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Sodium-dependent potassium channels in leech P neurons
G Klees1, P Hochstrate, P W Dierkes
1Institut für Neurobiologie, Heinrich-Heine-Universität Düsseldorf, Universitätsstr. 1, Düsseldorf 40225, Germany.
The Journal of Membrane Biology
|April 6, 2006
Summary
In leech neurons, sodium-activated potassium (K(Na)) channels stabilize membrane potential by increasing potassium conductance when intracellular sodium rises. These channels are also activated by lithium.
Area of Science:
- Neuroscience
- Cellular Physiology
- Ion Channel Function
Background:
- The Na(+)-K(+) pump is crucial for maintaining membrane potential and ion gradients.
- In leech P neurons, inhibiting the Na(+)-K(+) pump does not depolarize the membrane as expected, suggesting compensatory mechanisms.
- Previous studies indicated an increase in K(+) conductance stabilizes membrane potential despite altered ion gradients.
Purpose of the Study:
- To identify the specific ion channels responsible for the increased K(+) conductance in leech P neurons.
- To investigate the role of intracellular sodium concentration ([Na(+)](i)) in regulating membrane potential and input resistance.
- To characterize the properties of the identified channels, including their activation mechanism and potential physiological relevance.
Main Methods:
- Inhibition of the Na(+)-K(+) pump using ouabain and omission of bath K(+).
- Measurement of membrane potential, input resistance (R(in)), and membrane currents.
- Intracellular sodium concentration ([Na(+)](i)) manipulation and ion injection experiments (Na(+) and Li(+)).
Main Results:
- Inhibition of the Na(+)-K(+) pump led to membrane hyperpolarization and decreased R(in) correlating with increased [Na(+)](i).
- Data support the existence of Na(+)-activated K(+) (K(Na)) channels, with a proposed stoichiometry of three Na(+) ions per channel activation.
- K(Na) channels significantly reduced R(in) (over 90% at maximum activation) and were also activated by Li(+).
Conclusions:
- Na(+)-activated K(+) (K(Na)) channels are responsible for stabilizing membrane potential in leech P neurons under conditions of Na(+)-K(+) pump inhibition.
- These channels play a potentially significant role in the physiological function of leech neurons.
- K(Na) channels in these neurons exhibit cross-activation by both Na(+) and Li(+).