1997
DOI: 10.1038/36899
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DNA binding and transcriptional repression by DAX-1 blocks steroidogenesis

Abstract: Mutations in the DAX-1 gene are responsible for congenital X-linked adrenal hypoplasia, a disease that is associated with hypogonadotropic hypogonadism. DAX-1 expression is tissue-specific and is finely regulated throughout development, suggesting that it has a role in both adrenal and gonadal function. DAX-1 is an unusual member of the nuclear-receptor superfamily of transcription factors which contains no canonical zinc-finger or any other known DNA-binding motif. Binding sites for DAX-1 are found in the pro… Show more

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Cited by 398 publications
(173 citation statements)
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“…A mouse homologue Dax1, sharing 75.5% nucleotide sequence identity with human DAX1, lies on the mouse X [62]. DAX1 codes for a member of the nuclear hormone receptor superfamily and can repress steroid-producing genes [59,61]. Human DAX1 is expressed in adrenal glands and gonadal tissue, consistent with the disease phenotypes.…”
Section: Dax1mentioning
confidence: 69%
“…A mouse homologue Dax1, sharing 75.5% nucleotide sequence identity with human DAX1, lies on the mouse X [62]. DAX1 codes for a member of the nuclear hormone receptor superfamily and can repress steroid-producing genes [59,61]. Human DAX1 is expressed in adrenal glands and gonadal tissue, consistent with the disease phenotypes.…”
Section: Dax1mentioning
confidence: 69%
“…For example, DNA hairpins play important roles in gene expression, DNA recombination and transposition. [1][2][3][4] In RNA, hairpins are a common secondary structure motif and can serve as nucleating sites for higher order RNA structures. 5 In addition, hairpins are commonly used in DNA-based nanotechnology, for instance as fuels in motors, 6,7 as bio-sensors, 8 or for controlling self-assembly pathways.…”
Section: Introductionmentioning
confidence: 99%
“…A real experimental data set. Let us now consider single-molecule experiments carried by the Xie group at Chemistry Department of Harvard University to study a DNA hairpin molecule, which is a single stranded nucleic acid structure, participating in many important biological processes including the regulation of gene expression [19] , DNA recombination [20] , and the facilitation of mutagenic events [21] . Because of the biological relevance, studying DNA hairpin's conformational properties, such as the conformational fluctuation and energy barrier between the different states, is of current interest.…”
Section: Bayesian Data Augmentation For Latent Processesmentioning
confidence: 99%