Schwan cells (SCs) synthesize GABA and express GABA receptors, possessing functional roles in cell differentiation, proliferation and myelination. GABA classically inhibits synaptic transmission in the central nervous system while its function in peripheral axons is unclear. Therefore, we performed an electrophysiological characterization of GABAA receptors in peripheral axons, concentrating on unmyelinated C-fibers. GABAA receptor activation resulted in axonal depolarization. Using conditional NaV1.8 GABAA-β3 null mice we demonstrated that this effect was mediated by GABAA receptors and restricted to nociceptors. We functionally identified axonal GABAA as a novel player in neuron-glia cross talk by demonstrating that axonal GABAA can be modulated directly and indirectly by endogenous agonists, such as GABA and the neuroactive steroid allopregnanolone (ALLO) synthesized by Schwann cells. We showed that endogenous GABA can mitigate the loss of axonal excitability observed in C-fibre nociceptors during sustained firing. Furthermore, ALLO exerts dual actions on C-fibers excitability. On the one hand, ALLO allosterically modulates axonal GABAA receptors increasing the efficacy of GABA agonists. Over a longer time course, ALLO activates a paracrine mechanism able to desensitize GABAA at a later stage. Indeed, ALLO causes the enhancement of BDNF production by SCs and the subsequent trk-B mediated up-regulation of PKCε in DRG neurons, leading to GABAA phosphorylation and desensitization. Overall, we suggest that SCs are actively involved in the local regulation of peripheral nociceptive signaling along peripheral axons targeting axonal GABAA receptors through the synthesis of GABA, ALLO and BDNF.

Peripheral nervous system glia modulates excitability of nociceptive axons via GABA-A receptor / V. Bonalume, R.W. Carr, L. Caffino, A. Faroni, L.F. Castelnovo, J. Hu, S. Liu, F. Fumagalli, M. Schmelz, V. Magnaghi. - In: GLIA. - ISSN 1098-1136. - 67:suppl. 1(2019 Jul), pp. E706-E707. ((Intervento presentato al 14. convegno European Meeting onGl ial Cells in Health and Disease tenutosi a Porto nel 2016.

Peripheral nervous system glia modulates excitability of nociceptive axons via GABA-A receptor

V. Bonalume
Primo
Investigation
;
L. Caffino
Investigation
;
L.F. Castelnovo
Investigation
;
F. Fumagalli
Writing – Original Draft Preparation
;
V. Magnaghi
Ultimo
Writing – Review & Editing
2019

Abstract

Schwan cells (SCs) synthesize GABA and express GABA receptors, possessing functional roles in cell differentiation, proliferation and myelination. GABA classically inhibits synaptic transmission in the central nervous system while its function in peripheral axons is unclear. Therefore, we performed an electrophysiological characterization of GABAA receptors in peripheral axons, concentrating on unmyelinated C-fibers. GABAA receptor activation resulted in axonal depolarization. Using conditional NaV1.8 GABAA-β3 null mice we demonstrated that this effect was mediated by GABAA receptors and restricted to nociceptors. We functionally identified axonal GABAA as a novel player in neuron-glia cross talk by demonstrating that axonal GABAA can be modulated directly and indirectly by endogenous agonists, such as GABA and the neuroactive steroid allopregnanolone (ALLO) synthesized by Schwann cells. We showed that endogenous GABA can mitigate the loss of axonal excitability observed in C-fibre nociceptors during sustained firing. Furthermore, ALLO exerts dual actions on C-fibers excitability. On the one hand, ALLO allosterically modulates axonal GABAA receptors increasing the efficacy of GABA agonists. Over a longer time course, ALLO activates a paracrine mechanism able to desensitize GABAA at a later stage. Indeed, ALLO causes the enhancement of BDNF production by SCs and the subsequent trk-B mediated up-regulation of PKCε in DRG neurons, leading to GABAA phosphorylation and desensitization. Overall, we suggest that SCs are actively involved in the local regulation of peripheral nociceptive signaling along peripheral axons targeting axonal GABAA receptors through the synthesis of GABA, ALLO and BDNF.
Settore BIO/09 - Fisiologia
Settore BIO/14 - Farmacologia
lug-2019
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/669565
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