Literature DB >> 26362256

FGFR2 mutation in 46,XY sex reversal with craniosynostosis.

Stefan Bagheri-Fam1, Makoto Ono2, Li Li3, Liang Zhao4, Janelle Ryan2, Raymond Lai2, Yukako Katsura5, Fernando J Rossello6, Peter Koopman4, Gerd Scherer7, Oliver Bartsch8, Jacob V P Eswarakumar3, Vincent R Harley1.   

Abstract

Patients with 46,XY gonadal dysgenesis (GD) exhibit genital anomalies, which range from hypospadias to complete male-to-female sex reversal. However, a molecular diagnosis is made in only 30% of cases. Heterozygous mutations in the human FGFR2 gene cause various craniosynostosis syndromes including Crouzon and Pfeiffer, but testicular defects were not reported. Here, we describe a patient whose features we would suggest represent a new FGFR2-related syndrome, craniosynostosis with XY male-to-female sex reversal or CSR. The craniosynostosis patient was chromosomally XY, but presented as a phenotypic female due to complete GD. DNA sequencing identified the FGFR2c heterozygous missense mutation, c.1025G>C (p.Cys342Ser). Substitution of Cys342 by Ser or other amino acids (Arg/Phe/Try/Tyr) has been previously reported in Crouzon and Pfeiffer syndrome. We show that the 'knock-in' Crouzon mouse model Fgfr2c(C342Y/C342Y) carrying a Cys342Tyr substitution displays XY gonadal sex reversal with variable expressivity. We also show that despite FGFR2c-Cys342Tyr being widely considered a gain-of-function mutation, Cys342Tyr substitution in the gonad leads to loss of function, as demonstrated by sex reversal in Fgfr2c(C342Y/-) mice carrying the knock-in allele on a null background. The rarity of our patient suggests the influence of modifier genes which exacerbated the testicular phenotype. Indeed, patient whole exome analysis revealed several potential modifiers expressed in Sertoli cells at the time of testis determination in mice. In summary, this study identifies the first FGFR2 mutation in a 46,XY GD patient. We conclude that, in certain rare genetic contexts, maintaining normal levels of FGFR2 signaling is important for human testis determination.
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Year:  2015        PMID: 26362256      PMCID: PMC4634374          DOI: 10.1093/hmg/ddv374

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  88 in total

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Journal:  Hum Mutat       Date:  2005-12       Impact factor: 4.878

6.  Transient development of ovotestes in XX Sox9 transgenic mice.

Authors:  Elodie P Gregoire; Rowena Lavery; Anne-Amandine Chassot; Haruhiko Akiyama; Mathias Treier; Richard R Behringer; Marie-Christine Chaboissier
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7.  The craniofacial phenotype of the Crouzon mouse: analysis of a model for syndromic craniosynostosis using three-dimensional MicroCT.

Authors:  Chad A Perlyn; Valerie B DeLeon; Christian Babbs; Daniel Govier; Lance Burell; Tron Darvann; Sven Kreiborg; Gillian Morriss-Kay
Journal:  Cleft Palate Craniofac J       Date:  2006-11

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10.  dbNSFP v2.0: a database of human non-synonymous SNVs and their functional predictions and annotations.

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  16 in total

1.  Testis Determination Requires a Specific FGFR2 Isoform to Repress FOXL2.

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Review 2.  Deciphering Sex-Specific Differentiation of Human Fetal Gonads: Insight From Experimental Models.

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Journal:  Front Genet       Date:  2022-06-23       Impact factor: 4.772

Review 4.  At the Crossroads of Fate-Somatic Cell Lineage Specification in the Fetal Gonad.

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6.  In mammalian foetal testes, SOX9 regulates expression of its target genes by binding to genomic regions with conserved signatures.

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Journal:  Nucleic Acids Res       Date:  2017-07-07       Impact factor: 16.971

7.  Overexpression of Fgfr2c causes craniofacial bone hypoplasia and ameliorates craniosynostosis in the Crouzon mouse.

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8.  Identification of novel candidate genes for 46,XY disorders of sex development (DSD) using a C57BL/6J-Y POS mouse model.

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9.  FGFR2 mutations and associated clinical observations in two Chinese patients with Crouzon syndrome.

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Journal:  Mol Med Rep       Date:  2017-08-29       Impact factor: 2.952

Review 10.  The Role of Fibroblast Growth Factors in Tooth Development and Incisor Renewal.

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