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J Neurophysiol (February 25, 2004). doi:10.1152/jn.00606.2003
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Submitted on June 25, 2003
Accepted on February 16, 2004

Reciprocal modulation of calcium dynamics at rod and cone photoreceptor synapses by nitric oxide

Dmitri E. Kourennyi1, Xiaodong Liu1, Jason Hart1, Farid Mahmud1, William H. Baldridge1, and Steven Barnes1*

1 of Biomedical Engineering, Case Western Reserve University, Cleveland, OH, USA

* To whom correspondence should be addressed. E-mail: sbarnes{at}dal.ca.

The abundance of nitric oxide (NO) synthesizing enzymes identified in the vertebrate retina highlight the importance of NO as a signaling molecule in this tissue. Here we describe opposing actions of NO on the rod and cone photoreceptor synapse. Depolarization-induced increases of calcium concentration in rods and cones were enhanced and inhibited, respectively, by the NO donor S-nitrosocysteine. NO suppressed calcium current in cones by decreasing the maximum conductance, whereas NO facilitated rod Ca channel activation. NO also activated a non-selective voltage-independent conductance in both rods and cones. Suppression of NO production in the intact retina with NG-nitro-L-arginine favored cone over rod driven postsynaptic signals, as would be expected if NO enhanced rod and suppressed cone synaptic activity. These findings may imply involvement of NO in regulating the strength of rod and cone pathways in the retina during different states of adaptation.




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