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Biomedical subjects

A H Olney

Publications and source records attributed to A H Olney.

At least 19 recordsLinked to original sources

Hypothalamic dysfunction with polydactyly and hypoplastic nails.

Attention to a careful diagnostic work-up should be given to patients with postaxial polydactyly or apparently isolated hypothalamic hamartomas. Early recognition of the condition is critical for management, particularly for anticipating and preventing endocrine emergencies. Conservative management of the hypothalamic hamartoma should be stressed. Finally, detailed genetic counseling should be provided to the family regarding autosomal-dominant inheritance as well as the wide range of interfamilial and intrafamilial variability.

Brain Diseases↗

Kabuki syndrome.

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Abnormalities, Multiple↗

Turner syndrome.

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Female↗

GLI3 frameshift mutations cause autosomal dominant Pallister-Hall syndrome.

Pallister-Hall syndrome (PHS, M146510) was first described in 1980 in six newborns. It is a pleiotropic disorder of human development that comprises hypothalamic hamartoma, central polydactyly, and other malformations. This disorder is inherited as an autosomal dominant trait and has been mapped to 7p13 (S. Kang et al. Autosomal dominant Pallister-Hall syndrome maps to 7p13. Am. J. Hum. Genet. 59, A81 (1996)), co-localizing the PHS locus and the GLI3 zinc finger transcription factor gene. Large deletions or translocations resulting in haploinsufficiency of the GLI3 gene have been associated with Greig cephalopolysyndactyly syndrome (GCPS; M175700) although no mutations have been identified in GCPS patients with normal karyotypes. Both PHS and GCPS have polysyndactyly, abnormal craniofacial features and are inherited in an autosomal dominant pattern, but they are clinically distinct. The polydactyly of GCPS is commonly preaxial and that of PHS is typically central or postaxial. No reported cases of GCPS have hypothalamic hamartoma and PHS does not cause hypertelorism or broadening of the nasal root or forehead. The co-localization of the loci for PHS and GCPS led us to investigate GLI3 as a candidate gene for PHS. Herein we report two PHS families with frameshift mutations in GLI3 that are 3' of the zinc finger-encoding domains, including one family with a de novo mutation. These data implicate mutations in GLI3 as the cause of autosomal dominant PHS, and suggest that frameshift mutations of the GLI3 transcription factor gene can alter the development of multiple organ systems in vertebrates.

Abnormalities, Multiple↗

Robin sequence.

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Humans↗

Stickler syndrome.

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Chromosome Aberrations↗

Hypoplasia of the cerebellar vermis and corpus callosum in thrombocytopenia with absent radius syndrome on MRI studies.

Thrombocytopenia with absent radius (TAR) syndrome is infrequently (7%) associated with mental retardation. In those cases, the mental deficiency is presumed to be a consequence of intracranial hemorrhage due to the thrombocytopenia. We report on 2 infants with TAR syndrome. One had developmental delay with evidence of cerebral dysgenesis by magnetic resonance imaging (MRI). Such findings have not been noted in the literature, but may not have been investigated in most cases. The other infant with TAR syndrome, who has had normal psychomotor development, has a normal brain on MRI scan. Detailed neuroimaging studies, preferably MRI, should be considered in the evaluation of patients with TAR syndrome, especially when there are documented signs of developmental delay, with or without a history of intracranial hemorrhage.

Abnormalities, Multiple↗