Abstract
One feature of neuropathic pain is a reduced GABAergic inhibitory function. Nociceptors have been suggested to play a key role in this process. However, the mechanisms behind nociceptor-mediated modulation of GABA signaling remain to be elucidated. Here we describe the identification of GINIP, aGαi-interacting protein expressed in two distinct subsets of nonpeptidergic nociceptors. GINIP null mice develop a selective and prolonged mechanical hypersensitivity in models of inflammation and neuropathy. GINIP null mice show impaired responsiveness to GABAB, but not to delta or mu opioid receptor agonist-mediated analgesia specifically in the sparednerve injury (SNI) model. Consistently, GINIP-deficientdorsal root ganglia neurons had lower baclofen-evoked inhibition of high-voltage-activated calcium channels and a defective presynaptic inhibition of lamina IIi interneurons. These results further support the role of unmyelinated C fibers in injury-induced modulation of spinal GABAergic inhibition and identify GINIP as a key modulator of peripherally evoked GABAB-receptors signaling.
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CITATION STYLE
Gaillard, S., Lo, L. R., Mantilleri, A., Hepp, R., Urien, L., Malapert, P., … Moqrich, A. (2014). GINIP, a Gαi-Interacting protein, functions as a key modulator of peripheral GABAB receptor-mediated analgesia. Neuron, 84(1), 123–136. https://doi.org/10.1016/j.neuron.2014.08.056
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