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Ca2+ Channels in Anterior Pituitary Somatotrophs: A Therapeutic Perspective
1Department of Medical Neurobiology, Institute for Medical Research Israel-Canada (IMRIC), The Hebrew University Faculty of Medicine, Jerusalem, Israel.
Abstract:
Ca2+ influx through voltage-gated Ca2+ channels (VGCCs) plays a key role in GH secretion. In this review, we summarize the current state of knowledge regarding the physiology and molecular machinery of VGCCs in pituitary somatotrophs. We next discuss the possible involvement of Ca2+ channelopathies in pituitary disease and the potential use of Ca2+ channel blockers to treat pituitary disease. Various types of VGCCs exist in pituitary cells. However, because L-type Ca2+ channels (LTCCs) contribute the major component to Ca2+ influx in somatotrophs, lactotrophs, and corticotrophs, we focused on these channels. An increasing number of studies in recent years have linked genetic missense mutations in LTCCs to diseases of the human cardiovascular, nervous, and endocrine systems. These disease-associated genetic mutations occur at homologous functional positions (activation gates) in LTCCs. Thus, it is plausible that similar homologous missense mutations in pituitary LTCCs can cause abnormal hormone secretion and underlying pituitary disorders. The existence of LTCCs in pituitary cells opens questions about their sensitivity to dihydropyridines, a group of selective LTCC blockers. The dihydropyridine sensitivity of pituitary cells, as with any other excitable cell, depends primarily on two parameters: the pattern of their electrical activity and the dihydropyridine sensitivity of their LTCC isoforms. These two parameters are discussed in detail in relation to somatotrophs. These discussions are also relevant to lactotrophs and corticotrophs. High dihydropyridine sensitivity may facilitate their use as drugs to treat pituitary oversecretion disorders such as acromegaly, hyperprolactinemia, and Cushing disease.
Insights
Voltage-gated calcium channels (VGCCs) are crucial for growth hormone (GH) secretion. Mutations in L-type calcium channels (LTCCs) may cause pituitary disorders, and LTCC blockers could treat hormone overproduction.
Area of Science:
- Endocrinology
- Molecular Physiology
- Neuroscience
Background:
- Voltage-gated calcium channels (VGCCs) regulate hormone secretion in the pituitary gland.
- L-type calcium channels (LTCCs) are the primary contributors to calcium influx in pituitary somatotrophs, lactotrophs, and corticotrophs.
Purpose of the Study:
- To review the physiology and molecular mechanisms of VGCCs in pituitary somatotrophs.
- To explore the role of calcium channelopathies in pituitary diseases.
- To discuss the therapeutic potential of calcium channel blockers for pituitary disorders.
Main Methods:
- Literature review focusing on VGCCs, particularly LTCCs, in pituitary cells.
- Analysis of genetic mutations in LTCCs and their link to endocrine diseases.
- Discussion of dihydropyridine sensitivity in pituitary cells.
Main Results:
- Genetic missense mutations in LTCCs are associated with cardiovascular, nervous, and endocrine diseases.
- Homologous mutations in pituitary LTCCs may lead to abnormal hormone secretion and pituitary disorders.
- Pituitary cell sensitivity to dihydropyridines depends on electrical activity and LTCC isoforms.
Conclusions:
- LTCCs are critical for pituitary hormone secretion and are implicated in pituitary disorders.
- Dihydropyridine sensitivity suggests potential therapeutic applications for LTCC blockers in treating pituitary oversecretion conditions like acromegaly, hyperprolactinemia, and Cushing disease.
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