A common inhibitory binding site for zinc and odorants at the voltage-gated K+ channel of rat olfactory receptor neurons


Autoria(s): Seebungkert, B; Lynch, JW
Contribuinte(s)

B.J. Everitt

Data(s)

01/01/2001

Resumo

This study compared the effects of zinc and odorants on the voltage-gated K+ channel of rat olfactory neurons. Zinc reduced current magnitude, depolarized the voltage activation curve and slowed activation kinetics without affecting inactivation or deactivation kinetics. Zinc inhibition was potentiated by the NO compound, S-nitroso-cysteine. The pH- and diethylpyrocarbonate-dependence of zinc inhibition suggested that zinc acted by binding to histidine residues. Cysteine residues were eliminated as contributing to the zinc-binding site. The odorants, acetophenone and amyl acetate, also reduced current magnitude, depolarized the voltage activation curve and selectively slowed activation kinetics. Furthermore, the diethylpyrocarbonate- and pH-dependence of odorant inhibition implied that the odorants also bind to histidine residues. Zinc inhibitory potency was dramatically diminished in the presence of odorants, implying competition for a common binding site. These observations indicate that the odorants and zinc share a common inhibitory binding site on the external surface of the voltage-gated K+ channel.

Identificador

http://espace.library.uq.edu.au/view/UQ:60868

Idioma(s)

eng

Publicador

Blackwell Science

Palavras-Chave #Neurosciences #Cysteine #Diethylpyrocarbonate #Histidine #Metal Binding Site #Nitric Oxide #Olfactory Transduction #Potassium Channels #Necturus-maculosus #Divalent-cations #Induced Response #Carbon-monoxide #Cells #Suppression #Modulation #Currents #Kinetics #C1 #320600 Medical Physiology #780105 Biological sciences
Tipo

Journal Article