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Biomedical subjects

M Swift

Publications and source records attributed to M Swift.

At least 55 records · Page 3Linked to original sources

X-linked dilated cardiomyopathy. Molecular genetic evidence of linkage to the Duchenne muscular dystrophy (dystrophin) gene at the Xp21 locus.

BACKGROUND: X-linked cardiomyopathy (XLCM) is a rapidly progressive primary myocardial disorder presenting in teenage males as congestive heart failure. Manifesting female carriers have later onset (fifth decade) and slower progression. The purpose of this study was to localize the XLCM gene locus in two families using molecular genetic techniques. METHODS AND RESULTS: Linkage analysis using 60 X-chromosome-specific DNA markers was performed in a previously reported large XLCM pedigree and a smaller new pedigree. Two-point and multipoint linkage was calculated using the LINKAGE computer program package. Deletion analysis included multiplex polymerase chain reaction (PCR). Dystrophin protein was evaluated by Western blotting with N-terminal and C-terminal dystrophin antibody. Linkage of XLCM to the centromeric portion of the dystrophin or Duchenne muscular dystrophy (DMD) locus at Xp21 was demonstrated with combined maximum logarithm of the scores of +4.33, theta = 0 with probe XJ1.1 (DXS206) using two-point linkage and +4.81 at XJ1.1 with multipoint linkage analysis. LOD scores calculated using other proximal DMD genomic and cDNA probes and polymerase chain reaction polymorphisms supported linkage. No deletions were observed. Abnormalities of cardiac dystrophin were shown by Western blotting with N-terminal dystrophin antibody, whereas skeletal muscle dystrophin was normal, suggesting primary involvement of the DMD gene with preferential involvement of cardiac muscle. CONCLUSIONS: XLCM is due to an abnormality within the centromeric half of the dystrophin genomic region in heart. This abnormality could be due to 1) a point mutation in the 5' region of the DMD coding sequence preferentially affecting cardiac function, 2) a cardiac-specific promoter mutation that alters expression in this tissue, 3) splicing abnormalities, resulting in an abnormal cardiac protein, or 4) deletion mutations undetectable by Southern and multiplex polymerase chain reaction analysis.

Adolescent↗

Prolonged survival of Bordetella pertussis in a simple buffer after nasopharyngeal secretion aspiration.

A simple method for recovery of Bordetella pertussis is described using phosphate-buffered saline containing a casein hydrolysate for transporting secretions collected by nasopharyngeal aspirate. Bordetella pertussis was reisolated from 92% of clinical specimens held at 4 degrees C for 1 week and from all specimens held at -20 degrees C. This method will facilitate the centralization of laboratory facilities for the diagnosis of pertussis.

Bacteriological Techniques↗

Power of sib-pair and sib-trio linkage analysis with assortative mating and multiple disease loci.

Sib-pair linkage analysis has been proposed for identifying genes that predispose to common diseases. We have shown that the presence of assortative mating and multiple disease-susceptibility loci (genetic heterogeneity) can increase the required sample size for affected-affected sib pairs several fold over the sample size required under random mating. We propose a new test statistic based on sib trios composed of either one unaffected and two affected siblings or one affected and two unaffected siblings. The sample-size requirements under assortative mating and multiple disease loci for these sib-trio statistics are much smaller, under most conditions, than the corresponding sample sizes for sib pairs. Study designs based on data from sib trios with one or two affected members are recommended whenever assortative mating and genetic heterogeneity are suspected.

Alleles↗

Incidence of cancer in 161 families affected by ataxia-telangiectasia.

BACKGROUND: Ataxia-telangiectasia is an autosomal recessive syndrome in which cancers develop in affected homozygotes at a rate approximately 100 times higher than in unaffected age-matched subjects. Retrospective studies have shown that persons heterozygous for the ataxia-telangiectasia gene, who make up about 1 percent of the general population, also have an excess risk of cancer, particularly breast cancer in women. Patients with ataxia-telangiectasia and cells derived from homozygotes and heterozygotes are unusually sensitive to ionizing radiation. METHODS: Cancer incidence and mortality, mortality from ischemic heart disease, and mortality from all causes were compared prospectively for a mean of 6.4 years in 1599 adult blood relatives of patients with ataxia-telangiectasia and 821 of their spouses, who served as controls, in 161 families affected by ataxia-telangiectasia. In a case-control substudy, we compared documented occupational and fluoroscopic diagnostic exposures to radiation in the 19 female blood relatives in whom breast cancer was first diagnosed during the period of prospective observation with the exposures in 57 matched blood relatives who did not have breast cancer. RESULTS: Cancer rates were significantly higher in the group of blood relatives than in their spouses, specifically in the subgroup of 294 blood relatives who were known to be heterozygous for the ataxia-telangiectasia gene. The estimated risk of cancer of all types among heterozygotes as compared with noncarriers was 3.8 in men and 3.5 in women, and that for breast cancer in women was 5.1. Among the blood relatives, women with breast cancer were more likely to have been exposed to selected sources of ionizing radiation than controls without cancer (odds ratio = 5.8, P = 0.005). Male and female blood relatives also had 3-fold and 2.6-fold excess mortality from all causes, respectively, from the ages of 20 through 59 years. CONCLUSIONS: The ataxia-telangiectasia gene predisposes heterozygotes to cancer, particularly breast cancer in women. There is also excess mortality from all causes in adults under the age of 60. Diagnostic or occupational exposure to ionizing radiation probably increases the risk of breast cancer in women heterozygous for ataxia-telangiectasia.

Adult↗

Cutaneous granulomatous lesions in patients with ataxia-telangiectasia.

Ataxia-telangiectasia is a genetic syndrome with progressive cerebellar ataxia, oculocutaneous telangiectasias and other skin manifestations, variable immune system defects, chronic progressive sinopulmonary disease, and a high incidence of cancer. Cutaneous granulomas developed and persisted in eight patients with ataxia-telangiectasia, despite treatment with intravenously administered immune globulin, topical antibiotic therapy, and potent topical corticosteroid therapy. We were unable to identify an infectious agent; the granulomas may develop in an attempt to localize antigen in the presence of a dysfunctional immune system.

Adolescent↗

Psychiatric disorders in 36 families with Wolfram syndrome.

OBJECTIVE: The purpose of this study was to test the hypothesis that heterozygous carriers of the gene for the Wolfram syndrome, who constitute about 1% of the population, are predisposed to significant psychiatric illness. The Wolfram syndrome is an autosomal recessive neurodegenerative syndrome in which 25% of the individuals who are homozygous for the condition have severe psychiatric symptoms that lead to suicide attempts or psychiatric hospitalizations. METHOD: The authors collected questionnaires, death certificates, and hospital records for blood relatives and their spouses in 36 families of individuals with the Wolfram syndrome and compared the proportion of blood relatives who had had psychiatric hospitalizations, had committed suicide, or had self-reported mental illness to the proportion of spouses with the same manifestations. RESULTS: The proportion of blood relatives who had had psychiatric hospitalizations, had committed suicide, or had self-reported mental illness significantly exceeded the proportion of spouses with the same manifestations. CONCLUSIONS: Since heterozygous carriers of the gene for the Wolfram syndrome are 50-fold more common among the blood relatives than among the spouses, the larger proportion among blood relatives is evidence that heterozygous carriers of the gene for the Wolfram syndrome are predisposed to significant psychiatric illness.

Adult↗

Cancers in 44 families with ataxia-telangiectasia.

Cancer incidence was measured retrospectively in 574 close blood relatives of white ataxia-telangiectasia (A-T) patients and 213 spouse controls in 44 previously unreported families. The cancer incidence rate in the adult blood relatives was significantly elevated over the rate in the spouse controls (rate ratio = 3.9, p less than 0.01). For heterozygous carriers of the A-T gene, the relative risk of cancer was estimated to be 6.1 (p less than 0.005) as compared with nonheterozygotes. The most frequent cancer site in the blood relatives was the female breast, with nine cancers observed. These findings provide further support for the hypothesis that heterozygotes for the A-T gene are predisposed to cancer.

Adult↗

Psychiatric findings in Wolfram syndrome homozygotes.

Diabetes mellitus and bilateral optic atrophy are the defining characteristics of the autosomal recessive Wolfram syndrome. Diabetes insipidus, neurogenic bladder, deafness, and other neurological manifestations are frequent. A review was made of the medical records of 68 Wolfram syndrome patients, aged between 8 and 43 years, identified by casefinding throughout the USA. 41 of the patients (60%) had episodes of severe depression, psychosis, or organic brain syndrome, as well as impulsive verbal and physical aggression. These symptoms were very severe in 17 patients (25%), of whom 12 required admission to a psychiatric hospital and 11 attempted suicide. We conclude that the Wolfram syndrome gene predisposes homozygotes to psychiatric illness.

Adolescent↗

Obesity, hypertension, and renal disease in relatives of Bardet-Biedl syndrome sibs.

The Bardet-Biedl syndrome is a rare autosomal recessive disorder characterized by pigmentary retinopathy, obesity, polydactyly, hypogonadism, and mental retardation. Renal abnormalities, hypertension, acquired heart disease, and hepatic fibrosis also occur in homozygotes. Two adult Bardet-Biedl sibs, a man with hypertension and cardiomegaly and a woman with biliary cirrhosis, and 75 relatives in 5 generations of the extended family were identified. Hospital records for major illnesses, death certificates, and autopsy reports were examined. The frequent observation of obesity, hypertension, diabetes mellitus, and renal disease in first-degree relatives, obligate gene carriers, and other blood relatives raise the possibility that Bardet-Biedl heterozygotes are also predisposed to these disorders.

Adult↗

Cancer predisposition of ataxia-telangiectasia heterozygotes.

Ataxia-telangiectasia (A-T) is a progressive neurologic disorder in which there is varied immune dysfunction, an excess sensitivity to ionizing radiation, and a striking predisposition to cancer. It is the autosomal recessive syndrome for which there is the strongest evidence, derived from retrospective studies of cancer incidence and mortality in A-T families, that the heterozygote is predisposed to cancer. We present, in tabular form, the specific cancer sites or types most likely to be associated with A-T heterozygosity. These include solid tumors of the breast, pancreas, stomach, bladder, and ovary, and chronic lymphocytic leukemia. We also introduce a new method to test these associations. As soon as molecular probes for the A-T allele(s) are available, this new research design will be used to test rigorously each association, hypothesized on the basis of previous data, between a specific cancer site and A-T heterozygosity.

Ataxia Telangiectasia↗

Genetic aspects of ataxia-telangiectasia.

Ataxia-telangiectasia (A-T) is an autosomal recessive syndrome whose principal features are progressive cerebellar ataxia, oculocutaneous telangiectasia, varied immune defects, a high cancer incidence, and clinical and cellular sensitivity to ionizing radiation and certain radiomimetic compounds. Cell and chromosome complementation studies have provided some evidence that mutations leading to the A-T phenotype may have occurred at more than one locus. Mapping with DNA polymorphisms has localized the predominant A-T mutation to chromosome 11q22-23. Heterozygous carriers of an A-T allele constitute about 1% of the United States population and are at a high risk for certain cancers, most notably female breast cancer. Cloning of the A-T allele(s) will assist in the early or prenatal diagnosis of A-T and provide a firm basis for determining who, in the general population, carries this gene and is therefore at a high risk of cancer.

Ataxia Telangiectasia↗

Effective testing of gene-disease associations.

We propose a method for testing any hypothesized association between a candidate allele, for which there is a specific laboratory test, and a common chronic disease. Families in which this allele is segregating are identified through index individuals who are homozygous or heterozygous for the allele. The sample consists of the subset of identified families who also have at least one member with the common disease of interest. For each independent family in this subset, select one person with the disease and determine if he or she is heterozygous for the allele. The observed proportion of heterozygotes in this sample is compared to the proportion expected on the basis of each diseased relative's null probability of being heterozygous for the allele; this null probability depends only on the relative's relationship to the index individual and the population allele frequency. We provide these null probabilities, develop appropriate inference procedures, discuss sample size requirements, and compare this method to a standard case-control design. Results using this method are unlikely to be influenced by confounders, systematic bias, or genetic heterogeneity.

Alleles↗

Genetically programmed selective islet beta-cell loss in diabetic subjects with Wolfram's syndrome.

Insulin-producing beta-cells were selectively absent from the islets of Langerhans in postmortem specimens from two patients with Wolfram's syndrome. In families with multiple cases of this syndrome, we found a very high concordance rate (r = .910, P less than .001) among siblings for age at onset of diabetes mellitus. Taken together with the lack of markers for an autoimmune process, these findings suggest that diabetes mellitus in this syndrome results from genetically programmed selective beta-cell death.

Adult↗

Evidence for an elevated frequency of in vivo somatic cell mutations in ataxia telangiectasia.

Somatic cell mutation frequency in vivo was measured in individuals with high cancer risk who were from ataxia telangiectasia (A-T) families. The assay for somatic mutation measures the frequency of variant erythrocytes which are progeny of erythroid precursor cells with mutations that result in a loss of gene expression at the polymorphic glycophorin A (GPA) locus. Samples from 14 of 15 A-T homozygotes showed high frequencies of GPA gene expression-loss variant cells with normal expression of only one of the two alleles at the GPA locus (i.e., GPA hemizygous variant cells). The mean elevation of the frequency of hemizygous variant cells over those in normal controls and unaffected family members was 7-14-fold. A-T homozygotes also showed an increase in the frequency of cells in which one allele at the GPA locus had lost expression and in which the remaining allele was expressed at a homozygous level (i.e., GPA homozygous variant cells). Family members who are obligate A-T heterozygotes did not appear to have a significantly elevated frequency of GPA hemizygous or homozygous variant cells. These indications of elevated in vivo frequencies of variant erythrocytes in A-T homozygotes support a causal link between susceptibility to somatic mutation and susceptibility to cancer.

Adult↗

Circulatory disease mortality and diabetes incidence in 27 families with Friedreich ataxia.

Friedreich ataxia (FRA) is an autosomal recessive neuromuscular disorder in which nearly all affected homozygotes eventually develop significant cardiomyopathy and a substantial proportion also develop diabetes mellitus. Diabetes and early heart disease have been observed previously in close blood relatives of FRA patients. To test the hypothesis that FRA heterozygotes may have elevated rates of heart disease mortality and diabetes incidence, we compared the rates of these conditions in 1,191 adult blood relatives to those in 745 nonblood relative spouse controls in 27 families of FRA patients. We found no evidence for an excess of diabetes in the blood relatives. For three broad categories of circulatory disease mortality, the FRA blood relatives had significantly higher rates than the spouse controls. However, when each relative's prior probability of heterozygosity for the FRA gene was taken into account, the resulting estimates of relative risk of dying from circulatory disease for FRA heterozygotes compared to nonheterozygotes were not significantly elevated. Since the latter analysis provides the best test of the hypothesis, our data did not strongly support the hypothesis that FRA heterozygotes are at increased risk of cardiac death.

Cardiovascular Diseases↗