The stimulation of IP3 production by muscarinic agonists causes both intracellular Ca2+ release and activation of a voltage-independent cation current in differentiated N1E-115 cells, a neuroblastoma cell line derived from mouse sympathetic ganglia. Earlier work showed that the membrane current requires an increase in 3′,5′-cyclic guanosine monophosphate (cGMP) produced through the NO-synthase/guanylyl cyclase cascade and suggested that the cells may express cyclic nucleotide–gated ion channels. This was tested using patch clamp methods. The membrane permeable cGMP analogue, 8-br-cGMP, activates Na+ permeable channels in cell attached patches. Single channel currents were recorded in excised patches bathed in symmetrical Na+ solutions. cGMP-dependent single channel activity consists of prolonged bursts of rapid openings and closings that continue without desensitization. The rate of occurrence of bursts as well as the burst length increase with cGMP concentration. The unitary conductance in symmetrical 160 mM Na+ is 47 pS and is independent of voltage in the range −50 to +50 mV. There is no apparent effect of voltage on opening probability. The dose response curve relating cGMP concentration to channel opening probability is fit by the Hill equation assuming an apparent KD of 10 μm and a Hill coefficient of 2. In contrast, cAMP failed to activate the channel at concentrations as high as 100 μm. Cyclic nucleotide gated (CNG) channels in N1E-115 cells share a number of properties with CNG channels in sensory receptors. Their presence in neuronal cells provides a mechanism by which activation of the NO/cGMP pathway by G-protein–coupled neurotransmitter receptors can directly modify Ca2+ influx and electrical excitability. In N1E-115 cells, Ca2+ entry by this pathway is necessary to refill the IP3-sensitive intracellular Ca2+ pool during repeated stimulation and CNG channels may play a similar role in other neurons.
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1 August 1997
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August 01 1997
Cyclic GMP–gated Channels in a Sympathetic Neuron Cell Line
Stuart H. Thompson
Stuart H. Thompson
From the Department of Biological Sciences and the Hopkins Marine Station, Stanford University, Pacific Grove, California 93950
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Stuart H. Thompson
From the Department of Biological Sciences and the Hopkins Marine Station, Stanford University, Pacific Grove, California 93950
Address correspondence to Stuart Thompson, Hopkins Marine Station, Ocean View Blvd., Pacific Grove, CA 93950. Fax: 408-375-0793; E-mail: [email protected]
I thank Dr. A.A. Alousi and Dr. M. Harrington for critical comment.
Work supported by grants from the National Science Foundation (IBN-9514421) and the American Heart Association, California Affiliate (#96-306).
1
Abbreviations used in this paper: CNG, cyclic nucleotide–gated.
Received:
March 17 1997
Accepted:
June 02 1997
Online ISSN: 1540-7748
Print ISSN: 0022-1295
1997
J Gen Physiol (1997) 110 (2): 155–164.
Article history
Received:
March 17 1997
Accepted:
June 02 1997
Citation
Stuart H. Thompson; Cyclic GMP–gated Channels in a Sympathetic Neuron Cell Line . J Gen Physiol 1 August 1997; 110 (2): 155–164. doi: https://doi.org/10.1085/jgp.110.2.155
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