Javascript must be enabled to continue!
Spinal astrocyte-neuron lactate shuttle contributes to the PACAP/PAC1 receptor-induced nociceptive behaviors
View through CrossRef
Abstract
Previously, we showed that spinal pituitary adenylate cyclase-activating polypeptide (PACAP)/PAC1 receptor signaling triggers long-lasting pain behaviors through astroglial activation. Since astrocyte-neuron lactate shuttle (ANLS) could be essential for long-term synaptic facilitation, we aimed to elucidate a possible involvement of spinal ANLS in the development of the PACAP/PAC1 receptor-induced pain behaviors. A single intrathecal administration of PACAP induced short-term spontaneous aversive behaviors, followed by long-lasting mechanical allodynia. These pain behaviors were inhibited by DAB, an inhibitor of glycogenolysis, and this inhibition was reversed by simultaneous L-lactate application. In the cultured spinal astrocytes, the PACAP-evoked glycogenolysis and lactate secretion were inhibited by a protein kinase C (PKC) inhibitor, and the PKC inhibitor attenuated the PACAP-induced pain behaviors. Finally, an inhibitor for the monocarboxylate transporters blocked the lactate secretion from the spinal astrocytes and inhibited the PACAP-induced pain behaviors. These results suggested that PAC1 receptor-PKC-ANLS signaling is involved in the PACAP-induced pain behaviors.
Title: Spinal astrocyte-neuron lactate shuttle contributes to the PACAP/PAC1 receptor-induced nociceptive behaviors
Description:
Abstract
Previously, we showed that spinal pituitary adenylate cyclase-activating polypeptide (PACAP)/PAC1 receptor signaling triggers long-lasting pain behaviors through astroglial activation.
Since astrocyte-neuron lactate shuttle (ANLS) could be essential for long-term synaptic facilitation, we aimed to elucidate a possible involvement of spinal ANLS in the development of the PACAP/PAC1 receptor-induced pain behaviors.
A single intrathecal administration of PACAP induced short-term spontaneous aversive behaviors, followed by long-lasting mechanical allodynia.
These pain behaviors were inhibited by DAB, an inhibitor of glycogenolysis, and this inhibition was reversed by simultaneous L-lactate application.
In the cultured spinal astrocytes, the PACAP-evoked glycogenolysis and lactate secretion were inhibited by a protein kinase C (PKC) inhibitor, and the PKC inhibitor attenuated the PACAP-induced pain behaviors.
Finally, an inhibitor for the monocarboxylate transporters blocked the lactate secretion from the spinal astrocytes and inhibited the PACAP-induced pain behaviors.
These results suggested that PAC1 receptor-PKC-ANLS signaling is involved in the PACAP-induced pain behaviors.
Related Results
Spinal astrocyte-neuron lactate shuttle contributes to the pituitary adenylate cyclase-activating polypeptide/PAC1 receptor-induced nociceptive behaviors in mice
Spinal astrocyte-neuron lactate shuttle contributes to the pituitary adenylate cyclase-activating polypeptide/PAC1 receptor-induced nociceptive behaviors in mice
Abstract
We have previously showed that spinal pituitary adenylate cyclase-activating polypeptide (PACAP)/PACAP type 1 (PAC1) receptor signaling triggered long-lasting noci...
The PACAP/PAC1 Receptor System and Feeding
The PACAP/PAC1 Receptor System and Feeding
Pituitary adenylyl cyclase activating polypeptide (PACAP) belongs to the vasoactive intestinal polypeptide (VIP)/secretin/glucagon superfamily. PACAP is present in two forms, PACAP...
Design of peptide-based PAC1 antagonists combining molecular dynamics simulations and a biologically relevant cell-based assay
Design of peptide-based PAC1 antagonists combining molecular dynamics simulations and a biologically relevant cell-based assay
Abstract
The PACAP receptor PAC1 is a G
s
-coupled family B1 GPCR for which the highest-affinity endogenous p...
VIP and PACAP receptors in GtoPdb v.2023.1
VIP and PACAP receptors in GtoPdb v.2023.1
Vasoactive intestinal peptide (VIP) and pituitary adenylate cyclase-activating peptide (PACAP) receptors (nomenclature as agreed by the NC-IUPHAR Subcommittee on Vasoactive Intesti...
Lateral septal PACAP signaling regulates stress and anxiety reactions
Lateral septal PACAP signaling regulates stress and anxiety reactions
Abstract
Severe and/or repeated stress exposure can lead to a number of maladaptive physiological and behavioral changes that contribute to psychiatric illnesses....
Time-Dependent Effects of the Neuropeptide PACAP on Catecholamine Secretion
Time-Dependent Effects of the Neuropeptide PACAP on Catecholamine Secretion
Abstract
—Pituitary adenylyl cyclase-activating polypeptide (PACAP) is a potent endogenous secretagogue for chromaffin cells. We previously reported that PACAP coupled ...
PACAP‐regulated phenylethanolamineN‐methyltransferase gene expression
PACAP‐regulated phenylethanolamineN‐methyltransferase gene expression
J. Neurochem.(2010)115, 1195–1205.AbstractPituitary adenylate cyclase activating polypeptide (PACAP) induces the proximal −893 bp of rat phenylethanolamineN‐methyltransferase (PNMT...
Distribution, organization and expression of genes concerned with anaerobic lactate-utilization in human intestinal bacteria
Distribution, organization and expression of genes concerned with anaerobic lactate-utilization in human intestinal bacteria
Abstract
Lactate accumulation in the human gut is linked to a range of deleterious health impacts. However, lactate is consumed and converted to ...

