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Olfactory CNG channel desensitization by Ca2+/CaM via the B1b subunit affects response termination but not sensitivity to recurring stimulation.

Neuron. 2019-05; 
SongYijun,CygnarKatherine D,SagdullaevBotir,ValleyMatthew,HirshSarah,StephanAaron,ReisertJohannes,ZhaoHai
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Peptide Synthesis … confocal microscopy (LSM 510 Meta, Zeiss). Anti-CNGB1b serum was custom generated by GenScript Corp (www.genescript.com) against the synthesized peptide of the c-terminal sequence EAAGPPEPSVRIRVSPGPC and was used at a dilution of 1:200. The specificity of the … Get A Quote

摘要

Ca2+/calmodulin-mediated negative feedback is a prototypical regulatory mechanism for Ca2+-permeable ion channels. In olfactory sensory neurons (OSNs), such regulation on the cyclic nucleotide-gated (CNG) channel is considered a major mechanism of OSN adaptation. To determine the role of Ca2+/calmodulin desensitization of the olfactory CNG channel, we introduced a mutation in the channel subunit CNGB1b in mice that rendered the channel resistant to fast desensitization by Ca2+/calmodulin. Contrary to expectations, mutant OSNs showed normal receptor current adaptation to repeated stimulation. Rather, they displayed slower response termination and, consequently, reduced ability to transmit olfactory i... More

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