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PMID: 2352174 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Modulation of potassium channels in human T lymphocytes: effects of temperature.

The Journal of physiology ·Vol. 422 ·1990-03-00 ·Pages 103-26

Pahapill PA, Schlichter LC

Abstract

1. The predominant channels found in lymphocytes with patch-clamp whole-cell recordings are voltage-gated K+ channels. Several lines of evidence suggest that these channels are involved in lymphocyte function. Most lymphocyte functions are temperature sensitive and have not been correlated with electrophysiology at different temperatures. We have examined the effect of temperature on the voltage-dependent K+ channel in normal human T lymphocytes. Both macroscopic current and single-channel events were studied with whole-cell recordings at temperatures from 5 to 42 degrees C. 2. Peak conductance, activation rate, inactivation rate and rate of recovery from inactivation all increased progressively as the temperature increased. The effect of temperature on channel opening processes was greater at low temperatures. In contrast, the inactivation process was most sensitive to temperature changes above room temperature. Arrhenius plots of conductance and kinetic parameters were curvilinear with no obvious break-points. 3. The increase in whole-cell conductance at 37 degrees C was due to both an increase in the single-channel conductance and in the probability that each channel is open at any time. 4. K+ currents were fitted by Hodgkin-Huxley equations with n4j kinetics providing the best description of the currents at all temperatures tested. 5. Steady-state activation- and inactivation-voltage curves shifted in opposite directions with warming, resulting in a greater area of overlap of the curves ('window' current). The increase in resting K+ channel activity predicted by a greater window current was confirmed with single-channel measurements. 6. The present study has shown that the behaviour of K+ channels in human T lymphocytes is temperature dependent.

MeSH Terms
Action Potentials/physiology Humans Ion Channel Gating/physiology Kinetics Potassium/physiology Potassium Channels/physiology T-Lymphocytes/physiology Temperature Thermodynamics
Chemicals
Potassium Channels Potassium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Pahapill P A
Department of Physiology, University of Toronto, Ontario, Canada.
Schlichter L C
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30 references, click to expand
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Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1990-03-00
Pages
103-26
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1190123
Subset
IM
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