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Identification of sensory hair-cell transcripts by thiouracil-tagging in zebrafish.


ABSTRACT: Sensory hair cells are exquisitely sensitive to mechanical stimuli and as such, are prone to damage and apoptosis during dissections or in vitro manipulations. Thiouracil (TU)-tagging is a noninvasive method to label cell type-specific transcripts in an intact organism, thereby meeting the challenge of how to analyze gene expression in hair cells without the need to sort cells. We adapted TU-tagging to zebrafish to identify novel transcripts expressed in the sensory hair cells of the developing acoustico-lateralis organs.We created a transgenic line of zebrafish expressing the T.gondii uracil phospho-ribosyltransferase (UPRT) enzyme specifically in the hair cells of the inner ear and lateral line organ. RNA was labeled by exposing 3 days post-fertilization (dpf) UPRT transgenic larvae to 2.5 mM 4-thiouracil (4TU) for 15 hours. Following total RNA isolation, poly(A) mRNA enrichment, and purification of TU-tagged RNA, deep sequencing was performed on the input and TU-tagged RNA samples.Analysis of the RNA sequencing data revealed the expression of 28 transcripts that were significantly enriched (adjusted p-value?

SUBMITTER: Erickson T 

PROVIDER: S-EPMC4619078 | biostudies-literature | 2015 Oct

REPOSITORIES: biostudies-literature

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Identification of sensory hair-cell transcripts by thiouracil-tagging in zebrafish.

Erickson Timothy T   Nicolson Teresa T  

BMC genomics 20151023


<h4>Background</h4>Sensory hair cells are exquisitely sensitive to mechanical stimuli and as such, are prone to damage and apoptosis during dissections or in vitro manipulations. Thiouracil (TU)-tagging is a noninvasive method to label cell type-specific transcripts in an intact organism, thereby meeting the challenge of how to analyze gene expression in hair cells without the need to sort cells. We adapted TU-tagging to zebrafish to identify novel transcripts expressed in the sensory hair cells  ...[more]

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