AMPK inhibits voltage-gated calcium channel-current in rat chromaffin cells
Metabolic changes are critical in the regulation of Ca2+ influx in central and peripheral neuroendocrine cells. To study the regulation of L-type Ca2+ channels by AMPK we used biochemical reagents and ATP/glucose-concentration manipulations in rat chromaffin cells. AICAR and Compound-C, at low conce...
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Veröffentlicht in: | Molecular and cellular endocrinology 2024-09, Vol.591, p.112275, Article 112275 |
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Sprache: | eng |
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Zusammenfassung: | Metabolic changes are critical in the regulation of Ca2+ influx in central and peripheral neuroendocrine cells. To study the regulation of L-type Ca2+ channels by AMPK we used biochemical reagents and ATP/glucose-concentration manipulations in rat chromaffin cells. AICAR and Compound-C, at low concentration, significantly induce changes in L-type Ca2+ channel-current amplitude and voltage dependence. Remarkably, an overlasting decrease in the channel-current density can be induced by lowering the intracellular level of ATP. Accordingly, Ca2+ channel-current density gradually diminishes by decreasing the extracellular glucose concentration. By using immunofluorescence, a decrease in the expression of CaV1.2 is observed while decreasing extracellular glucose, suggesting that AMPK reduces the number of functional Ca2+ channels into the plasma membrane. Together, these results support for the first time the dependence of metabolic changes in the maintenance of Ca2+ channel-current by AMPK. They reveal a key step in Ca2+ influx in secretory cells.
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•ATP/glucose decreases channel-current.•AMPK inhibits calcium channels.•Glucose regulates CaV1.2 expression. |
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ISSN: | 0303-7207 1872-8057 1872-8057 |
DOI: | 10.1016/j.mce.2024.112275 |