Melanocortin 4 receptor activates ERK-cFos pathway to increase brain-derived neurotrophic factor expression in rat astrocytes and hypothalamus.
Ramírez. D D; Saba. J J; Carniglia. L L; Durand. D D; Lasaga. M M; Caruso. C C
Key Findings
- MC4R activation by the α‑MSH analog NDP‑MSH increases BDNF expression in rat astrocytes.
- The BDNF boost requires the ERK‑RSK‑cFos pathway and depends on PI3K and Src, but not on p38 or JNK signaling.
- Injecting α‑MSH in rats also raises BDNF and activates ERK and cFos in the hypothalamus, confirming the effect in vivo.
Practical Outcomes
- If melanotan‑I can similarly activate MC4R, it might help increase brain BDNF, which could support cognition and neuro‑protection. However, the findings are pre‑clinical, so there’s no proven dosage or safety data for humans. Enthusiasts should treat this as a mechanistic hint rather than a ready‑to‑use protocol and await human studies before applying it.
Summary
The study shows that activating the brain's MC4R receptor with an alpha‑MSH‑like peptide (similar to melanotan‑I) can raise levels of BDNF, a protein that supports brain health, through a specific ERK‑cFos signaling chain. This was demonstrated in rat brain cells and in live rats, but no human data or dosing guidelines are provided.
Abstract
Melanocortins are neuropeptides with well recognized anti-inflammatory and anti-apoptotic effects in the brain. Of the five melanocortin receptors (MCR), MC4R is abundantly expressed in the brain and is the only MCR present in astrocytes. We have previously shown that MC4R activation by the α-melanocyte stimulating hormone (α-MSH) analog, NDP-MSH, increased brain-derived neurotrophic factor (BDNF) expression through the classic cAMP-Protein kinase A-cAMP responsive element binding protein pathway in rat astrocytes. Now, we examined the participation of the mitogen activated protein kinases pathway in MC4R signaling. Rat cultured astrocytes treated with NDP-MSH 1 µM for 1 h showed increased BDNF expression. Inhibition of extracellular signal-regulated kinase (ERK) and ribosomal p90 S6 kinase (RSK), an ERK substrate, but not of p38 or JNK, prevented the increase in BDNF expression induced by NDP-MSH. Activation of MC4R increased cFos expression, a target of both ERK and RSK. ERK activation by MC4R involves cAMP, phosphoinositide-3 kinase (PI3K) and the non receptor tyrosine kinase, Src. Both PI3K and Src inhibition abolished NDP-MSH-induced BDNF expression. Moreover, we found that intraperitoneal injection of α-MSH induces BDNF and MC4R expression and activates ERK and cFos in male rat hypothalamus. Our results show for the first time that MC4R-induced BDNF expression in astrocytes involves ERK-RSK-cFos pathway which is dependent on PI3K and Src, and that melanocortins induce BDNF expression and ERK-cFos activation in rat hypothalamus.
Study Information
pubmed
2015
2015-04-16T00:00:00.000Z
10.1016/j.mce.2015.04.008
37
56