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Biomedical subjects

J Furth

Publications and source records attributed to J Furth.

At least 19 recordsLinked to original sources

Intragenic single nucleotide polymorphism haplotype analysis of SUR1 mutations in familial hyperinsulinism.

Familial hyperinsulinism (HI; MIM# 256450) is an autosomal recessive disorder of pancreatic beta-cell function, characterized by inadequate suppression of insulin secretion despite severe recurrent fasting hypoglycemia. Subtotal pancreatectomy is frequently required to prevent permanent neurologic sequelae. The incidence of HI in the Caucasian population is estimated at 1:50,000, however an apparent increased incidence among Ashkenazi Jews and Saudi Arabian Arabs has been reported. A locus for HI was assigned by linkage analyses to human chromosome 11p15.1. The sulfonylurea receptor (MIM# 600509, SUR1) and the potassium channel, inwardly rectifying, subfamily J member 11 (MIM# 600937, KIR6.2) genes, 2 components of the beta-cell K(ATP) channel, are clustered in this chromosomal region, and mutations in these genes have been implicated in HI. We previously demonstrated that two mutations in the SUR1 gene are present on approximately 88% of HI-associated chromosomes in Ashkenazi Jewish patients. Haplotype analysis with microsatellite markers flanking the gene revealed that one mutation (delF1388), reported only in Ashkenazi probands, occurred on two related extended haplotypes. By contrast, the second, more common mutation (3992-9g-->a) was associated with nine different intergenic haplotypes and has been reported in non-Jewish HI patients as well. In this study, we evaluated disease-associated chromosomes from 41 Ashkenazi Jewish and 2 non-Jewish HI patients carrying the 3992-9g-->a mutation by assessing haplotypes defined by nine common single nucleotide polymorphisms (SNPs), six in the SUR1 gene, and three in the KIR6.2 gene. Our results indicate that all 54 chromosomes carrying the 3992-9g-->a mutation in the Jewish patients appear to have originated from one founder mutation, whereas the same mutation on chromosomes from non-Jewish patients originated independently. Furthermore, our findings have implications concerning the HI-associated chromosomes on which no mutation has been identified.

ATP-Binding Cassette Transporters↗

Gonad-gonadotrope interactions: plasma gonadotrophin levels and tumour induction in long-term castrated rats.

The patterns of gonadotrophin secretion in intact controls and in male and female rats castrated for up to 36 months were established utilizing specific radioimmunoassay methods. Plasma LH increased 14-16 fold and FSH rose 4-8 fold in rats of either sex in the first 30 day interval showed an additional 76% increase of LH in both sexes and increases in FSH of 32 and 61% in males and females, respectively. These levels were maintained for an additional 34 months. The number of hypophyseal gonadotrophin containing cells, studied by immunohistochemical localization techniques, increased following gonad removal in a pattern similar to that for the circulating hormones. Development of gonadotrophin secreting concentrations which suggests that the gonadotropes are uniquely resistant to tumourogenesis unlike mammotropes, thyrotropes, and corticotropes.

Animals↗

Multipotent lipotropic hormones. In search of a pituitary cell producing multipotent LPH.

The affinity for antiserum to the multipotent lipotropic hormone (beta-LPH) was tested by immunohistochemical staining of all known cell types in normal and certain abnormal mouse, rat, and human pituitaries. Results indicate that beta-LPH has ACTH, MSH, LH and StH(GH) immunologically cross-reacting determinants. Affinities of anti-LPH for TtH and MtH (prolactin) were not detected in normal pituitaries, but thyrotropic tumor cells reacted with anti-LPH. Absorption experiments confirm that the single polypeptide hormone of the pituitary, beta-LPH, is coded for ACTH and MSH activities. The multi-functional hormone, LPH probably is secreted by the adrenotropes. In addition to ACTH and MSH, it probably contains other antigenic and biologic determinants. Some of these may accentuate its lipotropic activities; others may be incidental. These are points calling for further correlated structural, biologic, and immunologic investigations.

Adrenocorticotropic Hormone↗