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Identification of four new PITX2 gene mutations in patients with Axenfeld-Rieger syndrome.

作者信息

Vieira Veronique, David Gabriel, Roche Olivier, de la Houssaye Guillaume, Boutboul Sandrine, Arbogast Laurence, Kobetz Alexandra, Orssaud Christophe, Camand Olivier, Schorderet Daniel F, Munier Francis, Rossi Annick, Delezoide Anne Lise, Marsac Cecile, Ricquier Daniel, Dufier Jean-Louis, Menasche Maurice, Abitbol Marc

机构信息

Centre de Recherches Thérapeutiques en Ophtalmologie, équipe d'accueil 2502 MENRT, Université René Descartes Paris V, Faculté de Médecine Necker-Enfants Malades, Paris, France.

出版信息

Mol Vis. 2006 Dec 1;12:1448-60.


DOI:
PMID:17167399
Abstract

PURPOSE: Axenfeld Rieger syndrome (ARS) is an autosomal dominant inherited disorder affecting development of the ocular anterior chamber, abdomen, teeth and facial structures. The PITX2 gene is a major gene encoding a major transcription factor associated with ARS. METHODS: ARS patients were collected from six unrelated families. Patients and their families were ophthalmologically phenotyped and their blood was collected for DNA extraction. We screened the coding region of human PITX2 gene by direct sequencing. The consequences of the mutations described were investigated by generating crystallographic representations of the amino acid changes. In order to better understand the occurrence of glaucoma in ARS patients, we studied the PITX2 gene expression in human embryonic and fetal ocular tissue sections. RESULTS: We identified four novel PITX2 genetic alterations in four unrelated families with ARS. These mutations included two nonsense mutations (E55X and Y121X), an eight nucleotides insertion (1251 ins CGACTCCT) and a substitution (F58L), in familial and sporadic cases of ARS. We also showed for the first time that PITX2 is expressed at early stages of the human embryonic and fetal periocular mesenchyme, as well as at later stages of human development in the fetal ciliary body, ciliary processes, irido corneal angle and corneal endothelium. The human fetal eye PITX2 gene expression pattern reported here for the first time provides a strong basis for explaining the frequent occurrence of glaucoma in patients affected by PITX2 gene mutations. CONCLUSIONS: Two mutations identified affect the homeodomain (E55X and F58L). The E55X nonsense mutation is likely to alter dramatically the DNA-binding capabilities of the PITX2 homeodomain. Furthermore, there is a complete loss of the carboxy-terminal part of the PITX2 protein beyond the site of the mutation. The phenylalanine F58 is known to contribute to the hydrophobic network of the homeodomain. The crystallographic representations of the mutation F58L show that this mutation may change the conformation of the helical core. The F58L mutation is very likely to modify the homeodomain conformation and probably alters the DNA binding properties of PITX2. The other mutations (Y121X and the eight-nucleotide insertion (1251 ins CGA CTC CT) CGA CTC CT, at position 224 in PITX2A) result in partial loss of the C-terminal domain of PITX2. Pitx2 synergistically transactivates the prolactin promoter in the presence of the POU homeodomain protein Pit-1. Pitx2 activity is regulated by its own C-terminal tail. This region contains a highly conserved 14-amino-acid element involved in protein-protein interactions. The C-terminal 39-amino-acid tail represses DNA binding activity and is required for Pitx2 interactions with other transcription factors, for Pitx2-Pit-1 interaction and Pit-1synergism. Pit-1 interaction with the Pitx2 C terminus masks the inhibitory effect and promotes increased DNA binding activity. Thus, the partial or complete loss of the C terminus tail can lead to decreased or absent DNA binding activity and trigger severe ARS phenotypes. Our in situ hybridization results obtained on human embryonic and fetal ocular tissue sections constitute the first molecular histological data providing an explanation for the occurrence of precocious glaucoma in human patients affected by ARS caused by PITX2 mutations. Further structural and biochemical studies are needed for understanding the wide spectrum of clinical phenotypes caused by the increasing number of new PITX2 mutations found in ARS affected patients.

摘要

相似文献

[1]
Identification of four new PITX2 gene mutations in patients with Axenfeld-Rieger syndrome.

Mol Vis. 2006-12-1

[2]
Current molecular understanding of Axenfeld-Rieger syndrome.

Expert Rev Mol Med. 2005-11-8

[3]
Identification of the first intragenic deletion of the PITX2 gene causing an Axenfeld-Rieger Syndrome: case report.

BMC Med Genet. 2006-11-29

[4]
Analysis of mutations of the PITX2 transcription factor found in patients with Axenfeld-Rieger syndrome.

Invest Ophthalmol Vis Sci. 2009-6

[5]
Protein kinase C phosphorylation modulates N- and C-terminal regulatory activities of the PITX2 homeodomain protein.

Biochemistry. 2005-3-15

[6]
Novel mutations of FOXC1 and PITX2 in patients with Axenfeld-Rieger malformations.

Invest Ophthalmol Vis Sci. 2006-9

[7]
Threading analysis of the Pitx2 homeodomain: predicted structural effects of mutations causing Rieger syndrome and iridogoniodysgenesis.

Hum Mutat. 1999

[8]
Genotype-phenotype correlations in Axenfeld-Rieger malformation and glaucoma patients with FOXC1 and PITX2 mutations.

Invest Ophthalmol Vis Sci. 2007-1

[9]
Structural assessment of PITX2, FOXC1, CYP1B1, and GJA1 genes in patients with Axenfeld-Rieger syndrome with developmental glaucoma.

Invest Ophthalmol Vis Sci. 2006-5

[10]
Morphology of the sella turcica in Axenfeld-Rieger syndrome with PITX2 mutation.

J Oral Pathol Med. 2008-9

引用本文的文献

[1]
Mutation analysis in patients with nonsyndromic tooth agenesis using exome sequencing.

Mol Genet Genomic Med. 2022-10

[2]
Novel mutations in the PITX2 gene in Pakistani and Mexican families with Axenfeld-Rieger syndrome.

Mol Genet Genomic Med. 2020-7

[3]
Genetic architecture of retinoic-acid signaling-associated ocular developmental defects.

Hum Genet. 2019-7-29

[4]
Novel PITX2 Mutations including a Mutation Causing an Unusual Ophthalmic Phenotype of Axenfeld-Rieger Syndrome.

J Ophthalmol. 2019-7-1

[5]
Accurate prediction of functional, structural, and stability changes in PITX2 mutations using in silico bioinformatics algorithms.

PLoS One. 2018-4-17

[6]
Screening significantly hypermethylated genes in fetal tissues compared with maternal blood using a methylated-CpG island recovery assay-based microarray.

BMC Med Genomics. 2012-6-18

[7]
Study of a US cohort supports the role of ZNF644 and high-grade myopia susceptibility.

Mol Vis. 2012

[8]
Structural and biophysical insights into the ligand-free Pitx2 homeodomain and a ring dermoid of the cornea inducing homeodomain mutant.

Biochemistry. 2012-1-6

[9]
The role of homeodomain transcription factors in heritable pituitary disease.

Nat Rev Endocrinol. 2011-7-26

[10]
Axenfeld-Rieger Syndrome Associated with Congenital Glaucoma and Cytochrome P4501B1 Gene Mutations.

Case Rep Med. 2010

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