Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including olfactory transduction, but their molecular identity is still unclear. Recent evidence suggests that members of the transmembrane 16 (TMEM16, also named anoctamin) family form Ca(2+)-activated Cl(-) channels in several cell types. In vertebrate olfactory transduction, TMEM16b/anoctamin2 has been proposed as the major molecular component of Ca(2+)-activated Cl(-) channels. However, a comparison of the functional properties in the whole-cell configuration between the native and the candidate channel has not yet been performed. In this study, we have used the whole-cell voltage-clamp technique to measure functional properties of the native channel...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
In vertebrate olfactory transduction, a Ca(2+)-dependent Cl(-) efflux greatly amplifies the odorant ...
In vertebrate olfactory transduction, a Ca(2+)-dependent Cl(-) efflux greatly amplifies the odorant ...
Olfactory sensory neurons (OSNs) use a Ca2+-activated Clˉ channels amplification mechanism in olfact...
In vertebrate olfactory transduction, a Ca2+-dependent Cl- efflux greatly amplifies the odorant resp...
In vertebrate olfactory transduction, a Ca2+-dependent Cl- efflux greatly amplifies the odorant resp...
Ca2+-activated c1- channels are involved in several physiological processes.In vertebrate olfactory ...
Ca2+-activated c1- channels are involved in several physiological processes.In vertebrate olfactory ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
Ca(2+)-activated Cl(-) channels play relevant roles in several physiological processes, including ol...
In vertebrate olfactory transduction, a Ca(2+)-dependent Cl(-) efflux greatly amplifies the odorant ...
In vertebrate olfactory transduction, a Ca(2+)-dependent Cl(-) efflux greatly amplifies the odorant ...
Olfactory sensory neurons (OSNs) use a Ca2+-activated Clˉ channels amplification mechanism in olfact...
In vertebrate olfactory transduction, a Ca2+-dependent Cl- efflux greatly amplifies the odorant resp...
In vertebrate olfactory transduction, a Ca2+-dependent Cl- efflux greatly amplifies the odorant resp...
Ca2+-activated c1- channels are involved in several physiological processes.In vertebrate olfactory ...
Ca2+-activated c1- channels are involved in several physiological processes.In vertebrate olfactory ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...
Ca2+-activated Cl− currents have been implicated in many cellular processes in different cells, but ...