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Biomedical subjects

A Jammal

Publications and source records attributed to A Jammal.

7 recordsLinked to original sources

Molecular basis of hypotrichosis with juvenile macular dystrophy in two siblings.

BACKGROUND: Hypotrichosis with juvenile macular dystrophy (HJMD) is a rare autosomal recessive disorder characterized by sparse and short scalp hair from birth, followed within a few years by progressive macular degeneration leading to blindness. HJMD was shown to result from mutations in CDH3 encoding P-cadherin. OBJECTIVES: In the present study, we attempted to identify the molecular basis of abnormal hair growth in two siblings of Arab Muslim origin with hypotrichosis but no visual symptoms. METHODS: Mutation analysis was performed using direct sequencing and polymerase chain reaction-restriction fragment length polymorphism analysis. RESULTS: Patients displayed sparse and short hair since birth. Significant macular degenerative pigmentary changes were noticed in the face of normal visual acuity. Despite the fact that a single CDH3 mutation had previously been described in several families of Israeli Arab Muslim origin, the two affected patients were found to be homozygous carriers of a novel nonsense mutation (Y615X) predicted to result in premature termination of P-cadherin translation. CONCLUSIONS: The present results indicate that all patients with congenital hypotrichosis should undergo thorough fundus examination, which, when revealing pigmentary macular changes, can be considered as indicative of an underlying CDH3 causative mutation.

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Nephrogenic diabetes insipidus: an X chromosome-linked dominant inheritance pattern with a vasopressin type 2 receptor gene that is structurally normal.

Nephrogenic diabetes insipidus is a rare hereditary disorder, most commonly transmitted in an X chromosome-linked recessive manner and characterized by the lack of renal response to the action of antidiuretic hormone [Arg8]vasopressin. The vasopressin type 2 receptor (V2R) has been suggested to be the gene that causes the disease, and its role in disease pathogenesis is supported by mutations within this gene in affected individuals. Using the PCR, denaturing gradient gel electrophoresis, and direct DNA sequencing, we examined the V2R gene in four unrelated kindreds. In addition, linkage analysis with chromosome Xq28 markers was done in one large Brazilian kindred with an apparent unusual X chromosome-linked dominant inheritance pattern. In one family, a mutation in codon 280, causing a Tyr-->Cys substitution in the sixth transmembrane domain of the receptor, was found. In the other three additional families with nephrogenic diabetes insipidus, the V2R-coding region was normal in sequence. In one large Brazilian kindred displaying an unusual X chromosome-linked dominant mode of inheritance, the disease-related gene was localized to the same region of the X chromosome as the V2R, but no mutations were found, thus raising the possibility that this disease is caused by a gene other than V2R.

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