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Published in: BMC Medical Genetics 1/2015

Open Access 01-12-2015 | Research article

Novel FOXL2 mutations in two Chinese families with blepharophimosis-ptosis-epicanthus inversus syndrome

Authors: Min Xue, Jie Zheng, Qing Zhou, J. Fielding Hejtmancik, Yuan Wang, Shouling Li

Published in: BMC Medical Genetics | Issue 1/2015

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Abstract

Background

Blepharophimosis-ptosis-epicanthus inversus syndrome (BPES) is a rare autosomal dominant disease. Mutations in the forkhead box L2 (FOXL2) gene cause two types of BPES distinguished by the presence (type I) and absence (type II) of premature ovarian failure (POF). The purpose of this study was to identify possible mutations in FOXL2 in two Chinese families with BPES.

Methods

Two large autosomal dominant Chinese BPES families were enrolled in this study. Genomic DNA was obtained from the leukocytes in peripheral venous blood. Four overlapping sets of primers were used to amplify the entire coding region and nearby intron sequences of the FOXL2 gene for mutations detection using polymerase chain reaction (PCR) and sequencing analyses. The sequencing results were analyzed using DNAstar software.

Results

All patients of the two families demonstrated typical features of BPES type II, including small palpebral fissures, ptosis, telecanthus, and epicanthus inversus without female infertility (POF). A novel FOXL2 heterozygous indel mutation c.675_690delinsT, including a 16-bp deletion and a 1-bp(T) insertion (p.Ala226_Ala230del), which would result in deletion of 5 alanine residues of a poly-alanine (poly-Ala) tract in the protein, was identified in all affected members of family A. A novel heterozygous missense mutation (c.223C > T, p.Leu75Phe) was identified in family B.

Conclusions

Two novel FOXL2 mutations were identified in Chinese families with BPES. Our results expand the spectrum of FOXL2 mutations and provide additional structure-function insights into the FOXL2 protein.
Literature
2.
go back to reference Zlotogora J, Sagi M, Cohen T. The blepharophimosis, ptosis and epicanthus inversus syndrome: delineation of two types. Am J Hum Genet. 1983;35:1020–7.PubMedPubMedCentral Zlotogora J, Sagi M, Cohen T. The blepharophimosis, ptosis and epicanthus inversus syndrome: delineation of two types. Am J Hum Genet. 1983;35:1020–7.PubMedPubMedCentral
3.
go back to reference Fukushima Y, Wakui K, Nishida T, Ueoka Y. Blepharophimosis sequence and de novo balanced autosomal translocation [46, XY, t (3; 4) (q23p15.2)]: possible assignment of the trait to 3q23. Med. Genet. 1991;40:485–7. Fukushima Y, Wakui K, Nishida T, Ueoka Y. Blepharophimosis sequence and de novo balanced autosomal translocation [46, XY, t (3; 4) (q23p15.2)]: possible assignment of the trait to 3q23. Med. Genet. 1991;40:485–7.
4.
go back to reference Fryns JP, Stromme P, van den Berghe H. Further evidence for the location of the blepharophimosis syndrome (BPES) at 3q22.3-q23. Clin Genet. 1993;44(3):149–51.CrossRefPubMed Fryns JP, Stromme P, van den Berghe H. Further evidence for the location of the blepharophimosis syndrome (BPES) at 3q22.3-q23. Clin Genet. 1993;44(3):149–51.CrossRefPubMed
5.
go back to reference Small KW, Stalvey M, Fisher L, Mullen L, Dickel C, Beadles K, et al. Blepharophimosis syndrome is linked to chromosome 3q. Hum Mol Genet. 1995;4:443–8.CrossRefPubMed Small KW, Stalvey M, Fisher L, Mullen L, Dickel C, Beadles K, et al. Blepharophimosis syndrome is linked to chromosome 3q. Hum Mol Genet. 1995;4:443–8.CrossRefPubMed
6.
go back to reference Boccone L, Meloni A, Falchi AM, Usai V, Cao A. Blepharophimosis, ptosis, epicanthus inversus syndrome, a new case associated with de novo balanced autosomal translocation [46, XY, t(3;7)(q23;q32)]. Am J Med Genet. 1994;51(3):258–9.CrossRefPubMed Boccone L, Meloni A, Falchi AM, Usai V, Cao A. Blepharophimosis, ptosis, epicanthus inversus syndrome, a new case associated with de novo balanced autosomal translocation [46, XY, t(3;7)(q23;q32)]. Am J Med Genet. 1994;51(3):258–9.CrossRefPubMed
7.
go back to reference Amati P, Gasparini P, Zlotogora J, Zelante L, Chomel JC, Kitzis A, et al. A gene for premature ovarian failure associated with eyelid malformation maps to chromosome 3q22-q23. Am J Hum Genet. 1996;58(5):1089–92.PubMedPubMedCentral Amati P, Gasparini P, Zlotogora J, Zelante L, Chomel JC, Kitzis A, et al. A gene for premature ovarian failure associated with eyelid malformation maps to chromosome 3q22-q23. Am J Hum Genet. 1996;58(5):1089–92.PubMedPubMedCentral
8.
go back to reference Crisponi L, Deiana M, Loi A, Chiappe F, Uda M, Amati P, et al. The putative forkhead transcription factor FOXL2 is mutated in blepharophimosis/ptosis/epicanthus inversus syndrome. Nat Genet. 2001;27(2):159–66.CrossRefPubMed Crisponi L, Deiana M, Loi A, Chiappe F, Uda M, Amati P, et al. The putative forkhead transcription factor FOXL2 is mutated in blepharophimosis/ptosis/epicanthus inversus syndrome. Nat Genet. 2001;27(2):159–66.CrossRefPubMed
10.
go back to reference Cocquet J, De Baere E, Gareil M, Pannetier M, Xia X, Fellous M, et al. Structure, evolution and expression of FOXL2 transcription unit. Cytogenet Genome Res. 2003;101(3–4):206–11.CrossRefPubMed Cocquet J, De Baere E, Gareil M, Pannetier M, Xia X, Fellous M, et al. Structure, evolution and expression of FOXL2 transcription unit. Cytogenet Genome Res. 2003;101(3–4):206–11.CrossRefPubMed
11.
go back to reference Ellsworth BS, Egashira N, Haller JL, Butts DL, Cocquet J, Clay CM, et al. FOXL2 in the pituitary: molecular, genetic, and developmental analysis. Mol Endocrinol. 2006;20:2796–805.CrossRefPubMed Ellsworth BS, Egashira N, Haller JL, Butts DL, Cocquet J, Clay CM, et al. FOXL2 in the pituitary: molecular, genetic, and developmental analysis. Mol Endocrinol. 2006;20:2796–805.CrossRefPubMed
12.
go back to reference Batista F, Vaiman D, Dausset J, Fellous M, Veitia RA. Potential targets of FOXL2, a transcription factor involved in craniofacial and follicular development, identified by transcriptomics. ProcNatlAcad Sci. 2007;104:3330–5.CrossRef Batista F, Vaiman D, Dausset J, Fellous M, Veitia RA. Potential targets of FOXL2, a transcription factor involved in craniofacial and follicular development, identified by transcriptomics. ProcNatlAcad Sci. 2007;104:3330–5.CrossRef
13.
14.
go back to reference Beysen D, De Paepe A, De Baere E. FOXL2 mutations and genomic rearrangements in BPES. Hum Mutat. 2009;30(2):158–69.CrossRefPubMed Beysen D, De Paepe A, De Baere E. FOXL2 mutations and genomic rearrangements in BPES. Hum Mutat. 2009;30(2):158–69.CrossRefPubMed
15.
go back to reference De Baere E, Beysen D, Oley C, Lorenz B, Cocquet J, De Sutter P, et al. FOXL2 and BPES: mutational hotspots, phenotypic variability, and revision of the genotype-phenotype correlation. Am J Hum Genet. 2003;72:478–87.CrossRefPubMedPubMedCentral De Baere E, Beysen D, Oley C, Lorenz B, Cocquet J, De Sutter P, et al. FOXL2 and BPES: mutational hotspots, phenotypic variability, and revision of the genotype-phenotype correlation. Am J Hum Genet. 2003;72:478–87.CrossRefPubMedPubMedCentral
16.
go back to reference De Baere E, Dixon MJ, Small KW, Jabs EW, Leroy BP, Devriendt K, et al. Spectrum of FOXL2 gene mutations in blepharophimosis-ptosis-epicanthus inversus (BPES) families demonstrates a genotype-phenotype correlation. Hum Mol Genet. 2001;10:1591–600.CrossRefPubMed De Baere E, Dixon MJ, Small KW, Jabs EW, Leroy BP, Devriendt K, et al. Spectrum of FOXL2 gene mutations in blepharophimosis-ptosis-epicanthus inversus (BPES) families demonstrates a genotype-phenotype correlation. Hum Mol Genet. 2001;10:1591–600.CrossRefPubMed
17.
go back to reference Beysen D, De Jaegere S, Amor D, Bouchard P, Christin-Maitre S, Fellous M, et al. Identification of 34 novel and 56 known FOXL2 mutations in patients with blepharophimosis syndrome. Hum Mutat. 2008;29:E205–19.CrossRefPubMed Beysen D, De Jaegere S, Amor D, Bouchard P, Christin-Maitre S, Fellous M, et al. Identification of 34 novel and 56 known FOXL2 mutations in patients with blepharophimosis syndrome. Hum Mutat. 2008;29:E205–19.CrossRefPubMed
18.
go back to reference Hanna-Rose W, Hansen U. Active repression mechanisms of eukaryotic transcription repressors. Trends Genet. 1996;12(6):229–34.CrossRefPubMed Hanna-Rose W, Hansen U. Active repression mechanisms of eukaryotic transcription repressors. Trends Genet. 1996;12(6):229–34.CrossRefPubMed
19.
go back to reference Carlsson P, Mahlapuu M. Forkhead transcription factors: key players in development and metabolism. Dev Biol. 2002;250:1–23.CrossRefPubMed Carlsson P, Mahlapuu M. Forkhead transcription factors: key players in development and metabolism. Dev Biol. 2002;250:1–23.CrossRefPubMed
20.
go back to reference Caburet S, Demarez A, Moumné L, Fellous M, De Baere E, Veitia RA. A recurrent polyalanine expansion in the transcription factor FOXL2 induces extensive nuclear and cytoplasmic protein aggregation. J Med Genet. 2004;41:932–6.CrossRefPubMedPubMedCentral Caburet S, Demarez A, Moumné L, Fellous M, De Baere E, Veitia RA. A recurrent polyalanine expansion in the transcription factor FOXL2 induces extensive nuclear and cytoplasmic protein aggregation. J Med Genet. 2004;41:932–6.CrossRefPubMedPubMedCentral
21.
go back to reference Moumné L, Dipietromaria A, Batista F, Kocer A, Fellous M, Pailhoux E, et al. Differential aggregation and functional impairment induced by polyalanine expansions in FOXL2, a transcription factor involved in cranio-facial and ovarian development. Hum Mol Genet. 2008;17:1010–9.CrossRefPubMed Moumné L, Dipietromaria A, Batista F, Kocer A, Fellous M, Pailhoux E, et al. Differential aggregation and functional impairment induced by polyalanine expansions in FOXL2, a transcription factor involved in cranio-facial and ovarian development. Hum Mol Genet. 2008;17:1010–9.CrossRefPubMed
22.
go back to reference Moumné L, Fellous M, Veitia RA. Deletions in the polyAlanine-containing transcription factor FOXL2 lead to intranuclear aggregation. Hum Mol Genet. 2005;14(23):3557–64.CrossRefPubMed Moumné L, Fellous M, Veitia RA. Deletions in the polyAlanine-containing transcription factor FOXL2 lead to intranuclear aggregation. Hum Mol Genet. 2005;14(23):3557–64.CrossRefPubMed
23.
go back to reference Kosaki K, Ogata T, Kosaki R, Sato S, Matsuo N. A novel mutation in the FOXL2 gene in a patient with blepharophimosis syndrome: differential role of the polyalanine tract in the development of the ovary and the eyelid. Ophthalmic Genet. 2002;23:43–7.CrossRefPubMed Kosaki K, Ogata T, Kosaki R, Sato S, Matsuo N. A novel mutation in the FOXL2 gene in a patient with blepharophimosis syndrome: differential role of the polyalanine tract in the development of the ovary and the eyelid. Ophthalmic Genet. 2002;23:43–7.CrossRefPubMed
24.
go back to reference Fokstuen S, Antonarakis SE, Blouin JL. FOXL2-mutations in blepharophimosis-ptosis-epicanthus inversus syndrome (BPES); challenges for genetic counseling in female patients. Am J Med Genet A. 2003;117A:143–6.CrossRefPubMed Fokstuen S, Antonarakis SE, Blouin JL. FOXL2-mutations in blepharophimosis-ptosis-epicanthus inversus syndrome (BPES); challenges for genetic counseling in female patients. Am J Med Genet A. 2003;117A:143–6.CrossRefPubMed
25.
go back to reference Harris SE, Chand AL, Winship IM, Gersak K, Aittomaki K, Shelling AN. Identification of novel mutations in FOXL2 associated with premature ovarian failure. Mol Hum Reprod. 2002;8:729–33.CrossRefPubMed Harris SE, Chand AL, Winship IM, Gersak K, Aittomaki K, Shelling AN. Identification of novel mutations in FOXL2 associated with premature ovarian failure. Mol Hum Reprod. 2002;8:729–33.CrossRefPubMed
26.
go back to reference Kumar A, Babu M, Raghunath A, Venkatesh CP. Genetic analysisof a five generation Indian family with BPES: a novel missensemutation (p.Y215C). Mol Vis. 2004;10:445–9.PubMed Kumar A, Babu M, Raghunath A, Venkatesh CP. Genetic analysisof a five generation Indian family with BPES: a novel missensemutation (p.Y215C). Mol Vis. 2004;10:445–9.PubMed
27.
go back to reference Beysen D, Moumne L, Veitia R, Peters H, Leroy BP, De Paepe A, et al. Missense mutations in the forkhead domain of FOXL2 lead to subcellular mislocalization, protein aggregation and impaired transactivation. Hum Mol Genet. 2008;17:2030–8.CrossRefPubMed Beysen D, Moumne L, Veitia R, Peters H, Leroy BP, De Paepe A, et al. Missense mutations in the forkhead domain of FOXL2 lead to subcellular mislocalization, protein aggregation and impaired transactivation. Hum Mol Genet. 2008;17:2030–8.CrossRefPubMed
Metadata
Title
Novel FOXL2 mutations in two Chinese families with blepharophimosis-ptosis-epicanthus inversus syndrome
Authors
Min Xue
Jie Zheng
Qing Zhou
J. Fielding Hejtmancik
Yuan Wang
Shouling Li
Publication date
01-12-2015
Publisher
BioMed Central
Published in
BMC Medical Genetics / Issue 1/2015
Electronic ISSN: 1471-2350
DOI
https://doi.org/10.1186/s12881-015-0217-7

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