A TRPM7 mutation linked to familial trigeminal neuralgia: Omega current and hyperexcitability of trigeminal ganglion neurons

Author:

Gualdani Roberta1ORCID,Gailly Philippe1ORCID,Yuan Jun-Hui23ORCID,Yerna Xavier1ORCID,Di Stefano Giulia4,Truini Andrea4ORCID,Cruccu Giorgio4,Dib-Hajj Sulayman D.23ORCID,Waxman Stephen G.23ORCID

Affiliation:

1. Institute of Neuroscience, Université catholique de Louvain, B-1200 Brussels, Belgium

2. Department of Neurology, Yale School of Medicine, New Haven, CT 06520

3. Center for Neuroscience and Regeneration Research, Veterans Affairs Connecticut Healthcare, West Haven, CT 06515

4. Department of Human Neuroscience, Sapienza University, 00185 Rome, Italy

Abstract

Trigeminal neuralgia (TN) is a unique pain disorder characterized by intense paroxysmal facial pain within areas innervated by the trigeminal nerve. Although most cases of TN are sporadic, familial clusters of TN suggest that genetic factors may contribute to this disorder. Whole-exome sequencing in patients with TN reporting positive family history demonstrated a spectrum of variants of ion channels including TRP channels. Here, we used patch-clamp analysis and Ca 2+ and Na + imaging to assess a rare variant in the TRPM7 channel, p.Ala931Thr, within transmembrane domain 3, identified in a man suffering from unilateral TN. We showed that A931T produced an abnormal inward current carried by Na + and insensitive to the pore blocker Gd 3+ . Hypothesizing that replacement of the hydrophobic alanine at position 931 with the more polar threonine destabilizes a hydrophobic ring, near the voltage sensor domain, we performed alanine substitutions of F971 and W972 and obtained results suggesting a role of A931-W972 hydrophobic interaction in S3-S4 hydrophobic cleft stability. Finally, we transfected trigeminal ganglion neurons with A931T channels and observed that expression of this TRPM7 variant lowers current threshold and resting membrane potential, and increases evoked firing activity in TG neurons. Our results support the notion that the TRPM7-A931T mutation located in the S3 segment at the interface with the transmembrane region S4, generates an omega current that carries Na + influx in physiological conditions. A931T produces hyperexcitability and a sustained Na + influx in trigeminal ganglion neurons that may underlie pain in this kindred with trigeminal neuralgia.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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