All epithelial components of the inner ear, including sensory hair cells and innervating afferent neurons, arise by patterning and differentiation of epithelial progenitors residing in a simple sphere, the otocyst. Here, we identify the transcriptional repressors TBX2 and TBX3 as novel regulators of these processes in the mouse. Ablation of Tbx2 from the otocyst led to cochlear hypoplasia, whereas loss of Tbx3 was associated with vestibular malformations. The loss of function of both genes (Tbx2/3cDKO) prevented inner ear morphogenesis at midgestation, resulting in indiscernible cochlear and vestibular structures at birth. Morphogenetic impairment occurred concomitantly with increased apoptosis in ventral and lateral regions of Tbx2/3cDKO o...
AbstractThe inner ear epithelium, with its complex array of sensory, non-sensory, and neuronal cell ...
Iroquois genes encode a family of highly conserved TALE homeodomain transcription factors that are i...
Transcriptional regulatory networks are essential during the formation and differentiation of organs...
AbstractThe T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutan...
The T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutants have ...
Analysis of conditional loss-of-function mutants demonstrated that Tbx2 and Tbx3 are individually an...
TBX1 is thought to be a critical gene in the pathogenesis of del22q11/DiGeorge syndrome (DGS). Morph...
Little is known about the role of TBX1 in post-otocyst stages of inner ear development. Here, we rep...
Tbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has discover...
The domain within the otic vesicle (OV) known as the neurosensory domain (NSD), contains cells that ...
AbstractTbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has ...
Most 22q11.2 deletion syndrome (22q11DS) patients have middle and outer ear anomalies, whereas some ...
AbstractThe paired box transcription factor, Pax2, is important for cochlear development in the mous...
Sensorineural hearing loss is a common and currently irreversible disorder, because mammalian hair c...
Gbx2 is a homeobox-containing transcription factor that is related to unplugged in Drosophila. In mi...
AbstractThe inner ear epithelium, with its complex array of sensory, non-sensory, and neuronal cell ...
Iroquois genes encode a family of highly conserved TALE homeodomain transcription factors that are i...
Transcriptional regulatory networks are essential during the formation and differentiation of organs...
AbstractThe T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutan...
The T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutants have ...
Analysis of conditional loss-of-function mutants demonstrated that Tbx2 and Tbx3 are individually an...
TBX1 is thought to be a critical gene in the pathogenesis of del22q11/DiGeorge syndrome (DGS). Morph...
Little is known about the role of TBX1 in post-otocyst stages of inner ear development. Here, we rep...
Tbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has discover...
The domain within the otic vesicle (OV) known as the neurosensory domain (NSD), contains cells that ...
AbstractTbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has ...
Most 22q11.2 deletion syndrome (22q11DS) patients have middle and outer ear anomalies, whereas some ...
AbstractThe paired box transcription factor, Pax2, is important for cochlear development in the mous...
Sensorineural hearing loss is a common and currently irreversible disorder, because mammalian hair c...
Gbx2 is a homeobox-containing transcription factor that is related to unplugged in Drosophila. In mi...
AbstractThe inner ear epithelium, with its complex array of sensory, non-sensory, and neuronal cell ...
Iroquois genes encode a family of highly conserved TALE homeodomain transcription factors that are i...
Transcriptional regulatory networks are essential during the formation and differentiation of organs...