Search PubMedSearch

Biomedical subjects

R H Bigley

Publications and source records attributed to R H Bigley.

8 recordsLinked to original sources

Cosegregation of elastin-associated microfibrillar abnormalities with the Marfan phenotype in families.

The Marfan syndrome is a serious heritable connective-tissue disorder characterized primarily by ocular, cardiovascular, and musculoskeletal abnormalities but also involving multiple other tissues and organs of the body. Inherited as an autosomal dominant disorder, the etiology and pathogenesis of the Marfan syndrome are presently unknown. We have documented consistent apparent deficient content of elastin-associated microfibrillar fibers by indirect immunofluorescent (IF) studies of Marfan skin, as well as deficient accumulation of related fibrous materials in cultures of Marfan fibroblasts as compared with normal controls and patients with other heritable disorders of connective tissue. These data have suggested that abnormalities in the microfibrillar component of elastic-fiber systems may have a role in the etiology and pathogenesis of the Marfan syndrome. In the present study, we have analyzed the IF staining patterns of skin and fibroblast cultures from Marfan syndrome patients and normal first-degree relatives in nine Marfan kindreds. Three of these families had at least one affected individual in each of 2 generations, permitting intergenerational comparison of IF patterns. Six kindreds had one or more affected individuals in a single generation, making comparisons between siblings and/or parent-child possible. In all cases, IF abnormalities cosegregated with the Marfan phenotype and all nonaffected family members were normal. Within family groups containing more than one affected individual, the IF staining patterns were similar between affected patients. These data provide further confirmation of consistent and relatively specific deficiency of microfibrillar fibers in Marfan syndrome.

Adolescent

Hemolytic anemia due to pyruvate kinase deficiency: characterization of the enzymatic activity from eight patients.

We have studied the red cell pyruvate kinase (PK) variants from eight patients representing five families with pyruvate kinase deficiency-associated hemolytic anemia. The kinetic properties, electrophoretic mobilities, and immunological reactivity with anti-normal red cell pyruvate kinase were determined. The patients differ in the severity of their clinical condition and in the molecular properties of their red cell pyruvate kinase variants. The most seriously affected patient (PK Beaverton) has no electrophoretically demonstrable red cell isozymes. The activity present is due to the M2 isozyme, however red cell isozyme can be detected immunologically. PK Molalla and PK Lake Oswego are thermolabile variants with normal kinetic parameters. PK Molalla, in addition, has altered electrophoretic mobility. PK Multnomah and PK Milwaukie have decreased affinity for the substrate phosphoenolpyruvate, and PK Multnomah also has altered electrophoretic mobility. PK Coos Bay shows electrophoretic variation and a slightly decreased affinity for phosphoenolpyruvate consistent with an increased modulating effect of fructose-1,6-diphosphate.

Adolescent

Gene dosage: evidence for assignment of erythrocyte acid phosphatase locus to chromosome 2.

A child, trisomic for the distal short arm of chromosome 2 due to a familial 2/18 translocation, has elevated levels of activity of erythrocyte acid phosphatase [orthophosphoric-monoester phosphohydrolase (acid optimum), 3.1.3.2] Ferguson-Smith et al. [(1973) Nature New Biol. 243, 271-274] previously had found decreased levels of activity and loss of expression of an erythrocyte acid phosphatase allele in a subject who lacked one of the two homologous regions containing the distal three bands of chromosome 2. They suggested that the locus for erythrocyte acid phosphatase is located on that segment. Our findings provide further evidence for this assignment and also suggest an in vivo gene dosage effect of this autosomal locus, which depends on both the type and number of alleles present.

Acid Phosphatase

Ascorbate and phagocyte function.

Scorbutic guinea pig neutrophils (PMN) were found to produce H2O2 and kill Staphylococcus aureus as well as control PMN, suggesting that ascorbate does not contribute significantly to phagocyte H2O2 production or bacterial killing. Total and reduced ascorbate contents of human PMN was observed to fall upon phagocytosis, whereas dehydroascorbate increased to a lesser extent. These observations are consistent with the view that ascorbate constitutes a functional part of the PMN's redox-active components and may thus function to protect cell constituents from denaturation by the oxidants produced during phagocytosis.

2,3-Diketogulonic Acid