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Next Generation Sequencing Identifies Hoxa1 and Hoxc13 as Downstream Targets of Yap in Mouse Epithelial Tissues


ABSTRACT: The goals of this study are to identify in vivo downstream targets of Yap through NGS-derived tooth germ transcriptome profiling. The mRNA profiles of wild-type, Yap conditional knockout (CKO) and YAP transgenic (Tg) mouse tooth germs at embryonic day 14.5 were generated by deep sequencing using Illumina Hiseq2000. The sequence reads that passed quality filters were analyzed at the transcript isoform level via DNAnexus. The validation was performed through qRT–PCR and in situ hybrydization. A set of Hox genes were differentially expression in Yap CKO and YAP Tg mouse tooth germs, demonstating concurrent expression changes with Yap transcripts. This study provides a platform to systematically identify in vivo downstream targets of genes of interest. The mRNA profiles of wild type, Yap CKO and YAP Tg mouse tooth germs at embryonic day 14.5 were generated by deep sequencing using Illumina Hiseq.

ORGANISM(S): Mus musculus

SUBMITTER: Ming Liu 

PROVIDER: E-GEOD-65524 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

YAP regulates the expression of Hoxa1 and Hoxc13 in mouse and human oral and skin epithelial tissues.

Liu Ming M   Zhao Shuangyun S   Lin Qingjie Q   Wang Xiu-Ping XP  

Molecular and cellular biology 20150217 8


Yes-associated protein (YAP) is a Hippo signaling transcriptional coactivator that plays pivotal roles in stem cell proliferation, organ size control, and tumor development. The downstream targets of YAP have been shown to be highly context dependent. In this study, we used the embryonic mouse tooth germ as a tool to search for the downstream targets of YAP in ectoderm-derived tissues. Yap deficiency in the dental epithelium resulted in a small tooth germ with reduced epithelial cell proliferati  ...[more]

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