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E-GEOD-16842 GSE16842 transcription profiling by array Gallus gallus

Dissociated avian utricle sensory epithelia treated with one of various siRNAs or small molecule inhibitors

·Released July 2, 2010 ·Updated May 2, 2014
282
Samples
141
Assays
1
Array Platforms
Description

The inner ear utilizes sensory hair cells as mechano-electric transducers for sensing sound and balance. In mammals, these sensory hair cells lack the capacity for regeneration and if damaged lead to hearing or balance disorders. However, non-mammalian vertebrates such as birds maintain their regenerative abilities throughout their life. In a previous study we conducted a gene expression profiling time course of regenerating sensory epithelia (SE) in avian cochlea and utricle on a custom transcription factor microarray following damage by both laser and chemical ablation. We identified several known signaling cascades such as The Pax-Eya-Six-Dach pathway, Ap-1 pathway, the Tgf-β pathway and sonic hedgehog signaling that are differentially expressed during SE regeneration. In this study we selected 27 of these genes for knockdown by siRNA or small molecule inhibition to determine their requirement for SE regeneration and identify downstream targets. We assessed phenotypes using a 96 well proliferation assay and expression profiled each knockdown on a custom transcription factor microarray. Using these techniques we have determined several genes that are required for SE proliferation and identified novel epistatic relationships between many of these genes. Pure sensory epithelia was isolated from avian utricles. Sensory epithelia was physically dissociated and grown in 96 well cultures for 3 days. Prior to confluency, dissociated sensory epithelia were transfected with siRNAs (12 pmol/well) or small molecule inhibitor in 0.1% DMSO. RNA was isolated 24 hrs post transfection and assayed on a custom oligonucleotide transcription factor microarray compared to controls (GFP siRNA or 0.1% DMSO only). siRNA: CEBPG, JunD, BTAF1, LRP5, PAX2, PAX5, PAX7, Wnt4, BCL11A, CBX3, CBX4, CTNNB1, CUTL1, MYT1L, RARA, TIMELESS, TRIP15, PAX3, EZH2, HES1, ID1, CDKN1B, and PPARGC1 small molecule inhibition: IGF, MAPK, SHH, and JNK

Array Platforms
A-GEOD-7791
Lovett/WUSTL_TFarray_v4(141 items)
Sample Attributes
Organism
Gallus gallus
tissue
utricle sensory epithelia
treatment
0.1% DMSO control treatment, BCL11A siRNA, BTAF1 siRNA, CBX3 siRNA, CBX4 siRNA, CEBPG siRNA, CTNNB1 siRNA, CUTL1 siRNA, EZH2 siRNA, GFP control siRNA, HES1 siRNA, ID1 siRNA, IGF inhibitor in 0.1% DMSO treatment, JNK inhibitor in 0.1% DMSO treatment, JUND siRNA, KIPp27 siRNA, LRP5 siRNA, MAPK inhibitor in 0.1% DMSO treatment, MYT1L siRNA, PAX2 siRNA, PAX3 siRNA, PAX5 siRNA, PAX7 siRNA, PPARGC1 siRNA, RARA siRNA, SHH inhibitor in 0.1% DMSO treatment, TIME siRNA, TRIP15 siRNA, WNT4 siRNA
Experiment Info
Accession
E-GEOD-16842
GEO ID
GSE16842
Type
transcription profiling by array
Organism
Gallus gallus
Released
July 2, 2010
Updated
May 2, 2014
Submitter
Rose A Veile、 Judith Speck、 Michael Lovett、 Mark E Warchol、 David Michael Alvarado、 David M Alvarado、 David R Hawkins、 Kara E Powder、 Stavros Bashiardes
Analysis Services
Analysis Services

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