Lack of Oncomodulin Increases ATP-Dependent Calcium Signaling and Susceptibility to Noise in Adult Mice
Yang, Y.; Jeng, J.-Y.; Murtha, K.; Climer, L.; Ceriani, F. E.; Sese, W. D.; Hornak, A. J.; Sleiman, K. C.; Stahl, I.; Liberman, M. C.; Marcotti, W.; Simmons, D. D.
Show abstract
Tight regulation of Ca2+ is crucial for the function of cochlear outer hair cells (OHCs). Dysregulation of Ca2+ homeostasis in OHCs is associated with impaired hearing and contributes to increased vulnerability to insults such as noise exposure. Ca2+ signaling in developing OHCs is modulated by oncomodulin (OCM), an EF-hand calcium-binding protein. Here, we investigated whether the lack of OCM disrupts the control of intracellular Ca2+ in mature OHCs, and influences vulnerability to acoustic injury. Using young adult CBA/CaJ mice, we found that OHCs from Ocm-knockout (Ocm-/-) mice showed normal biophysical profiles, electromotile responses, and synaptic innervation compared to littermate controls. Moderate noise exposure (95 dB SPL, 2 hrs) caused temporary threshold shifts in Ocm+/+ and Ocm-/- mice. However, while Ocm+/+ fully recovered thresholds 2 weeks after noise exposure, Ocm-/- mice showed permanent threshold shifts. Additionally, Ocm-/- mice had auditory brainstem responses with highly variable latencies and amplitudes both before and after noise exposure compared to Ocm+/+ mice. Using a genetically encoded Ca2+ sensor (GCaMP6s) expressed in Ocm+/+ and Ocm-/- OHCs, we found that prolonged noise exposure (95 dB SPL, 9 hrs) significantly increased GCaMP6s fluorescence, ATP-induced Ca2+ signaling and also caused greater threshold shifts in Ocm-/- compared to Ocm+/+ OHCs. However, prolonged noise exposure had no significant change in the number of presynaptic OHC ribbons in either Ocm+/+ or Ocm-/- mice. We assessed whether the ATP-induced responses were due to changes in P2X2 receptor expression. Prior to noise exposure, P2X2 expression was higher in the cochlea of Ocm-/- mice compared to Ocm+/+ mice. Following prolonged noise, P2X2 receptors were upregulated in the cochlea of Ocm+/+ but not in the Ocm-/- mice, which retained their pre-noise expression level. We propose that the lack of OCM increases susceptibility to cochlear pathology and that purinergic signaling and dysregulation of cytosolic Ca2+ homeostasis likely contribute to early onset hearing loss in the Ocm-/- mice.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Strengthening Medial Olivocochlear Feedback Reduces the Developmental Impact of Early Noise Exposure 98%
- KSR1 Knockout Mouse Model Demonstrates MAPK Pathway's Key Role in Cisplatin- and Noise-induced Hearing Loss 96%
- EBF1 limits the numbers of cochlear hair and supporting cells and forms the scala tympani and spiral limbus during inner ear development 96%
Similar papers in this journal
- Expression of a membrane-targeted fluorescent reporter disrupts auditory hair cell mechanoelectrical transduction and causes profound deafness. 98%
- Outer Hair Cell Function is Normal in βV Spectrin Knockout Mice 97%
- Increased vulnerability to noise exposure of low spontaneous rate type 1C spiral ganglion neuron synapses with inner hair cells (Pre-Print) 97%
Similar papers in this journal
- Repressor element 1-silencing transcription factor deficiency yields profound hearing loss through Kv7.4 channel upsurge in auditory neurons and hair cells 98%
- Differential regulation of hair cell actin cytoskeleton mediated by SRF and MRTFB 97%
- Postsynaptic GluA3 subunits are required for the appropriate assembly of AMPA receptor GluA2 and GluA4 subunits on mammalian cochlear afferent synapses and for presynaptic ribbon modiolar-pillar morphological distinctions 96%
Similar papers in this journal
- Prolonged dexamethasone exposure enhances zebrafish lateral-line regeneration but disrupts mitochondrial homeostasis and hair cell function 93%
- Discovering age- and sex-specific genetic risk factors in sensorineural hearing loss: genome-wide evidence from large-scale biobank studies 93%
- Expression and Neurotransmitter Association of the Synaptic Calcium Sensor Synaptotagmin in the Avian Auditory Brain Stem 92%
Similar papers in this journal
- Deciphering compromised speech-in-noise intelligibility in older listeners: the role of cochlear synaptopathy 94%
- Rescuing auditory temporal processing with a novel augmented acoustic environment in an animal model of congenital hearing loss 94%
- Using cortical neuron markers to target cells in the dorsal cochlear nucleus 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.