POU3F4
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POU3F4
POU domain, class 3, transcription factor 4 is a protein that in humans is encoded by the ''POU3F4'' gene found on the X chromosome. POU3F4 is involved in the patterning of the neural tube and both the paraventricular and supraoptic nuclei of the hypothalamus in the developing embryo. During development, POU3F4 is also expressed in the mesenchyme of the periotic bone surrounding the inner ear. A “knockout” mice model displayed that alteration to the POU3F4 gene interrupted this mesenchymal cell differentiation in the superior semicircular canal. The deformities observed in mice were similar to those in humans with X-linked non-syndromic deafness (DFN-3). Clinical significance Genetic testing on various persons has confirmed that mutations of the POU3F4 gene cause X-linked non-syndromic deafness (DFN-3). These known mutations include: * Missense mutation causing the substitution of amino acid glycine for glutamic acid at position 216 * A deletion of the POU3F4 gene and ...
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Nonsyndromic Deafness
Nonsyndromic deafness is hearing loss that is not associated with other signs and symptoms. In contrast, syndromic deafness involves hearing loss that occurs with abnormalities in other parts of the body. Genetic changes are related to the following types of nonsyndromic deafness. * DFNA: nonsyndromic deafness, autosomal dominant * DFNB: nonsyndromic deafness, autosomal recessive * DFNX: nonsyndromic deafness, X-linked * nonsyndromic deafness, mitochondrial Each type is numbered in the order in which it was described. For example, DFNA1 was the first described autosomal dominant type of nonsyndromic deafness. Mitochondrial nonsyndromic deafness involves changes to the small amount of DNA found in mitochondria, the energy-producing centers within cells. Most forms of nonsyndromic deafness are associated with permanent hearing loss caused by damage to structures in the inner ear. The inner ear consists of three parts: a snail-shaped structure called the cochlea that helps process ...
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