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Specific regulation of mechanical nociception by Gβ5 involves GABA-B receptors
Mritunjay Pandey, Jian-Hua Zhang, Poorni R. Adikaram, Claire Kittock, Nicole Lue, Adam Awe, Katherine Degner, Nirmal Jacob, Jenna Staples, Rachel Thomas, Allison B. Kohnen, Sundar Ganesan, Juraj Kabat, Ching-Kang Chen, William F. Simonds
Mritunjay Pandey, Jian-Hua Zhang, Poorni R. Adikaram, Claire Kittock, Nicole Lue, Adam Awe, Katherine Degner, Nirmal Jacob, Jenna Staples, Rachel Thomas, Allison B. Kohnen, Sundar Ganesan, Juraj Kabat, Ching-Kang Chen, William F. Simonds
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Research Article Neuroscience

Specific regulation of mechanical nociception by Gβ5 involves GABA-B receptors

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Abstract

Mechanical, thermal, and chemical pain sensation is conveyed by primary nociceptors, a subset of sensory afferent neurons. The intracellular regulation of the primary nociceptive signal is an area of active study. We report here the discovery of a Gβ5-dependent regulatory pathway within mechanical nociceptors that restrains antinociceptive input from metabotropic GABA-B receptors. In mice with conditional knockout (cKO) of the gene that encodes Gβ5 (Gnb5) targeted to peripheral sensory neurons, we demonstrate the impairment of mechanical, thermal, and chemical nociception. We further report the specific loss of mechanical nociception in Rgs7-Cre+/– Gnb5fl/fl mice but not in Rgs9-Cre+/– Gnb5fl/fl mice, suggesting that Gβ5 might specifically regulate mechanical pain in regulator of G protein signaling 7–positive (Rgs7+) cells. Additionally, Gβ5-dependent and Rgs7-associated mechanical nociception is dependent upon GABA-B receptor signaling since both were abolished by treatment with a GABA-B receptor antagonist and since cKO of Gβ5 from sensory cells or from Rgs7+ cells potentiated the analgesic effects of GABA-B agonists. Following activation by the G protein–coupled receptor Mrgprd agonist β-alanine, enhanced sensitivity to inhibition by baclofen was observed in primary cultures of Rgs7+ sensory neurons harvested from Rgs7-Cre+/– Gnb5fl/fl mice. Taken together, these results suggest that the targeted inhibition of Gβ5 function in Rgs7+ sensory neurons might provide specific relief for mechanical allodynia, including that contributing to chronic neuropathic pain, without reliance on exogenous opioids.

Authors

Mritunjay Pandey, Jian-Hua Zhang, Poorni R. Adikaram, Claire Kittock, Nicole Lue, Adam Awe, Katherine Degner, Nirmal Jacob, Jenna Staples, Rachel Thomas, Allison B. Kohnen, Sundar Ganesan, Juraj Kabat, Ching-Kang Chen, William F. Simonds

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Figure 4

Knockout of Gnb5 from Rgs7+ neurons specifically impairs mechanical nociception and expression of Rgs7, Gnb5, Mrgprd, and Th in sensory neurons.

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Knockout of Gnb5 from Rgs7+ neurons specifically impairs mechanical noci...
(A–D) Behavioral testing of nociception in littermates with either the Gnb5fl/fl or Rgs7-Cre+/– Gnb5fl/fl genotypes, as indicated. (A) Hot plate testing (53°C). (B) Eye wipe testing with the Trpv1 agonist capsaicin. (C) Eye wipe testing of chemical nociception with mustard oil. (D) Von Frey filament behavioral testing of mechanical nociception. (E–K) Representative images of RNAscope analysis of transcripts for genes shown (E–H): Gnb5, Th, and Mrgprd are in red; Rgs7 is in yellow. The colocalization of Rgs7 mRNA with that of Gnb5, Th, and Mrgprd is shown (I–K). (L–O) Clustering analysis and UMAP visualization of 5,200 DRG expressing 1 or more of the 4 genes above obtained from RNAscope experiments. The text colors in the lower right part of each figure correspond to individual cell coloring, indicating expression of that transcript, or combination of transcripts, in that cell. (P) Histogram illustrating the percentages of colocalized genes as shown. For A–D, the genotype of the mouse being tested was masked. For A–C, the 2-tailed unpaired Student’s t test of statistical significance was employed, and for D the Mann-Whitney test was employed, with bars indicating mean ± SEM. For A–D, n = number of mice from each genotype tested (for A, Gnb5fl/fl n = 8, Rgs7-Cre+/–; Gnb5fl/fl n = 6; for B, Gnb5fl/fl n = 8, Rgs7-Cre+/–; Gnb5fl/fl n = 8; for C, Gnb5fl/fl n = 8, Rgs7-Cre+/–; Gnb5fl/fl n = 8; for D, Gnb5fl/fl n = 8, Rgs7-Cre+/–; Gnb5fl/fl n = 8). P values: A, P = 0.69; B, P = 0.21; C, P = 0.59; D, ***P = 0.0008.

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