A Ca(2+)-activated Cl(-) current constitutes a large part of the transduction current in olfactory sensory neurons. The binding of odorants to olfactory receptors in the cilia produces an increase in cAMP concentration; Ca(2+) enters into the cilia through CNG channels and activates a Cl(-) current. In intact mouse olfactory sensory neurons little is known about the kinetics of the Ca(2+)-activated Cl(-) current. Here, we directly activated CNG channels by flash photolysis of caged cAMP or 8-Br-cAMP and measured the current response with the whole cell voltage-clamp technique in mouse neurons. We measured multiphasic currents in the rising phase of the response at -50 mV. The current rising phase became monophasic in the absence of extracel...
The Ca(2+)-activated Cl(-) channel is considered a key constituent of odor transduction. Odorant bin...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...
Odorants activate sensory transduction in olfactory receptor neurons (ORNs) via a cAMP-signaling cas...
Background: Odor transduction, occurring in the chemosensory cilia of vertebrate olfactory sensory n...
Vertebrate olfactory sensory neurons rapidly adapt to repetitive odorant stimuli. Previous studies h...
Olfactory sensory neurons use a chloride-based signal amplification mechanism to detect odorants. Th...
Photolysis of caged compounds allows the production of rapid and localized increases in the concentr...
Olfactory sensory neurons use a chloride-based signal amplification mechanism to detect odorants. Th...
Olfactory sensory neurons (OSNs) use a Ca2+-activated Clˉ channels amplification mechanism in olfact...
While inhibiting most neurons of the central nervous system (CNS), Cl${-}$-currents activate somatos...
Ca2+-activated Cl- channels control electrical excitability in various peripheral and central popula...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
cAMP-gated ion channels in olfactory sensory neurons are composed of three distinctsubunits, denomin...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
The Ca(2+)-activated Cl(-) channel is considered a key constituent of odor transduction. Odorant bin...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...
Odorants activate sensory transduction in olfactory receptor neurons (ORNs) via a cAMP-signaling cas...
Background: Odor transduction, occurring in the chemosensory cilia of vertebrate olfactory sensory n...
Vertebrate olfactory sensory neurons rapidly adapt to repetitive odorant stimuli. Previous studies h...
Olfactory sensory neurons use a chloride-based signal amplification mechanism to detect odorants. Th...
Photolysis of caged compounds allows the production of rapid and localized increases in the concentr...
Olfactory sensory neurons use a chloride-based signal amplification mechanism to detect odorants. Th...
Olfactory sensory neurons (OSNs) use a Ca2+-activated Clˉ channels amplification mechanism in olfact...
While inhibiting most neurons of the central nervous system (CNS), Cl${-}$-currents activate somatos...
Ca2+-activated Cl- channels control electrical excitability in various peripheral and central popula...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
cAMP-gated ion channels in olfactory sensory neurons are composed of three distinctsubunits, denomin...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
The Ca(2+)-activated Cl(-) channel is considered a key constituent of odor transduction. Odorant bin...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
The odorant-induced Ca2+ increase inside the cilia of vertebrate olfactory sensory neurons controls ...