels have been implicated in central and peripheral chemoreception; however, th...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
Acid-sensitive K+ channels of the tandem P-domain K+-channel family (TASK-1 and TASK-3) have been im...
O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid bod...
Considerable progress has been made elucidating the cellular signals and ion channel targets involve...
Inward rectifier (Kir) potassium channels contribute to the control of electrical activity in excita...
The molecular identity of ion channels which confer PCO2/pH sensitivity in the brain is unclear. Het...
Medullary neurons expressing pH sensitive potassium channels have been proposed to play a role in ce...
Previous reports indicate roles for acid-sensing ion channels (ASICs) in both peripheral and central...
Despite intensive research, the exact function of TASK potassium channels in central and peripheral ...
The carotid body (CB) is a primary chemosensory organ for arterial hypoxia. Inhibition of K channels...
Background K2P channels are tightly regulated by different stimuli including variations of external ...
Background K+ channels of the TASK family are believed to participate in sensory transduction by che...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
International audienceBreathing is a spontaneous, rhythmic motor behavior critical for maintaining O...
TASK-1 potassium channels have been implicated in central and peripheral chemoreception; however, th...
International audienceTask2 K(+) channel expression in the central nervous system is surprisingly re...
Acid-sensitive K+ channels of the tandem P-domain K+-channel family (TASK-1 and TASK-3) have been im...
O2 sensing is essential for mammalian homeostasis. Peripheral chemoreceptors such as the carotid bod...
Considerable progress has been made elucidating the cellular signals and ion channel targets involve...