Genomic sequence of the DAX1 gene: an orphan nuclear receptor responsible for X-linked adrenal hypoplasia congenita and hypogonadotropic hypogonadism.
Author(s) -
Wenya Guo,
Thomas P. Burris,
Y H Zhang,
Binquan Huang,
J. Mason,
Kenneth C. Copeland,
Stuart Kupfer,
Roberta A Pagon,
Edward R.B. McCabe
Publication year - 1996
Publication title -
the journal of clinical endocrinology and metabolism
Language(s) - English
Resource type - Journals
eISSN - 1945-7197
pISSN - 0021-972X
DOI - 10.1210/jcem.81.7.8675564
Subject(s) - genetics , biology , exon , nuclear receptor , hypogonadotropic hypogonadism , steroidogenic factor 1 , tandem exon duplication , intron , dna binding domain , gene , transcription factor , biochemistry , hormone
The gene responsible for X-linked adrenal hypoplasia congenita, DAX1, encodes a member of the nuclear hormone receptor superfamily. We sequenced 8851 bp that contained the DAX1 genomic region. The DAX gene was composed of two exons and one 3.4-kilobase intron. Putative TATA and GC boxes and a putative steroidogenic factor 1 response element were present in the 5'-flanking region. Two potentially polymorphic short tandem repeats were identified. The first exon encoded two putative novel zinc finger motifs within a putative DNA binding domain and part of the ligand binding domain, and the second exon encoded the remainder of the ligand binding domain. Although the putative DNA binding domain of DAX1 does not contain substantial sequence similarity to other nuclear hormone receptor superfamily members, the putative ligand binding domain had remarkable similarity to other family members. Single-strand conformational polymorphism analysis permitted identification of three new mutations in DAX1. In conclusion, single-strand conformational polymorphism analysis facilitates identification of mutations in the DAX1 gene, and the short tandem repeats may permit linkage analysis in families in which mutations are not yet identified. We speculate that DAX1 may be the most primitive member of the nuclear hormone receptor superfamily identified in mammals.
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