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PMID: 21652629 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Differential altered stability and transcriptional activity of ΔNp63 mutants in distinct ectodermal dysplasias.

Journal of cell science ·Vol. 124 ·No. Pt 13 ·2011-07-01 ·Pages 2200-7

Browne G, Cipollone R, Lena AM, Serra V, Zhou H, van Bokhoven H, Dötsch V, Merico D, Mantovani R, Terrinoni A, Knight RA, Candi E, Melino G

Abstract

Heterozygous mutations of p63, a key transcription factor in epithelial development, are causative in a variety of human ectodermal dysplasia disorders. Although the mutation spectrum of these disorders displays a striking genotype-phenotype association, the molecular basis for this association is only superficially known. Here, we characterize the transcriptional activity and protein stability of ΔNp63 mutants (that is, mutants of a p63 isoform that lacks the N-terminal transactivation domain) that are found in ectrodactyly-ectodermal dysplasia-cleft syndrome (EEC), ankyloblepharon-ectodermal dysplasia-clefting syndrome (AEC) and nonsyndromic split-hand/split-foot malformation (SHFM). DNA-binding and sterile alpha motif (SAM) domain mutants accumulate in the skin of EEC and AEC syndrome patients, respectively, and show extended half lives in vitro. By contrast, C-terminal mutations found in SHFM patients have half-lives similar to that of the wild-type protein. The increased half-life of EEC and AEC mutant proteins was reverted by overexpression of wild-type ΔNp63. Interestingly, the mutant proteins exhibit normal binding to and degradation by the E3 ubiquitin ligase Itch. Finally, EEC and AEC mutant proteins have reduced transcriptional activity on several skin-specific gene promoters, whereas SHFM mutant proteins are transcriptionally active. Our results, therefore, provide evidence for a regulatory feedback mechanism for p63 that links transcriptional activity to regulation of protein homeostasis by an unknown mechanism. Disruption of this regulatory mechanism might contribute to the pathology of p63-related developmental disorders.

MeSH Terms
Cleft Lip/genetics Cleft Palate/genetics DNA-Binding Proteins/genetics,metabolism Ectodermal Dysplasia/genetics Eye Abnormalities/genetics Eyelids/abnormalities Genetic Diseases, X-Linked/genetics HEK293 Cells Half-Life Humans Limb Deformities, Congenital/genetics Membrane Proteins/genetics,metabolism Promoter Regions, Genetic Protein Isoforms/genetics,metabolism Protein Stability Receptors, LDL/metabolism Repressor Proteins/metabolism Transcriptional Activation/genetics Ubiquitin-Protein Ligases/metabolism
Chemicals
CKAP4 protein, human DNA-Binding Proteins Membrane Proteins Protein Isoforms Receptors, LDL Repressor Proteins SAMD1 protein, human ITCH protein, human Ubiquitin-Protein Ligases
Authors & Affiliations
13 authors, click to expand affiliations / ORCID
Browne Gareth
Medical Research Council, Leicester University, Leicester LE19HN, UK.
Cipollone Rita
Lena Anna Maria
Serra Valeria
Zhou Huiqing
van Bokhoven Hans
Dötsch Volker
Merico Daniele
Mantovani Roberto
Terrinoni Alessandro
Knight Richard A
Candi Eleonora
Melino Gerry
Supplementary Concepts
Ectrodactyly-cleft lip-palate syndrome (Disease) Hay-Wells syndrome (Disease) Split hand foot deformity (Disease)
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
1477-9137
Published
2011-07-01
Epub
2011-00-07
Pages
2200-7
Language
English
Region
England
NLM ID
0052457
Subset
IM
Grants
Telethon · GGP09133 · Italy
Medical Research Council · MC_U132670600 · United Kingdom
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