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Sci. STKE, 29 October 2002 EDITORS' CHOICECHANNELS Changes in cAMP Affinity Modulate HCN Channel Activity
Wang et al. describe a mechanism whereby activity-dependent changes in adenosine 3',5'-monophosphate (cAMP) binding affinity, rather than changes in cAMP concentration, can modulate activity of the hyperpolarization-activated, cyclic nucleotide-gated, cation nonselective (HCN) channel and can help regulate rhythmic firing. HCN channels are involved in pace-making and are modulated by cAMP, which facilitates channel opening. This has been modeled as an allosteric interaction in which channel opening is coupled with a transition to a conformation that enhances cAMP binding. Wang et al. used inside-out patch-clamp and voltage-clamp analyses of oocytes expressing HCN2 channel mRNA to test this model. Concentrations of cAMP J. Wang, S. Chan, M. F. Nolan, S. A. Siegelbaum, Activity-dependent regulation of HCN pacemaker channels by cyclic AMP: Signaling through dynamic allosteric coupling. Neuron 36, 451-461 (2002). [Online Journal]
Citation: Changes in cAMP Affinity Modulate HCN Channel Activity. Sci. STKE 2002, tw391 (2002). The editors suggest the following Related Resources on Science sites:In Science Signaling
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Science Signaling. ISSN 1937-9145 (pre-2008: Science's STKE. ISSN 1525-8882)