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A Mechanosensitive GPCR at vestibular kinocilium is required for normal balance

Zhou, S.-H.; Wang, X.-H.; Zhang, Q.-Y.; Xu, J.-N.; Wang, J.-L.; Zhang, W.-F.; Ding, J.-H.; Wang, M.-W.; Wang, Y.-Q.; Han, P.; Chai, R.-J.; Liu, W.-W.; Yu, X.; Sun, Y.; Yang, Z.; Sun, J.

2025-12-08 cell biology
10.64898/2025.12.06.692705 bioRxiv
Show abstract

Intracellular calcium increase and neurotransmitter release in vestibular hair cells (VHCs) play central roles in equilibrioception, which is one of the basic senses essential for daily life activities and movement in mammals. Independent of mechano-electrical transduction (MET), whether Gq protein-coupled receptor (GqPCR) signaling participate in the regulation of intracellular calcium dynamics and induce neuronal transmitter release in hair cells remains unknown. We screened mechanosensitive GqPCRs in VHCs and found that a Class C GPCR, metabotropic glutamate receptor 2 (mGlu2), is expressed in kinocilia and is essential for normal balance. Notably, the dispensable role of mGlu2 in normal hearing is consistent with absent of mature kinocilia in cochlea hair cells. Different from the conventional mGlu2-Gi signaling, the sensing of mechanical signals by mGlu2 activates the Gq-PLCD4 pathway, increases intracellular calcium concentration and promotes neurotransmitter release in VHCs. Hair cell-specific deficiency of either Grm2 or Gnaq, or knockdown of Plcd4 expression, but not deficiency of another GqPCR Gpr68, causes significant balance deficits. Reintroduction of mGlu2 into the VHCs of Pou4f3-CreER+/- Grm2fl/fl mice restore vestibular functions. Our study reveals a previously uncharacterized role of GPCR signaling in equilibrioception and provides important insight into kinocilia signaling in VHCs, which are absent in mature cochlear hair cells.

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