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  4. Identification of three novel mutations in the GATA3 gene responsible for familial hypoparathyroidism and deafness in the Chinese population
 
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Identification of three novel mutations in the GATA3 gene responsible for familial hypoparathyroidism and deafness in the Chinese population

Journal
Journal of Clinical Endocrinology and Metabolism
Journal Volume
91
Journal Issue
11
Pages
4587-4592
Date Issued
2006
Author(s)
WEI-YIH CHIU  orcid-logo
Chen H.-W.
Chao H.-W.
Yann L.-T.
KEH-SUNG TSAI  
DOI
10.1210/jc.2006-0864
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-33751529515&doi=10.1210%2fjc.2006-0864&partnerID=40&md5=5883fc12ce8464278ede9c6fdcc0f67d
https://scholars.lib.ntu.edu.tw/handle/123456789/495444
Abstract
Background: Familial hypoparathyroidism may be caused by mutations of several genes. The CaSR and GATA3 genes are the two candidates most commonly responsible for this condition. Objectives: We collected five unrelated families with familial hypoparathyroidism and examined their CaSR and GATA3 genes. Methods: Blood samples from these five families and 50 ethnically matched unrelated controls were acquired. Biochemistry screening and formal audiogram were performed to evaluate the affected individuals. All the exons and exon-intron boundaries of the GATA3 and CaSR genes were sequenced. Results: We identified three novel mutations in the GATA3 gene responsible for familial hypoparathyroidism and deafness: 1) a frame-shift deletion occurring in codon 160 (478delG) was hypothesized to disrupt dual zinc fingers as well as one transactivating domain; 2) a donor splice site mutation at exon 4/intron 4 boundary (IVS4 + 2 T to GCTTACTTCCC) was predicted to lead to truncated GATA3 proteins that lack both N- and C-terminal zinc-containing fingers; and 3) a missense mutation R353S was predicted to disrupt the helical turn and thus changed the angle between the C-terminal zinc finger and the adjacent C-terminal tail. Except for a previously described polymorphism, G990R, we did not find any genetic variants in the CaSR gene. Conclusions: This is the first article presenting mutations of the GATA3 gene responsible for familial hypoparathyroidism and deafness in the Chinese population. Our results expand the spectrum of mutations and report the first splice donor site mutation of the GATA3 gene. In contrast, we do not find causal sequence variants of the CaSR gene from our collection of familial hypoparathyroidism. Copyright ? 2006 by The Endocrine Society.
SDGs

[SDGs]SDG3

Other Subjects
calcium sensing receptor; transcription factor GATA 3; zinc finger protein; adolescent; adult; amino terminal sequence; article; audiography; blood sampling; carboxy terminal sequence; Chinese; clinical article; controlled study; ethnology; exon; familial disease; female; frameshift mutation; gene deletion; gene identification; gene mutation; gene sequence; genetic polymorphism; genetic variability; hearing impairment; human; hypoparathyroidism; intron; male; missense mutation; mutational analysis; perception deafness; priority journal; school child
Publisher
Endocrine Society
Type
journal article

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