Related Experiment Video
Updated: Jun 28, 2025

Author Spotlight: Hypothalamic Neural Mechanism Insights
Published on: August 4, 2023
Canonical transient receptor potential channels and hypothalamic control of homeostatic functions
Martin J Kelly1,2, Edward J Wagner3
1Department of Chemical Physiology and Biochemistry, Oregon Health & Science University, Portland, Oregon, USA.
Abstract:
Recent molecular biological and electrophysiological studies have identified multiple transient receptor potential (TRP) channels in hypothalamic neurons as critical modulators of homeostatic functions. In particular, the canonical transient receptor potential channels (TRPCs) are expressed in hypothalamic neurons that are vital for the control of fertility and energy homeostasis. Classical neurotransmitters such as serotonin and glutamate and peptide neurotransmitters such as kisspeptin, neurokinin B and pituitary adenylyl cyclase-activating polypeptide signal through their cognate G protein-coupled receptors to activate TPRC 4, 5 channels, which are essentially ligand-gated calcium channels. In addition to neurotransmitters, circulating hormones like insulin and leptin signal through insulin receptor (InsR) and leptin receptor (LRb), respectively, to activate TRPC 5 channels in hypothalamic arcuate nucleus pro-opiomelanocortin (POMC) and kisspeptin (arcuate Kiss1 [Kiss1ARH]) neurons to have profound physiological (excitatory) effects. Besides its overt depolarizing effects, TRPC channels conduct calcium ions into the cytoplasm, which has a plethora of downstream effects. Moreover, not only the expression of Trpc5 mRNA but also the coupling of receptors to TRPC 5 channel opening are regulated in different physiological states. In particular, the mRNA expression of Trpc5 is highly regulated in kisspeptin neurons by circulating estrogens, which ultimately dictates the firing pattern of kisspeptin neurons. In obesity states, InsRs are "uncoupled" from opening TRPC 5 channels in POMC neurons, rendering them less excitable. Therefore, in this review, we will focus on the critical role of TRPC 5 channels in regulating the excitability of Kiss1ARH and POMC neurons in different physiological and pathological states.
Insights
Transient Receptor Potential Canonical (TRPC) 5 channels in the hypothalamus regulate fertility and energy balance. Their function is altered in obesity, impacting neuronal excitability.
Area of Science:
- Neuroscience
- Molecular Biology
- Endocrinology
Background:
- Transient Receptor Potential (TRP) channels, particularly TRPC 5, are found in hypothalamic neurons.
- These channels are crucial for regulating homeostatic functions like fertility and energy balance.
- TRPC 5 channels are activated by neurotransmitters and hormones, influencing neuronal activity.
Purpose of the Study:
- To review the critical role of TRPC 5 channels in regulating hypothalamic neuron excitability.
- To examine how TRPC 5 channel function is altered in different physiological and pathological states.
- To focus on the impact of TRPC 5 channels in arcuate nucleus pro-opiomelanocortin (POMC) and kisspeptin (Kiss1ARH) neurons.
Main Methods:
- Molecular biological and electrophysiological studies were reviewed.
- Analysis of TRPC 5 channel expression and function in hypothalamic neurons.
- Investigation of signaling pathways involving G protein-coupled receptors, insulin receptors, and leptin receptors.
Main Results:
- TRPC 5 channels are activated by neurotransmitters and hormones (insulin, leptin) in POMC and Kiss1ARH neurons.
- TRPC channels mediate calcium influx, affecting downstream cellular processes.
- Trpc5 mRNA expression and receptor coupling to TRPC 5 channels are dynamically regulated by physiological states, such as estrogen levels and obesity.
Conclusions:
- TRPC 5 channels are key regulators of Kiss1ARH and POMC neuron excitability.
- Dysregulation of TRPC 5 channels, as seen in obesity (uncoupled InsRs), impairs neuronal function.
- Understanding TRPC 5 channel regulation is vital for comprehending fertility and energy homeostasis.
Related Concept Videos
Primary Motives: Hunger and Thirst
Hunger arises when the brain detects changes in the body's nutrient levels, including glucose, lipids, amino acids, and hormones such as ghrelin and leptin. The hypothalamus plays a central role in hunger regulation. The lateral hypothalamus...
Diencephalon: Hypothalamus and Coordination
The hypothalamus interacts with other brain regions, including the pituitary gland, through a direct physical connection called the hypothalamic-pituitary axis. The hypothalamus receives somatic and visceral inputs and...
Regulation of Food Intake
Thermosensation
Regulation of Hormone Secretion
Humoral...
What is Homeostasis?

