Search PubMed⌕ Search

Biomedical subjects

C F Sing

Publications and source records attributed to C F Sing.

At least 91 records · Page 5Linked to original sources

Apolipoprotein E polymorphism and plasma cholesterol response to probucol.

Probucol has been shown to be an effective and well-tolerated cholesterol-lowering drug. However, response in terms of cholesterol reduction has been shown to vary significantly among individuals. The purpose of this study was to assess the role of apolipoprotein E polymorphism in determining this variation. A retrospective study of 89 hypercholesterolemic type II patients who had been treated with probucol (1 g/d) and for whom the apolipoprotein E phenotype was known was carried out. The patients were first grouped into those with heterozygous familial hypercholesterolemia (FH) and those considered to have other forms of hypercholesterolemia (non-FH). Further subclassification of the individuals in both groups as IIa or IIb, allowed the definition of four diagnostic classes, FH IIa or IIb and non-FH IIa or IIb. Among these classes there was no significant heterogeneity for the relationship between response and age or sex. After correction for between-class heterogeneity in duration of probucol treatment, comparison of individuals with the apo E3/3 phenotype with those carrying the epsilon 4 allele showed significant differences in cholesterol reduction both absolute change and percent change. Further contrasts between diagnostic and apo E genotype stratifications of these data showed that the FH patients carrying the epsilon 4 allele had the greatest reduction in cholesterol level.

Adult↗

A cladistic analysis of phenotypic associations with haplotypes inferred from restriction endonuclease mapping. I. Basic theory and an analysis of alcohol dehydrogenase activity in Drosophila.

Because some genes have been cloned that have a known biochemical or physiological function, genetic variation can be measured in a population at loci that may directly influence a phenotype of interest. With this measured genotype approach, specific alleles or haplotypes in the probed DNA region can be assigned phenotypic effects. In this paper we address several problems encountered in implementing the measured genotype approach with restriction site data. A number of analytical problems arise in part as a consequence of the linkage disequilibrium that is commonly encountered when dealing with small DNA regions: 1) different restriction site polymorphisms are not statistically independent, 2) the sites being measured are not likely to be the direct cause of the associated phenotypic effects, 3) haplotype classes may be phenotypically heterogeneous, and 4) the sites that are most strongly associated with phenotypic effects are not necessarily the most closely linked to the actual genetic cause of the effects. When recombination and gene conversion are rare, the primary cause of linkage disequilibrium is history (mutational origin, genetic drift, hitchhiking, etc.). We deal with historical association directly by producing a cladogram that partially reconstructs the evolutionary history of the present-day haplotype variability. The cladogram defines a nested analysis of variance that simultaneously detects phenotypic effects, localizes the effects within the cladogram, and identifies haplotypes that are potentially heterogeneous in their phenotypic associations. The power of this approach is illustrated by an analysis of the associations between alcohol dehydrogenase (ADH) activity and restriction site variability in a 13-kb fragment surrounding the ADH locus in Drosophila melanogaster.

Alcohol Dehydrogenase↗

Genetic relationship between a lymphocyte membrane abnormality and blood pressure in spontaneously hypertensive stroke prone and Wistar-Kyoto rats.

The fluxes of sodium and potassium across the lymphocyte membrane in spontaneously hypertensive, stroke prone rats (SHRSP) are greater than those in Wistar-Kyoto rats (WKY). In order to define the relationship of these abnormal membrane traits to arterial pressure elevation, their distributions were studied in F1, F2, and backcross progeny of the cross of SHRSP and WKY rats. In the F1 generation, arterial pressure and potassium efflux values resembled those of the WKY parents suggesting that these traits are dominant in the normotensive rat; sodium influx values resembled those of the SHRSP parents. There was poor correlation (r = 0.45) between blood pressure and sodium influx in the F2 generation. There was a high correlation between blood pressure and potassium efflux (r = 0.86), suggesting that these two traits may be under the control of a common genetic mechanism.

Animals↗

The use of measured genotype information in the analysis of quantitative phenotypes in man. III. Simultaneous estimation of the frequencies and effects of the apolipoprotein E polymorphism and residual polygenetic effects on cholesterol, betalipoprotein and triglyceride levels.

We have begun a measured genotype approach to the genetic analysis of lipid and lipoprotein variability. This approach enables one to simultaneously estimate the frequencies and effects of alleles at specific loci along with the residual polygenetic variance component. In this study we consider the contribution of three common alleles at the locus coding for apolipoprotein E to interindividual variation of total cholesterol, betalipoprotein, and triglyceride levels. A sample of 102 nuclear families consisting of 434 individuals was studied. The frequencies of the epsilon 2, epsilon 3, and epsilon 4 alleles in this sample are 0.137, 0.740, and 0.123, respectively. In separate analyses of cholesterol and betalipoprotein levels, a complete model that includes the effects of the six apo E genotypes, unmeasured polygenes, and individual specific environmental effects fits these data significantly better than a reduced model that does not include the effects of the apo E polymorphism or a reduced model that does not include the effects of polygenes. On the average the epsilon 2 allele lowers total cholesterol and betalipoprotein levels by 0.425 mmol/l and 0.811 units, respectively. The epsilon 4 allele is associated with an average increase of these phenotypes by 0.255 mmol/l and 0.628 units, respectively. Simultaneous estimates of the interindividual variability of total cholesterol levels attributable to the apo E polymorphism and to residual polygenic effects are 8% and 56%, respectively. For betalipoprotein levels, we simultaneously estimate these values to be 7% and 42%, respectively. A reduced model including the effects of polygenes but not the effects of the apo E polymorphism fitted the triglyceride data as well as the complete model. The estimate of the fraction of interindividual variability associated with polygenetic effects was 26.5%. We review our present understanding of the genetic architecture underlying variability of cholesterol levels in the population at large and infer that the majority of the genetic variability may be accounted for by polymorphic gene loci with moderate effects on cholesterol levels.

Apolipoproteins E↗

Sodium-lithium countertransport in ambulatory hypertensive and normotensive patients.

Numerous studies have reported the mean value for Na+-Li+ countertransport to be increased in red blood cells from patients with essential hypertension. Although concomitant variables including age, body size, national origin, geographic location, gender, and family history of hypertension may affect Na+-Li+ countertransport values, most case-control studies have failed to assess the contribution of these factors to the differences in Na+-Li+ countertransport between hypertensive and normotensive groups. The present study was undertaken to provide estimates of Na+-Li+ countertransport in hypertensive and normotensive subjects after taking into account these potentially confounding sources of variation. In 187 subjects undergoing medical evaluation at the Mayo Clinic, Rochester, MN, the combined effects of variation in age, height, and weight accounted for 20.6% of the interindividual variability in Na+-Li+ countertransport. After adjustment to remove variability due to these concomitants, differences in national origin, region of birth, and place of current residence made no additional contribution to variability in this trait. There was no significant difference in mean adjusted Na+-Li+ countertransport between men and women (0.41 +/- 0.17 vs 0.40 +/- 0.12 [SD] mmol Li efflux/L red blood cells/hr; n = 107). The mean value for adjusted Na+-Li+ countertransport was significantly greater (p less than or equal to 0.001) in subjects with essential hypertension (0.44 +/- 0.15 mmol/L red blood cell/hr; n = 104) compared with normotensive subjects (0.31 +/- 0.07 mmol/L red blood cells/hr; n = 39) or subjects with borderline blood pressure elevation (0.35 +/- 0.11 mmol/L red blood cells/hr; n = 21). Subjects with a family history of hypertension in at least one parent or full sibling had significantly higher (p less than 0.02) Na+-Li+ countertransport values (0.42 +/- 0.16 mmol/L red blood cells/hr; n = 111) than those with no family history of hypertension (0.37 +/- 0.13 mmol/L red blood cells/hr; n = 76). These results suggest that increased mean Na+-Li+ countertransport in hypertensive subjects in this sample cannot be attributed to confounding effects of variation in age, body size, gender, national origin, birthplace, or residence. Forty-eight percent of subjects with essential hypertension had adjusted Na+-Li+ countertransport values above the range observed in normotensive controls.

Age Factors↗

Genetic and environmental influences on human birth weight.

Path-analytic techniques were used to demonstrate a significant influence of both fetal genes and maternal environment on birth weight in a sample of infants born to primarily white, middle-class, nonsmoking mothers. If the mother smoked before conception, however, the expression of the fetal birth-weight genes in males was significantly reduced. Multiparity was associated with an increase in genetic variance. This is the first report that genetic influences on birth weight are dependent on the environmental conditions imposed on the fetus by the mother.

Alcohol Drinking↗

Analysis of the distribution of erythrocyte sodium lithium countertransport in a sample representative of the general population.

Numerous studies of sodium-lithium countertransport (Na-Li CNT) have reported higher rates in essential hypertensives versus normotensive controls. We studied the distribution and the mode of inheritance of Na-Li CNT using a sample of 238 unrelated individuals and a sample of 245 individuals in 50 pedigrees all sampled from the population at large. The distribution of Na-Li CNT is continuous and bimodal. Our results indicate that there is a large genetic contribution to the distribution of Na-Li CNT. The hypothesis that the effect that causes bimodality is transmitted from generation to generation is supported by the fit to these data of a restricted transmission model with tau 2 = 0.749. We hypothesize that this deviation of tau 2 from its Mendelian expectation may be attributable to heterogeneity in the etiology of the bimodality in the Na-Li CNT distribution in the population at large.

Adolescent↗

A statistical analysis of spot variation using the two-dimensional polyacrylamide gel electrophoresis.

For the development of valid algorithms for matching protein spots between two-dimensional gels, it is essential that one has an understanding of the relative roles of the many sources of variability affecting the location of spots. We first consider the contribution of observers to the measurement variability of spot location, arriving at a simple model for these effects. Next we present an analysis of the variability in spot locations for a sample of gels containing duplicate gels for each sample. Our data indicate that both differences between duplicates and between samples are considerable, and that the size of the effects depends on the region of the gel being considered. In the discussion we examine several matching strategies that match large groups of gels based on algorithms which match two gels at a time.

Analysis of Variance↗

Aggregation of blood pressure in the families of children with labile high systolic blood pressure. The Muscatine Study.

The aggregation of systolic blood pressure, diastolic blood pressure, and heart rate is compared among the relatives of three groups of index children: children with low systolic blood pressure (less than the 5th percentile), middle range systolic blood pressure (between the 5th and 95th percentiles), or labile high blood pressure (above the 95th percentile when first sampled but below the 95th percentile when resampled four to six months later). Both systolic and diastolic blood pressures aggregate more strongly in the families of children with labile high systolic blood pressure than in the families of children with middle or low range systolic blood pressure. The degree of aggregation of heart rate does not differ among the three groups. Since blood pressures aggregate so strongly in families of children with labile high systolic blood pressure, study of these children and their families may yield important information about the etiology of hypertension.

Adolescent↗

The use of measured genotype information in the analysis of quantitative phenotypes in man. I. Models and analytical methods.

Improved laboratory methods allow one to investigate the contribution of measured allelic variability at a locus physiologically involved in determining the expression of a quantitative trait. We present statistical methods that incorporate measured genotype information into the analysis of a quantitative phenotype that allows one simultaneously to detect and estimate the effects of a measured single locus and residual polygenic effects. Likelihoods are presented for the joint distribution of the quantitative phenotype and a measured genotype that are appropriate when the data are collected as a sample of unrelated individuals or as a sample of nuclear families. Application of this method to the analysis of serum cholesterol levels and the concentration of the group specific component (Gc) are presented. The analysis of the contribution of the common Gc polymorphism to the determination of quantitative variability in Gc using samples of related and unrelated individuals presents, for the first time, the simultaneous estimation of the frequencies and the effects of the genotypes at a measured locus, and the contribution of residual unmeasured polygenes to phenotypic variability.

Genotype↗

Renin heterogeneity in stroke-prone hypertensive and normotensive rats.

Six forms of renin are found in the rat kidney. We studied their secretion in renal slices from spontaneously hypertensive stroke-prone rats (SHRSP) and Wistar-Kyoto rats (WKY). Incubation media from renal slices were subjected to isoelectric focusing. Six peaks of renin activity with different isoelectric points were found. The renin concentration of each form was expressed as a percentage of the total recovered from the gel. We established that the forms secreted by renal slices of SHRSP differed from those of WKY: SHRSP slices released a higher proportion of forms focusing at the more acidic pH. The distribution of the six renin forms and of blood pressure (BP) among animals of the F1, F2, and backcross progenies resulting from the cross of SHRSP and WKY rats were studied. In the F1, BP, percentage of renin form 2, and a combination of the percentage of forms 4 + 5 + 6 were intermediate between the parental lines. The backcross rats showed BP and percentages of forms closer to their SHRSP or WKY parent. In the F2, the distribution of BP, percentage of forms 2 and 4 + 5 + 6 take the form of a unimodal distribution with a significantly larger variance than F1. The increase in the correlation between percentage of renin forms and BP, and between renin concentration of BP, in the segregating progenies over that observed in the parental lines and the F1, are support for the hypothesis that these traits are under the control of common genetic mechanisms.

Animals↗

Genetic basis for altered vascular responses to ouabain and potassium-free solution in hypertension.

Many properties intrinsic to vascular smooth muscle are altered in hypertension. It is unknown whether these abnormalities are primary traits that may contribute to the etiology of hypertension or whether these vascular differences between the hypertensive and normotensive strains are inherited independently of genetic factors that predispose to hypertension. To determine if genetic factors responsible for the predisposition for hypertension may be the same as or linked to genetic factors determining a specific vascular response, adult stroke-prone spontaneously hypertensive rats (SHRSP), normotensive Wistar-Kyoto (WKY) rats, and progeny of genetic crosses of SHRSP and WKY rats (F1, F2, F1 X WKY, F1 X SHRSP) were studied. Rats were killed and helical aortic strips were mounted in a tissue bath for isometric force recording. Contractile responses to 10(-3) M ouabain (expressed as a percent of force generated to a maximal depolarizing stimulus) were greater in aortas from SHRSP (90 +/- 9%) compared with aortas from WKY rats (38 +/- 5%, P less than 0.05). The half time for contraction in K+-free solution was more rapid in aortas from SHRSP (21 +/- 4 min) when compared with aortas from WKY rats (48 +/- 4 min, P less than 0.05). A significant positive correlation between blood pressure (tail-cuff method) and the contractile response to 10(-3) M ouabain was observed in the segregating F2 progeny. In contrast, no correlation between blood pressure and the half time for contraction in K+-free solution was observed in the segregating F2 progeny.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Genetic association of hypertension and vascular changes in stroke-prone spontaneously hypertensive rats.

Isolated tail arteries from stroke-prone spontaneously hypertensive rats (SHRSP) exhibit oscillatory contractile activity in response to norepinephrine, whereas those from normotensive Wistar-Kyoto rats (WKY) do not. To determine whether the norepinephrine-induced oscillations are related to high blood pressure or to separable genetic differences between strains, the response to norepinephrine was studied in adult SHRSP, WKY, and progeny of genetic crosses of SHRSP and WKY (F1, F2, F1 X SHRSP, F1 X WKY). Helical tail artery strips were mounted in a tissue bath for isometric force recording. Rats were classified as responders if oscillatory activity in the presence of 1.8 X 10(-7) M norepinephrine exceeded 250 mg/10 min (milligrams of force amplitude during a 10-minute interval). The blood pressures (mm Hg +/- SEM; tail cuff method) and percentage of rats exhibiting norepinephrine-induced oscillations were as follows: WKY: 109 +/- 3, 0%; F1: 129 +/- 4, 0%; F2: 150 +/- 4, 38%; F1 X WKY: 137 +/- 3, 9%; F1 X SHRSP: 188 +/- 7, 71%; SHRSP: 207 +/- 7, 100%. The distribution of the frequency of animals with oscillatory activity among the progenies was consistent with the hypothesis that a single gene locus determines the observed difference in oscillatory activity between the WKY and SHRSP strains. The allele from the SHRSP that determines the activity phenotype is recessive to the allele contributed by the normotensive WKY strain. In the segregating F2 progeny, the blood pressure of the responders was higher than that of the nonresponders (161 +/- 6 vs 144 +/- 4 mm Hg; p less than 0.05).(ABSTRACT TRUNCATED AT 250 WORDS)

Alleles↗

Lithium ion transport by erythrocytes of randomly selected blood donors and manic-depressive patients: lack of association with affective illness.

The authors measured the in vitro lithium ion ratio and maximal rate of sodium-lithium countertransport in erythrocytes of 739 randomly selected blood donors and 42 manic-depressive patients to determine the frequency distributions of these two variables in a general population and their relationship to one another and to affective illness. A large interindividual variation was found for the ratio and countertransport, and there was evidence of bimodality in the frequency distributions for these two traits. There was a moderate negative correlation (r = -.61) between the ratio and countertransport for 126 individuals. Neither the ratio nor countertransport was found to be a useful marker for affective illness.

Adult↗

Genetics of primary hypertension.

Geneticists seek to understand the interaction between genetic and environmental causes of phenotypic variation among individuals in a population. Clinical studies have established that an individual's blood pressure (BP) level is the consequence of the interaction of biologically determined characteristics of the nervous, renal, endocrine and circulatory systems with factors that define one's environment, such as dietary salt, stress and exercise. The many genes that orchestrate the development of these biologically determined characteristics are expected to determine one's BP level, one's increase in BP with age and one's BP response to changes in the environment. One consequence of such a multifactorial etiology is that there are multiple combinations of genetic and environmental factors that may lead to the same BP level. The prevention and control of hypertension will be enhanced when intervention strategies take into account this etiological heterogeneity in determining the hypertensive endpoint. We are pursuing a level crossing strategy in the study of the causes of interindividual BP differences. According to this approach relevant phenotypes that link genetic and environmental factors with blood pressure levels are identified, the genetic contribution to variability in these phenotypes is estimated and then the contribution of this genetic etiology to blood pressure variability is evaluated. We have successfully carried out such a level crossing approach in our investigations of the genetics of red cell sodium lithium countertransport and the relationship between sodium lithium countertransport and blood pressure. A single gene effect on red cell sodium lithium countertransport levels is the only single gene known to affect interindividual blood pressure variability.

Biological Transport, Active↗

The influence of genetics and household environment upon the variability of normal blood pressure: the Montreal Adoption Survey.

The Montreal Adoption Survey was conducted as a cross-sectional epidemiologic study of cardiovascular risk factors in French Canadian families. Analysis included blood pressure readings of 756 adopted and 445 natural children as well as 1176 parents. A genetic model was applied to the analysis of our data. Interindividual variability of blood pressure was studied and observed correlatives of systolic and diastolic pressure of parental and non parental subjects were calculated. Based on the maximum likelihood estimates presented in the models the explanation of the parent offspring and the between sibs expected population correlatives for systolic blood pressure was the following: 61% was due to shared genes and 39% to environment shared by both parents and children. For diastolic blood pressure the explanation between parents and offspring was the following: 58% was due to shared genes and 42% due to shared environment across generation. The explanation between sibs was estimated to be the following: 33% due to generation, 24% to shared environment across generation and 43% to shared environment within generation.

Adoption↗