Abstract
Heterozygous mutations in p63 are associated with split hand/foot malformations (SHFM), orofacial clefting, and ectodermal abnormalities. Elucidation of the p63 gene network that includes target genes and regulatory elements may reveal new genes for other malformation disorders. We performed genome-wide DNA-binding profiling by chromatin immunoprecipitation (ChIP), followed by deep sequencing (ChIP-seq) in primary human keratinocytes, and identified potential target genes and regulatory elements controlled by p63. We show that p63 binds to an enhancer element in the SHFM1 locus on chromosome 7q and that this element controls expression of DLX6 and possibly DLX5, both of which are important for limb development. A unique micro-deletion including this enhancer element, but not the DLX5/DLX6 genes, was identified in a patient with SHFM. Our study strongly indicates disruption of a non-coding cis-regulatory element located more than 250 kb from the DLX5/DLX6 genes as a novel disease mechanism in SHFM1. These data provide a proof-of-concept that the catalogue of p63 binding sites identified in this study may be of relevance to the studies of SHFM and other congenital malformations that resemble the p63-associated phenotypes. © 2010 Kouwenhoven et al.
| Original language | English |
|---|---|
| Journal | PLoS Genetics |
| Volume | 6 |
| Issue number | 8 |
| DOIs | |
| Publication status | Published - 1 Aug 2010 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
Keywords
- cis acting element
- protein p63
- transcription factor
- transcription factor DLX5
- transcription factor DLX6
- unclassified drug
- animal cell
- animal tissue
- article
- binding site
- case report
- chromatin immunoprecipitation
- chromosome 7q
- cleft face
- cleft lip
- congenital malformation
- congenital skin disease
- ectrodactyly
- embryo
- enhancer region
- female
- gene deletion
- gene disruption
- gene expression regulation
- gene identification
- gene locus
- gene mutation
- gene sequence
- gene targeting
- heterozygosity
- human
- human cell
- keratinocyte
- limb development
- nonhuman
- nucleotide sequence
- phenotype
- protein DNA binding
- protein expression
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