Protein phosphorylation/dephosphorylation and the transient, voltage-dependent potassium conductance in Hermissenda crassicornis.

@article{Neary1983ProteinPA,
  title={Protein phosphorylation/dephosphorylation and the transient, voltage-dependent potassium conductance in Hermissenda crassicornis.},
  author={J. Neary and D. Alkon},
  journal={The Journal of biological chemistry},
  year={1983},
  volume={258 14},
  pages={
          8979-83
        }
}
  • J. Neary, D. Alkon
  • Published 1983
  • Chemistry, Medicine
  • The Journal of biological chemistry
Recent interest in the modulation of ionic conductances in excitable membranes, particularly K+ conductances, has focused on biochemical mechanisms such as protein phosphorylation. Several distinct types of voltage-dependent K+ currents (e.g. transient, delayed, and Ca2+-dependent) can be separated by electrophysiological and pharmacological means. We have found that two treatments, 4-aminopyridine and high external K+, which preferentially reduce the transient K+ current also reduce the level… Expand
Regulation of Hermissenda K+ Channels by Cytoplasmic and Membrane‐Associated C‐Kinase
Calcium-Dependent 4-aminopyridine stimulation of protein phosphorylation in squid optic lobe synaptosomes
Long-term synergistic regulation of ionic channels by C-kinase and Ca2+/CaM-type II kinase.
  • D. Alkon, S. Naito
  • Chemistry, Medicine
  • Advances in experimental medicine and biology
  • 1987
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