Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
9012933 | Life Sciences | 2005 | 7 Pages |
Abstract
To determine how protein kinase C (PKC) activity influences properties of the tetrodotoxin-resistant sodium current (TTX-R INa) in neonatal rat nodose ganglion (NG) neurons, we assessed the effects of phorbol,-12-myristate,13-acetate (PMA), one of the PKC activators, and staurosporine, one of the PKC inhibitors, on the current. PMA (30 and 100 nM) induced an increase in the peak current amplitude of normalized current-voltage curves, a leftward shift in the potential for half activation (V1/2) of normalized conductance-voltage curves and a leftward shift of V1/2 potential for steady-state inactivation curves. The effects of staurosporine (0.1 and 1 μM) on the peak current amplitude and the V1/2 potential for activation were opposite compared with those seen after PMA application. Staurosporine (1 μM) antagonized PMA (100 nM)-induced modification of TTX-R INa. These results suggest that the basal TTX-R INa obtained from neonatal NG neurons is controlled by the level of PKC activity.
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Authors
Mizuho Ikeda, Shinki Yoshida, Jun Kadoi, Yukako Nakano, Shigeji Mastumoto,