The domain within the otic vesicle (OV) known as the neurosensory domain (NSD), contains cells that will give rise to the hair and support cells of the otic sensory organs, as well as the neurons that form the cochleovestibular ganglion (CVG). The molecular dynamics that occur at the NSD boundary relative to adjacent OV cells is not well defined. The Tbx1 transcription factor gene expression pattern is complementary to the NSD, and inactivation results in expansion of the NSD and expression of the Notch ligand, Jag1 mapping, in part of the NSD. To shed light on the role of Jag1 in NSD development, as well as to test whether Tbx1 and Jag1 might genetically interact to regulate this process, we inactivated Jag1 within the Tbx1 expression doma...
Within the mammalian inner ear there are six separate sensory regions that subserve the functions of...
AbstractTbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has ...
At least five bHLH genes regulate cell fate determination and differentiation of sensory neurons, ha...
The T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutants have ...
AbstractThe T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutan...
All epithelial components of the inner ear, including sensory hair cells and innervating afferent ne...
Most 22q11.2 deletion syndrome (22q11DS) patients have middle and outer ear anomalies, whereas some ...
Tbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has discover...
Little is known about the role of TBX1 in post-otocyst stages of inner ear development. Here, we rep...
TBX1 is thought to be a critical gene in the pathogenesis of del22q11/DiGeorge syndrome (DGS). Morph...
The development, maturation, and viability of inner ear neurosensory cells depend on the spatiotempo...
Identification of transcription factors involved in a complex network regulating the development of ...
In mammals, six separate sensory regions in the inner ear are essential for hearing and balance func...
Analysis of conditional loss-of-function mutants demonstrated that Tbx2 and Tbx3 are individually an...
Transcriptional regulatory networks are essential during the formation and differentiation of organs...
Within the mammalian inner ear there are six separate sensory regions that subserve the functions of...
AbstractTbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has ...
At least five bHLH genes regulate cell fate determination and differentiation of sensory neurons, ha...
The T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutants have ...
AbstractThe T-box transcription factor Tbx1 is required for inner ear morphogenesis. Tbx1 null mutan...
All epithelial components of the inner ear, including sensory hair cells and innervating afferent ne...
Most 22q11.2 deletion syndrome (22q11DS) patients have middle and outer ear anomalies, whereas some ...
Tbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has discover...
Little is known about the role of TBX1 in post-otocyst stages of inner ear development. Here, we rep...
TBX1 is thought to be a critical gene in the pathogenesis of del22q11/DiGeorge syndrome (DGS). Morph...
The development, maturation, and viability of inner ear neurosensory cells depend on the spatiotempo...
Identification of transcription factors involved in a complex network regulating the development of ...
In mammals, six separate sensory regions in the inner ear are essential for hearing and balance func...
Analysis of conditional loss-of-function mutants demonstrated that Tbx2 and Tbx3 are individually an...
Transcriptional regulatory networks are essential during the formation and differentiation of organs...
Within the mammalian inner ear there are six separate sensory regions that subserve the functions of...
AbstractTbx1 is required for ear development in humans and mice. Gene manipulation in the mouse has ...
At least five bHLH genes regulate cell fate determination and differentiation of sensory neurons, ha...