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1.
BMC Genet ; 6: 43, 2005 Aug 12.
Article in English | MEDLINE | ID: mdl-16098226

ABSTRACT

BACKGROUND: The PAX6 protein is a transcriptional regulator with a key role in ocular and neurological development. Individuals with heterozygous loss-of-function mutations in the PAX6 gene have malformations of the eye and brain. Little is known about the interactions of PAX6 with other proteins, so we carried out a systematic screen for proteins that interact with PAX6. RESULTS: We used bioinformatics techniques to characterise a highly conserved peptide at the C-terminus of the PAX6 protein. Yeast two-hybrid library screens were then carried out to identify brain-expressed proteins that interact with the C-terminal peptide and with the entire PAX6 proline-serine-threonine-rich domain. Three novel PAX6-interacting proteins were identified: the post-synaptic density (PSD) protein HOMER3, the dynein subunit DNCL1, and the tripartite motif protein TRIM11. Three C-terminal PAX6 mutations, previously identified in patients with eye malformations, all reduced or abolished the interactions. CONCLUSION: Our preliminary data suggest that PAX6 interacts with HOMER3, DNCL1 and TRIM11. We propose that the interaction of PAX6 with HOMER3 and DNCL1 is a mechanism by which synaptic activation could lead to changes in neuronal transcriptional activity, and that some of the neural anomalies in patients with PAX6 mutations could be explained by impaired protein-protein interactions.


Subject(s)
Eye Proteins/genetics , Eye Proteins/metabolism , Homeodomain Proteins/genetics , Homeodomain Proteins/metabolism , Paired Box Transcription Factors/genetics , Paired Box Transcription Factors/metabolism , Repressor Proteins/genetics , Repressor Proteins/metabolism , Two-Hybrid System Techniques , Amino Acid Sequence , Carrier Proteins/metabolism , Conserved Sequence , Cytoplasmic Dyneins , Dyneins/metabolism , Homer Scaffolding Proteins , Humans , Mutation , Neurons/metabolism , PAX6 Transcription Factor , Protein Binding/genetics , Transcription Factors/metabolism , Transcription, Genetic , Tripartite Motif Proteins , Ubiquitin-Protein Ligases
2.
Am J Hum Genet ; 76(6): 1008-22, 2005 Jun.
Article in English | MEDLINE | ID: mdl-15846561

ABSTRACT

Major malformations of the human eye, including microphthalmia and anophthalmia, are examples of phenotypes that recur in families yet often show no clear Mendelian inheritance pattern. Defining loci by mapping is therefore rarely feasible. Using a candidate-gene approach, we have identified heterozygous coding-region changes in the homeobox gene OTX2 in eight families with ocular malformations. The expression pattern of OTX2 in human embryos is consistent with the eye phenotypes observed in the patients, which range from bilateral anophthalmia to retinal defects resembling Leber congenital amaurosis and pigmentary retinopathy. Magnetic resonance imaging scans revealed defects of the optic nerve, optic chiasm, and, in some cases, brain. In two families, the mutations appear to have occurred de novo in severely affected offspring, and, in two other families, the mutations have been inherited from a gonosomal mosaic parent. Data from these four families support a simple model in which OTX2 heterozygous loss-of-function mutations cause ocular malformations. Four additional families display complex inheritance patterns, suggesting that OTX2 mutations alone may not lead to consistent phenotypes. The high incidence of mosaicism and the reduced penetrance have implications for genetic counseling.


Subject(s)
Eye Abnormalities/genetics , Eye Abnormalities/pathology , Heterozygote , Homeodomain Proteins/genetics , Mutation , Amino Acid Motifs , Amino Acid Sequence , Animals , Anophthalmos/genetics , Brain/diagnostic imaging , Chromosome Mapping , DNA Mutational Analysis , Female , Gene Expression Regulation, Developmental , Genes, Homeobox , Genetic Variation , Homeodomain Proteins/chemistry , Humans , Magnetic Resonance Imaging , Male , Mice , Models, Genetic , Mosaicism , Open Reading Frames , Otx Transcription Factors , Pedigree , Penetrance , Protein Structure, Tertiary , Radiography , Sequence Analysis, DNA
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