| Literature DB >> 26514990 |
Tetsuji Okawa1, Masanori Yoshida2, Takeshi Usui3, Takahiro Kudou4, Yasumasa Iwasaki5, Kazuki Fukuoka6, Norio Takahashi7, Yuka Uehara8, Yutaka Oiso9.
Abstract
BACKGROUND: Hypoparathyroidism, deafness, and renal dysplasia (HDR) syndrome is a rare autosomal dominant disorder caused by mutations in the zinc finger transcription factor gene, GATA3. GATA3 has 2 zinc finger domains, which play an important role in the increase in target gene transcription activity. CASEEntities:
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Year: 2015 PMID: 26514990 PMCID: PMC4627412 DOI: 10.1186/s12902-015-0065-7
Source DB: PubMed Journal: BMC Endocr Disord ISSN: 1472-6823 Impact factor: 2.763
Fig. 1Plain head and abdominal computed tomography (CT) scans of the proband. a, b. Head CT. Severe calcification was observed in the basal ganglia, thalamus, deep white matter (a), and cerebellum (b) (arrow). c. Abdominal CT. Renal dysplasia can be seen on the right side (arrow)
Fig. 2Direct sequencing of GATA3. Upper panel shows the genomic structure of GATA3, consisting of 6 exons (indicated by boxes). The black and white boxes denote the coding regions and the untranslated regions, respectively. GATA3 encodes a protein with 2 transactivating domains (TA1 and TA2) and 2 zinc finger domains (N-terminal zinc finger [ZnF1] and C-terminal zinc finger [ZnF2]). ZnF1 is encoded by exon 4 and ZnF2 is encoded by exon 5. The arrow indicates the mutation site. The lower panel shows the nucleotide sequences around codon 299 in exon 4 of GATA3
Fig. 3Three-dimensional structural modeling of wild-type and mutant GATA3 proteins. a, Wild-type GATA3 protein. b, GATA3 mutant protein (R299Q). c, Merge of (a) and (b). Residues 263–347 are shown. This region includes ZnF1 (residues 264–288) and ZnF2 (residues 318–342). The arrows indicate residues 263 (N-terminal) and 299. Residues with a significant conformational change by R299Q mutation are color-coded (bright yellow [wild-type] and green [mutant])
Fig. 4Functional analysis of wild-type and mutant GATA3 proteins using a luciferase reporter assay system. a, Effects of the overexpression of wild-type and mutant GATA3 on the transcription activity of the heterologous promoter. Mutant GATA3 overexpression abolished the enhancing effects of wild-type GATA3 on the promoter containing the consensus GATA responsive element (pGATA/Luc). b, Effects of the overexpression of wild-type and mutant GATA3 on human PTH gene expression. Wild-type GATA3 overexpression significantly enhanced the transcription activity of human PTH (phPTH/Luc), whereas this stimulatory effect was not observed with mutant GATA3 overexpression. Data are expressed as folds increase over control group. P < 0.05 vs. corresponding control