| Literature DB >> 30087623 |
Magdalena Chottova Dvorakova1,2.
Abstract
Neuropeptide W (NPW) and neuropeptide B (NPB) are two structurally and functionally related regulatory peptides, which are highly expressed in several brain regions and, additionally, in some peripheral tissues. Nevertheless, their distributions in the tissues are not similar. They act on target tissues via two subtypes of G protein-coupled receptors which are designated as NPBWR1 (GPR7) and NPBWR2 (GPR8), respectively, and possess different binding affinities. NPB activates NPBWR1, whereas NPW stimulates both the receptors with similar potency. Both of these peptides takes a part in the central regulation of neuroendocrine axes, feeding behavior, energy homeostasis, cardiovascular functions, circadian rhythm, pain sensation, modulation of inflammatory pain, and emotions. Over the past few years, studies have shown that NPB is also involved in sleep regulation. On the contrary, NPW participates in regulation of vascular myogenic tone, inhibits gastric tension sensitive vagal afferents and insulin secretion. Also, expression of NPW in the stomach is regulated by feeding. Abovementioned findings clearly demonstrate the functional diversity among NPW versus NPB signaling systems. In this review, signal transduction pathways of NPW/NPB are critically evaluated and observed together with mapping of expression of their signaling systems.Entities:
Keywords: NPB; NPBWR1; NPBWR2; NPW; function; localization
Year: 2018 PMID: 30087623 PMCID: PMC6067035 DOI: 10.3389/fphys.2018.00981
Source DB: PubMed Journal: Front Physiol ISSN: 1664-042X Impact factor: 4.566
Localization of NPB and NPW in the telencephalon and peripheral nervous system.
| RT-PCR | ISH | IHC | Reference | ||||
|---|---|---|---|---|---|---|---|
| NPB | NPW | NPB | NPW | NPB | NPW | ||
| Cerebral hemispheres | C, P | C | |||||
| Hippocampus | Hu, Rt, P | Hu, P | M, Rt | M | Rt | Rt | |
| Amygdala | Hu | Hu | M, Rt | M | Rt, M | ||
| Bed nucleus of the stria terminalis | Rt, M | ||||||
| Septum | Rt | ||||||
| Striatum | Rt | Rt | |||||
| Substantia nigra | Rt | ||||||
| Cerebral cortex | Hu, Rt | P, Hu | Rt | ||||
| Corpus callosum | Hu | Hu | |||||
| Choroid plexus | Hu | Hu | |||||
| Spinal cord | Hu, C, Rt, P | P, C | Rt | ||||
| Trigeminal nerve | M | ||||||
| Olfactory bulb | P | P | |||||
| Optic nerve | Hu, Rt | ||||||
| DRG | Hu | Rt | |||||
Localization of NPB and NPW in the forebrain.
| RT-PCR | ISH | IHC | RIA | Reference | |||||
|---|---|---|---|---|---|---|---|---|---|
| NPB | NPW | NPB | NPW | NPB | NPW | NPB | NPW | ||
| Lateral habenular nucleus | M | ||||||||
| Thalamus | Hu, Rt | ||||||||
| Anteromedial thalamic nucleus | Rt | ||||||||
| Dorsal thalamic nucleus | Rt | Rt | |||||||
| Hypothalamus | Rt, C, Hu, P | Rt, C, M, P | Rt | Rt | Rt | ||||
| Paraventricular nucleus | Rt | M | Rt | Rt, P | |||||
| Supraoptic nucleus | Rt, M | Rt, P | |||||||
| Periventricular nucleus | Rt | ||||||||
| Suprachiasmatic nucleus | Rt | ||||||||
| Median eminence | Rt | Rt | |||||||
| Lateral hypothalamic area | Rt | Rt | Rt | Rt, P | |||||
| Preoptic area | Rt | Rt | |||||||
| Dorsomedial hypothalamic nucleus | Rt | Rt, M | Rt, P | ||||||
| Ventromedial nucleus | Rt | Rt, M | Rt, M | Rt, P | |||||
| Arcuate nucleus | Rt | Rt | Rt, M | Rt, P | |||||
| Tuberal nucleus | Rt | ||||||||
| Premammillary nucleus | Rt | ||||||||
| Pituitary gland | Rt, C | Rt, C, P | Rt | Rt | |||||
Localization of NPB and NPW in the midbrain.
| RT-PCR | ISH | IHC | Reference | ||||
|---|---|---|---|---|---|---|---|
| NPB | NPW | NPB | NPW | NPB | NPW | ||
| Midbrain | C, Rt, P | C, P | |||||
| Colliculi | Hu | Rt | |||||
| Periaqueductal gray | M, Rt | M, Rt | |||||
| Dorsal raphe nucleus | Rt | M | Rt | Rt | |||
| Ventral tegmental area | M, Rt | Rt | Rt | ||||
| Rostral linear nucleus of raphe | Rt | ||||||
| Interfascicular nucleus | Rt | ||||||
| Interpeduncular nucleus | Rt | ||||||
| Substantia nigra | Hu | Hu | Rt | ||||
| Edinger–Westphal nucleus | M, Rt | M, Rt | Rt | Rt | |||
| Accessory abducens/facial nucleus | Rt | ||||||
| Hypoglossal nucleus | Rt | ||||||
| Parabrachial nucleus | Rt | ||||||
Localization of NPB and NPW in the hindbrain.
| RT-PCR | ISH | IHC | RIA | Reference | |||||
|---|---|---|---|---|---|---|---|---|---|
| NPB | NPW | NPB | NPW | NPB | NPW | NPB | NPW | ||
| Hindbrain | C | C | |||||||
| Medulla oblongata | Rt, P | P | Rt | ||||||
| Inferior olive subnucleus | M | ||||||||
| Prepositus nucleus | Rt | ||||||||
| Pons | Hu | P | |||||||
| Trigeminal nerve nucleus | Hu | M | |||||||
| Parabrachial nucleus | M | Rt | |||||||
| Locus coeruleus | M, Rt | ||||||||
| Subcoeruleus nucleus | M | ||||||||
| Caudal nucleus | Hu | ||||||||
| Cerebellum | Hu, C, Rt, P | Hu, C, P | Rt | Rt | |||||
Role of NPB and NPW in regulation of endocrine functions.
| NPB | NPW | Reference | |
|---|---|---|---|
| Receptors affinity | NPBWR1 > NPBWR2 | NPBWR2 > NPBWR1 | |
| Endocrine function | |||
| Basal corticosterone secretion “ | - (r) | ↑ (r) | |
| Basal cortisol secretion “ | ↑ (h) | ↑ (h) | |
| Basal aldosterone secretion “ | - (r, h) | ↑ (r); - (h) | |
| ACTH stimulated aldosterone secretion “ | ↑ (r) | ↑ (r) | |
| Plasma concentration of corticosterone “ | ↑ (r) | ↑ (r) | |
| Plasma concentration of insulin | – (r) | ↓ (r) | |
| Plasma concentration of thyroxin | ↑ (r) | – (r) | |
| Plasma concentration of parathyroid hormone | ↑ (r) | ↑ (r) | |
| Plasma concentration of testosterone | ↑ (r) | ↑ (r) | |
| Plasma concentration of estradiol | – (r) | ↑ (r) | |
| Leptin secretion from adipocytes “ | ↓ (r) | ↓ (r) | |
| Plasma concentration of leptin | – (r) | ↓ (r) | |
| Plasma concentration of ACTH | – (r) | ↑ (r) | |
| Plasma concentration of prolactin | n.d. | ↑ (r) | |
| Plasma concentration of growth hormone | n.d. | ↓ (r) |