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Driver, E. C.

Publications and source records attributed to Driver, E. C..

2 recordsLinked to original sources

CASZ1 regulates the rate at which outer hair cells mature and is required for hearing

The transcriptional activator ATOH1 is a master regulator of the development of mechanosensory hair-cells (HCs) in the ear. We report that the ATOH1 target gene Casz1 encodes a transcription factor that regulates the rate of outer HC (OHC) maturation by gene repression. Genetic deletion of Casz1 during (but not after) development of the mouse cochlea caused: hearing loss; abnormal organization of mechanosensory stereocilia bundles in OHCs; abnormally low F-actin density in OHC cuticular plates; progressive loss of OHCs; and mild morphological alterations in inner HCs. RNA sequencing revealed that Casz1 deletion delayed downregulation of genes expressed in immature OHCs, including the actin regulator-encoding gene Coro2a, and accelerated upregulation of genes expressed in mature OHCs. Coro2a knockdown restored the density of cuticular plate F-actin in Casz1 mutant OHCs. Our data indicate that CASZ1 regulates transcriptional and morphological maturation of OHCs, and that CASZ1 in maturing HCs is necessary for hearing.

developmental biology↗

Jag1 represses Notch activation in lateral supporting cells and inhibits an outer hair cell fate in the medial compartment of the developing cochlea

Notch signaling regulates both inner and middle ear morphogenesis and establishes a strict pattern of sensory cells in the organ of Corti in the mammalian cochlea. Patients with Alagille syndrome have impaired Notch signaling ([~]94% with JAG1 mutations) resulting in sensorineural and conductive hearing loss. Here, we investigate the function of Jag1-mediated Notch activation in cochlear patterning and signaling using the Jag1 "Nodder" (Jag1Ndr/Ndr) mouse model of Alagille syndrome. Jag1Ndr/Ndr mice exhibited severe vestibular and auditory deficits and a dose-dependent increase in ectopic inner hair cells and a reduction in outer hair cells. Single cell RNA sequencing of the organ of Corti demonstrated a global dysregulation of genes associated with inner ear development and deafness. Analysis of individual cell types indicated a novel role for Jag1 in repressing Notch activation in lateral supporting cells and revealed a function for Jag1 in gene regulation and development of outer hair cells. Additionally, "outer hair cell-like" SLC26A5 (Prestin) positive cells were present in the medial compartment and pillar cell region of Jag1Ndr/Ndr mice and exhibited location-dependent expression of the inner hair cell fate-regulator Tbx2, revisiting the potency of Tbx2 in driving inner hair cell commitment in "outer hair cell-like" cells in the Jag1-mutant IHC compartment. Our data reveals a novel role for Jag1 in repressing Notch activation in lateral supporting cells and highlights involvement for Notch signaling in inner versus outer hair cell specification and positioning.

developmental biology↗