Maxim V Konakov, Ilia Y Teplov, Sergey G Levin, Miroslav N Nenov
Journal: Biochemical and biophysical research communications 2022;615():17-23
PMID: 35605400
It has been shown that anti-inflammatory cytokine interleukin-10 (IL-10) can exert anti-hypoxic effect preventing post-hypoxic neuronal hyperexcitability. Yet, exact mechanisms of IL-10 mediated anti-hypoxic action on neuronal function are not fully understood. We suggested that IL-10 can exert its anti-hypoxic action via modulation of activity of two-pore potassium TASK-1 and TASK-3 channels. To study the involvement of TASK-1 and TASK-3 channels we employed a combination of whole-cell patch clamp and pharmacological inhibitory analysis to assess if IL-10 and brief hypoxic episode can modulate K background leak current (I) and membrane input resistance (R) in cultured hippocampal neurons. We found that IL-10 in a dose-dependent manner can significantly increase I with concomitant reduction in R. Neurons that were exposed to brief hypoxic episode on contrary showed significant decrease in I with concomitant increase in R. Pretreatment with IL-10 prior hypoxic episode was able to abolish negative effect of hypoxia on I and R. IL-10 potentiating action on I and R was occluded by co-addition of selective blockers of TASK-1 and TASK-3 channels - ML365 and PK-THPP. Co-addition of LY294002, an inhibitor of PI3-kinase occluded IL-10 action on I and R showing involvement of PI3K-associated pathway in IL-10 mediated regulation of TASK channel function. Our results provide new insights into IL-10 mediated neuroprotective and anti-hypoxic actions showing TASK-1 and TASK-3 channels as downstream targets of this anti-inflammatory cytokine.
Copyright © 2022 Elsevier Inc. All rights reserved.
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