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PMID: 14985365 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Characterization of GATA3 mutations in the hypoparathyroidism, deafness, and renal dysplasia (HDR) syndrome.

The Journal of biological chemistry ·Vol. 279 ·No. 21 ·2004-05-21 ·Pages 22624-34

Nesbit MA, Bowl MR, Harding B, Ali A, Ayala A, Crowe C, Dobbie A, Hampson G, Holdaway I, Levine MA, McWilliams R, Rigden S, Sampson J, Williams AJ, Thakker RV

Abstract

The hypoparathyroidism, deafness, and renal dysplasia (HDR) syndrome is an autosomal dominant disorder caused by mutations of the dual zinc finger transcription factor, GATA3. The C-terminal zinc finger (ZnF2) binds DNA, whereas the N-terminal finger (ZnF1) stabilizes this DNA binding and interacts with other zinc finger proteins, such as the Friends of GATA (FOG). We have investigated seven HDR probands and their families for GATA3 abnormalities and have identified two nonsense mutations (Glu-228 --> Stop and Arg-367 --> Stop); two intragenic deletions that result in frameshifts from codons 201 and 355 with premature terminations at codons 205 and 370, respectively; one acceptor splice site mutation that leads to a frameshift from codon 351 and a premature termination at codon 367; and two missense mutations (Cys-318 --> Arg and Asn-320 --> Lys). The functional effects of these mutations, together with a previously reported GATA3 ZnF1 mutation and seven other engineered ZnF1 mutations, were assessed by electrophoretic mobility shift, dissociation, yeast two-hybrid and glutathione S-transferase pull-down assays. Mutations involving GATA3 ZnF2 or adjacent basic amino acids resulted in a loss of DNA binding, but those of ZnF1 either lead to a loss of interaction with specific FOG2 ZnFs or altered DNA-binding affinity. These findings are consistent with the proposed three-dimensional model of ZnF1, which has separate DNA and protein binding surfaces. Thus, our results, which expand the spectrum of HDR-associated GATA3 mutations and report the first acceptor splice site mutation, help to elucidate the molecular mechanisms that alter the function of this zinc finger transcription factor and its role in causing this developmental anomaly.

MeSH Terms
Adolescent Adult Amino Acid Sequence Animals Binding Sites Cell Nucleus/metabolism Child Child, Preschool Codon Codon, Nonsense DNA/chemistry DNA-Binding Proteins/genetics Deafness/genetics Exons Family Health Female Frameshift Mutation GATA3 Transcription Factor Gene Deletion Genes, Dominant Glutathione Transferase/metabolism Green Fluorescent Proteins Humans Hypoparathyroidism/genetics Kidney Diseases/pathology Luminescent Proteins/metabolism Male Mice Middle Aged Models, Genetic Molecular Sequence Data Mutation Mutation, Missense Pedigree Protein Binding Protein Conformation Protein Structure, Tertiary RNA Splicing RNA, Messenger/metabolism Recombinant Fusion Proteins/metabolism Software Structure-Activity Relationship Trans-Activators/genetics Two-Hybrid System Techniques Zinc/chemistry Zinc Fingers
Chemicals
Codon Codon, Nonsense DNA-Binding Proteins GATA3 Transcription Factor GATA3 protein, human Gata3 protein, mouse Luminescent Proteins RNA, Messenger Recombinant Fusion Proteins Trans-Activators Green Fluorescent Proteins DNA Glutathione Transferase Zinc
Authors & Affiliations
15 authors, click to expand affiliations / ORCID
Nesbit M Andrew
Nuffield Department of Medicine, University of Oxford, Oxford Centre for Diabetes, Endocrinology and Metabolism, Churchill Hospital, Oxford OX3 7LJ, United Kingdom.
Bowl Michael R
Harding Brian
Ali Asif
Ayala Alejandro
Crowe Carol
Dobbie Angus
Hampson Geeta
Holdaway Ian
Levine Michael A
McWilliams Robert
Rigden Susan
Sampson Julian
Williams Andrew J
Thakker Rajesh V
Article Info
Journal
The Journal of biological chemistry
Abbr.
J Biol Chem
ISSN
0021-9258
Published
2004-05-21
Epub
2004-00-24
Pages
22624-34
Language
English
Region
United States
NLM ID
2985121R
Subset
IM
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