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SOX2 Plays a Critical Role in the Pituitary, Forebrain, and Eye during Human Embryonic Development

Authors :
Dianne Gerrelli
Maria Felicia Faienza
Rita Fischetto
Juan Pedro Martinez-Barbera
David Taylor
Rodger Palmer
John Gregory
Mehul T. Dattani
Daniel Kelberman
Shuwen Huang
Luciano Cavallo
John A. Crolla
Karine Rizzoti
Sandra C. P. De Castro
Iain C. A. F. Robinson
Robin Lovell-Badge
John C. Achermann
Source :
The Journal of Clinical Endocrinology & Metabolism. 93:1865-1873
Publication Year :
2008
Publisher :
The Endocrine Society, 2008.

Abstract

Context: Heterozygous, de novo mutations in the transcription factor SOX2 are associated with bilateral anophthalmia or severe microphthalmia and hypopituitarism. Variable additional abnormalities include defects of the corpus callosum and hippocampus.Objective: We have ascertained a further three patients with severe eye defects and pituitary abnormalities who were screened for mutations in SOX2. To provide further evidence of a direct role for SOX2 in hypothalamo-pituitary development, we have studied the expression of the gene in human embryonic tissues.Results: All three patients harbored heterozygous SOX2 mutations: a deletion encompassing the entire gene, an intragenic deletion (c.70_89del), and a novel nonsense mutation (p.Q61X) within the DNA binding domain that results in impaired transactivation. We also show that human SOX2 can inhibit β-catenin-driven reporter gene expression in vitro, whereas mutant SOX2 proteins are unable to repress efficiently this activity. Furthermore, we show that SOX2 is expressed throughout the human brain, including the developing hypothalamus, as well as Rathke’s pouch, the developing anterior pituitary, and the eye.Conclusions: Patients with SOX2 mutations often manifest the unusual phenotype of hypogonadotropic hypogonadism, with sparing of other pituitary hormones despite anterior pituitary hypoplasia. SOX2 expression patterns in human embryonic development support a direct involvement of the protein during development of tissues affected in these individuals. Given the critical role of Wnt-signaling in the development of most of these tissues, our data suggest that a failure to repress the Wnt-β-catenin pathway could be one of the underlying pathogenic mechanisms associated with loss-of-function mutations in SOX2.

Details

ISSN :
19457197 and 0021972X
Volume :
93
Database :
OpenAIRE
Journal :
The Journal of Clinical Endocrinology & Metabolism
Accession number :
edsair.doi.dedup.....8d0481db327e9758a2c4d6ea06a0f0c4
Full Text :
https://doi.org/10.1210/jc.2007-2337