Stimulation of single L-type calcium channels in rat pituitary GH3 cells by thyrotropin-releasing hormone

Mantegazza, M.; Fasolato, C.; Hescheler, J.; Pietrobon, D.

EMBO Journal 14(6): 1075-1083

1995


ISSN/ISBN: 0261-4189
PMID: 7720698
Document Number: 441081
Hormonal stimulation of voltage-dependent Ca-2+ channels in pituitary cells is thought to contribute to the sustained phase of Ca-2+ entry and secretion induced by secretion stimulating hormones and has been suggested as a mechanism for refilling the Ca-2+ stores. Using the cell-attached patch-clamp technique, we studied the stimulation of single Ca-2+ channels by thyrotropin-releasing hormone (TRH) in rat GH3 cells. We show that TRH applied from the bath switched the activity of single L-type Ca-2+ channels from a gating mode with very low open probability (p-0) to a gating mode with slightly smaller conductance but 10 times higher p-0. Interconversions between these two gating modes were also observed under basal conditions, where the equilibrium was shifted towards the low p, mode. TRH applied from the pipette had no effect, indicating the involvement of a cytosolic compound in the stimulatory pathway. We show that TRH does not potentiate all the L-type Ca-2+ channels in a given membrane patch and report evidence for co-expression of two functionally different L-type Ca-2+ channels. Our results uncover the biophysical mechanism of hormonal stimulation of voltage-dependent Ca-2+ channels in GH3 cells and are consistent with differential modulation of different subtypes of dihydropyridine-sensitive Ca-2+ channels.

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