Control of anterior pituitary cell excitability by calcium-activated potassium channels
In anterior pituitary endocrine cells, large (BK), small (SK) and intermediate (IK) conductance calcium activated potassium channels are key determinants in shaping cellular excitability in a cell type- and context-specific manner. Indeed, these channels are targeted by multiple signaling pathways t...
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Veröffentlicht in: | Molecular and cellular endocrinology 2018-03, Vol.463, p.37-48 |
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Sprache: | eng |
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Zusammenfassung: | In anterior pituitary endocrine cells, large (BK), small (SK) and intermediate (IK) conductance calcium activated potassium channels are key determinants in shaping cellular excitability in a cell type- and context-specific manner. Indeed, these channels are targeted by multiple signaling pathways that stimulate or inhibit cellular excitability. BK channels can, paradoxically, both promote electrical bursting as well as terminate bursting and spiking dependent upon intrinsic BK channel properties and proximity to voltage gated calcium channels in somatotrophs, lactotrophs and corticotrophs. In contrast, SK channels are predominantly activated by calcium released from intracellular IP3-sensitive calcium stores and mediate membrane hyperpolarization in cells including gonadotrophs and corticotrophs. IK channels are predominantly expressed in corticotrophs where they limit membrane excitability. A major challenge for the future is to determine the cell-type specific molecular composition of calcium-activated potassium channels and how they control anterior pituitary hormone secretion as well as other calcium-dependent processes.
•Anterior pituitary cells are electrically excitable.•Ca2+-activated K+ channels shape the pattern of cell type specific excitability.•Ca2+-activated K+ channels promote or reduce excitability depending on cell context.•Pattern of excitability determines pituitary hormone secretion & physiology. |
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ISSN: | 0303-7207 1872-8057 |
DOI: | 10.1016/j.mce.2017.06.003 |