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Array comparative genomic hybridization analysis in patients with anophthalmia,microphthalmia, and coloboma
Institution:1. UW Cytogenetic Services, Wisconsin State Laboratory of Hygiene; Philadelphia, Pennsylvania.;2. Department of Pathology and Laboratory Medicine, University of Wisconsin-Madison, Madison, Wisconsin;;3. Institute of Biology, Kaunas University of Medicine, Kaunas, Lithuania;;4. Division of Genetics and Metabolism, Department of Pediatrics, University of Minnesota, Minnesota;;5. Division of Medical Genetics, Department of Pediatrics, University of California, San Francisco, California;;6. Division of Genetics, Department of Pediatrics, Albert Einstein Medical Center, Philadelphia, Pennsylvania.
Abstract:PurposeThe goal of our study was to determine whether genomic copy number abnormalities (deletions and duplications) affecting genes involved in eye development contributed to the etiology of anophthalmia, microphthalmia, and coloboma.MethodsThe affected individuals were evaluated for the presence of deletions and duplications in genomic DNA by a very high-resolution array comparative genomic hybridization.ResultsArray analysis of 32 patients detected one case with a deletion encompassing the renal-coloboma syndrome associated gene PAX2. Nonpolymorphic copy number changes were also observed at several candidate chromosomal regions, including 6p12.3, 8q23.1q23.2, 13q31.3, 15q11.2q13.1, 16p13.13, and 20q13.13.ConclusionThis study identified the first patient with the typical phenotype of the renal-coloboma syndrome caused by a submicroscopic deletion of the coding region of the PAX2 gene. The finding suggests that PAX2 deletion testing should be performed in addition to gene sequencing as a part of molecular evaluation for the renal-coloboma syndrome. Array comparative genomic hybridization testing of 32 affected individuals showed that genomic deletions and duplications are not a common cause of nonsyndromic anophthalmia, microphthalmia, or coloboma but undoubtedly contribute to the etiology of these eye anomalies. Therefore, array comparative genomic hybridization testing represents an important and valuable addition to candidate gene sequencing in research and diagnostics of ocular birth defects.
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