A human mutation in the GAT A3 gene results in sensorineural deafness present at birth and since, in man or mouse, no target genes of GAT A3 in the developing inner ear have been identified, the ultimate cause of this deafness is unknown. The transcription factor GAT A3 is expressed in the cochlear but not in the vestibular cells of the cochlear-vestibular ganglion. It is hypothesized that GATA3 defines the cochlear fate and regulates the expression of genes that specify cell type, including the formation of specific connections between the ear and the central auditory system. To test whether GAT A3 is necessary for ganglion neuron development and function, GATA3 will be deleted specifically from the cochlear-vestibular ganglion cells using Cre-lox technology. The cellular consequences of GATA3 loss will be examined using a variety of techniques to label neurons and their processes; alterations in various molecular markers will further help define GATA3's action. Any changes observed will be correlated with effects on hearing and balance, using behavioral assays and basic electrophysiology. ? ?

Agency
National Institute of Health (NIH)
Institute
National Institute on Deafness and Other Communication Disorders (NIDCD)
Type
Predoctoral Individual National Research Service Award (F31)
Project #
5F31DC007775-03
Application #
7278126
Study Section
Communication Disorders Review Committee (CDRC)
Program Officer
Cyr, Janet
Project Start
2005-09-01
Project End
2008-06-30
Budget Start
2007-09-01
Budget End
2008-06-30
Support Year
3
Fiscal Year
2007
Total Cost
$24,773
Indirect Cost
Name
Harvard University
Department
Biology
Type
Schools of Medicine
DUNS #
047006379
City
Boston
State
MA
Country
United States
Zip Code
02115
Appler, Jessica M; Lu, Cindy C; Druckenbrod, Noah R et al. (2013) Gata3 is a critical regulator of cochlear wiring. J Neurosci 33:3679-91
Kim, Euiseok J; Hori, Kei; Wyckoff, Alex et al. (2011) Spatiotemporal fate map of neurogenin1 (Neurog1) lineages in the mouse central nervous system. J Comp Neurol 519:1355-70
Raft, Steven; Koundakjian, Edmund J; Quinones, Herson et al. (2007) Cross-regulation of Ngn1 and Math1 coordinates the production of neurons and sensory hair cells during inner ear development. Development 134:4405-15
Koundakjian, Edmund J; Appler, Jessica L; Goodrich, Lisa V (2007) Auditory neurons make stereotyped wiring decisions before maturation of their targets. J Neurosci 27:14078-88