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Antioxidant enzymes and atherosclerosis in Japanese quail: heritability and genetic correlation estimates.

OBJECTIVES: To estimate, in male quail susceptible to atherosclerotic plaque formation (SUS) fed a regular diet and an atherogenic diet, the genetic and phenotypic parameters associated with antioxidant enzymes and atherogenesis. DESIGN: Genetic parameters were estimated from variance components of the analysis of variance on 70 males from 13 full-sib families. MAIN RESULTS: Under the regular diet, seven of 35 males developed mild atherosclerosis. Heritability was zero for atherosclerotic plaque score and plasma cholesterol level. Plaque score was highly correlated to plasma triglyceride level (rp = 0.96) and liver fattiness (rp = 0.97), but only moderately to plasma cholesterol level (rp = 0.39). With the high cholesterol diet, plasma cholesterol level increased sixfold and became heritable (h2 = 0.4). Many males developed severe atherosclerosis. Plaque score became associated more with plasma and aortic cholesterol levels (rp = 0.56) and 0.76, respectively) than with plasma triglyceride level (rp = 0.54). Aortic glutathione reductase activity was negatively correlated with plaque score (rp = -0.42; rg = -0.51) and aortic cholesterol level (rp = -0.39; rg = -0.62). CONCLUSIONS: Plasma triglyceride level was an important factor affecting the development of fatty streaks and the early progression of atherosclerotic plaques. Without high levels of dietary cholesterol in the plasma and aorta, any early atherosclerotic plaques that developed did not progress further within the time-frame of the experiment. Aortic cholesterol concentration and glutathione reductase activity were important factors in the advancement of severe plaque formation. Heritability of plaque score was high in the SUS line, and further selective breeding should increase the susceptibility of these quail to cholesterol-induced atherosclerosis.

Animals↗

The detection of sympatric sibling species using genetic correlation analysis. I. Two loci, two gamodemes.

Four models are presented describing zygotic frequencies at two loci for one or two sympatric but genetically differentiated populations of "gamodemes." Linkage disequilibrium within gamodemes is allowed in two of the models. Maximum likelihood criteria are used to fit the models to the observed numbers of zygotes in a sample. A fitting-testing sequence for choosing a best model is described and the power of the test is analyzed. The statistical characteristics of the genetic parameter estimates were examined by simulation studies. In general, estimates were reliable when allele frequency differences between gamodemes were greater than 0.30 at both loci. This method may be used to study the population structure of samples with fewer heterozygotes than expected for Hardy-Weinberg populations, including the detection and genetic description of sibling species having overlapping ranges.--An example is given for Drosophila longicornis and D. propachuca, two sibling species within the mulleri complex of the repleta group which have been studied in detail using more conventional techniques. The reanalysis using the approach derived in this paper confirmed the reproductive isolation of these two species, and hinted at the possibility of further subdivision within D. propachuca.

Alleles↗

Pathological and genetic correlates of apoptosis in the progression of colorectal neoplasia.

PURPOSE: Apoptosis is commonly observed in a variety of human tumors, and some of the genetic events which control this process have been identified in vitro. The aim of this study was to determine the frequency of apoptosis in colorectal neoplasms and to examine its relationship to a number of pathological parameters, to the presence of mutations in the p53 tumor suppressor gene, and to overexpression of the bcl-2 oncoprotein. METHODS: A total of 109 colorectal neoplasms (26 adenomas 83 carcinomas) were examined. An in situ end-labelling assay was used to detect apoptosis in paraffin-embedded tumor sections, and scores were determined by light microscopy. The p53 and bcl-2 status were determined by immunohistochemistry. RESULTS: Apoptotic frequency increased with tumor progression. Normal mucosa contained significantly fewer apoptotic cells than adenomas or carcinomas. Similarly adenomas showed less apoptosis than carcinomas, and the frequency of apoptosis increased with Dukes' stage. Overall, changes in apoptotic frequency were inversely related to the level of bcl-2 expression, but were not related to the p53 status of the tumors. CONCLUSIONS: The frequency of apoptosis in colorectal neoplasia appears to increase in the course of tumor progression in association with a decline in bcl-2 expression, but is not influenced by p53 gene mutations.

Adenocarcinoma↗

The genetic correlation between impulsivity and sensation seeking traits.

A number of studies have demonstrated associations between sensation seeking traits and measures of impulsivity. This study examined contributions to the observed correlations between imupulsivity and sensation seeking traits. Fifty-seven pairs of identical and 49 pairs of fraternal twins who were reared apart and 90 individuals who also participated in the Minnesota Study of Twins Reared Apart completed the Control scale of the Multidimensional Personality Questionnaire (MPQ; Tellegen, 1982) and the four subscales of the Sensation Seeking Scale (SSS; Zuckerman, 1979). Consistent with previous studies, the Control scale was significantly correlated with the SSS. A Cholesky decomposition of the data indicated that the phenotypic correlations between the Control scale and the four subscales of the SSS were mediated almost entirely by genetic factors. In the final reduced model the proportion of the genetic variance of the Control scale in common with the SSS was estimated as 55%, and the rest of the genetic variance (45%) was attributed to the genetic variance specific to the Control scale. The results emphasize the importance of common biological mechanisms underlying associations between impulsivity and sensation seeking traits.

Adolescent↗

Autosomal dominant spinocerebellar degenerations. Clinical, pathological, and genetic correlations.

Historical review on hereditary spinocerebellar degenerations (SCD) revealed that some CAG repeat diseases were formerly diagnosed under several different names because of their clinical and pathological heterogeneity. A genetic abnormality in these hereditary SCDs (often with expanded CAG repeat) corresponds to a definite prototypic combination of the principal lesions in the cerebellar, extrapyramidal, and oculomotor systems, which allows neuropathological differentiation between these entities. Variability of both clinical and pathological features is mainly related to the patient's age at onset, which is often correlated with the number of CAG repeat size. Several characteristics are suggestive of these SCD: preferential degeneration of specific systems, size reduction at cellular or tissue level not accompanied by glial reaction (simple atrophy or hypoplastic change) and presence of recently identified ubiquitin positive inclusions in neurons are characteristics of these SCDs. These features provide further insight into the phenotypic development of a genetic abnormality.

Atrophy↗

[Structural analysis of the correlations of genetic markers with physiological indices].

The structure of phenotypic and genetic correlations between ABO blood groups, MN, Rh(D), haptoglobins and concentration indications of the total cholesterol, of sugar curve, the levels of systolic and diastolic arterial pressure was studied in twins by the method for cluster analysis (121 monozygotic twin pairs, 120 dizygotic like sex twin pairs and 107 pairs of unlike sex twins). No correlation between the systems analysed and their indications on the phenotypic level was observed. By analysis of genetic correlations, the existence of correlations between the Rh system and arterial pressure, and the total cholesterol concentration, as well as between the ABO system and sugar concentration indexes, was established. Possible genetic causes for correlations obtained are being discussed.

Adult↗

Genetic correlates of throat and skin isolates of group A streptococci.

The existence of discrete populations of throat and skin strains of group A streptococci has long been recognized; however, a molecular basis for this distinction is not known. The emm gene structure was analyzed for 105 isolates obtained from patients with well-defined group A streptococcal diseases: uncomplicated pharyngitis, impetigo, and acute rheumatic fever. Four emm gene sub-family forms, defined by nucleotide sequence differences in regions encoding the peptidoglycan-spanning domain of M and M-like surface proteins, were found to exist in five different chromosomal patterns among naturally occurring isolates. Strong correlations were made between disease and the number and arrangement of emm subfamily genes. These findings provide a genetic basis for the historical references to "throat," "skin," and "rheumatogenic" types.

Bacterial Outer Membrane Proteins↗

Genome-wide and Ordered-Subset linkage analyses provide support for autism loci on 17q and 19p with evidence of phenotypic and interlocus genetic correlates.

BACKGROUND: Autism is a neurobehavioral spectrum of phenotypes characterized by deficits in the development of language and social relationships and patterns of repetitive, rigid and compulsive behaviors. Twin and family studies point to a significant genetic etiology, and several groups have performed genomic linkage screens to identify susceptibility loci. METHODS: We performed a genome-wide linkage screen in 158 combined Tufts, Vanderbilt and AGRE (Autism Genetics Research Exchange) multiplex autism families using parametric and nonparametric methods with a categorical autism diagnosis to identify loci of main effect. Hypothesizing interdependence of genetic risk factors prompted us to perform exploratory studies applying the Ordered-Subset Analysis (OSA) approach using LOD scores as the trait covariate for ranking families. We employed OSA to test for interlocus correlations between loci with LOD scores > or =1.5, and empirically determined significance of linkage in optimal OSA subsets using permutation testing. Exploring phenotypic correlates as the basis for linkage increases involved comparison of mean scores for quantitative trait-based subsets of autism between optimal subsets and the remaining families. RESULTS: A genome-wide screen for autism loci identified the best evidence for linkage to 17q11.2 and 19p13, with maximum multipoint heterogeneity LOD scores of 2.9 and 2.6, respectively. Suggestive linkage (LOD scores > or =1.5) at other loci included 3p, 6q, 7q, 12p, and 16p. OSA revealed positive correlations of linkage between the 19p locus and 17q, between 19p and 6q, and between 7q and 5p. While potential phenotypic correlates for these findings were not identified for the chromosome 7/5 combination, differences indicating more rapid achievement of "developmental milestones" was apparent in the chromosome 19 OSA-defined subsets for 17q and 6q. OSA was used to test the hypothesis that 19p linkage involved more rapid achievement of these milestones and it revealed significantly increased LOD* scores at 19p13. CONCLUSIONS: Our results further support 19p13 as harboring an autism susceptibility locus, confirm other linkage findings at 17q11.2, and demonstrate the need to analyze more discreet trait-based subsets of complex phenotypes to improve ability to detect genetic effects.

Adolescent↗

Behavioral versus genetic correlates of lipoproteins and adiposity in identical twins discordant for exercise.

BACKGROUND: Lipoprotein and weight differences between vigorously active and sedentary monozygotic (MZ) twins were used to (1) estimate the effects of training while controlling for genotype and (2) estimate genetic concordance (ie, similarity) in the presence of divergent lifestyles. METHODS AND RESULTS: Thirty-five pairs of MZ twins (25 male, 10 female) were recruited nationally who were discordant for vigorous exercise (running distances differed by > or =40 km in male and > or =32 km in female twins). The active twins ran an average (mean+/-SD) of 63.0+/-20.4 km/wk, whereas the mostly sedentary twins averaged 7.0+/-13.5 km/wk. The active twins had significantly lower body mass index (difference+/-SE, -2.12+/-0.57 kg/m2, P=0.0007) and significantly higher HDL cholesterol (0.14+/-0.04 mmol/L, P=0.004), HDL2 (2.71+/-1.04 U, P=0.01), and apolipoprotein (apo) A-I (0.10+/-0.03 g/L, P=0.004). Despite the difference in lifestyle, when adjusted for sex, the correlations between the discordant MZ twin pairs were significant (P<0.01) for HDL cholesterol (r=0.69), apoA-I (r=0.58), and HDL2 (r=0.67). There was no significant MZ twin correlation for body mass index (r=0.17). None of the active twins having an overweight twin were themselves overweight. CONCLUSIONS: Behavior (vigorous exercise) may reduce genetic influences on body mass index. In contrast, genetics (or shared environment) substantially influences HDL cholesterol and HDL subclasses, even in the presence of extreme behavioral differences. There may be greater individual control over moderate degrees of obesity, whereas low HDL cholesterol may be largely predetermined and less effectively treated by vigorous exercise.

Adiposity↗

A comparison of univariate, bivariate, and trivariate whole-genome linkage screens of genetically correlated electrophysiological endophenotypes.

We used a maximum-likelihood based multipoint linkage approach implemented in SOLAR to examine simultaneously linkage for three electrophysiological endophenotypes from the Collaborative Study of the Genetics of Alcoholism: TTTH1, TTTH2, and TTTH3. These endophenotypes have been identified as markers of alcohol dependence susceptibility. Data were from 905 individuals in 143 families. Measured covariates considered included sex, age at electrophysiology data collection, habitual smoking status, and the maximum number of drinks consumed in a 24-hour period. Comparisons were made among genome-wide univariate, bivariate, and trivariate linkage analyses using genotypes based on microsatellite markers supplied by the Center for Inherited Disease Research, and genotypes based on single-nucleotide polymorphism markers provided by Illumina. All LODs were corrected to a standard equivalent to 1 degree of freedom. Using the trivariate approach and the microsatellite-based genotypes, we estimated a maximum multipoint linkage signal of LOD = 2.66 on chromosome 7q at 157 cM. Analyses using the Illumina SNP genotypes produced similar results, yielding a maximum multipoint LOD of 2.95 on 7q at 174 cM. These regions of interest correspond to those identified in the univariate and bivariate linkage screens. Our results suggest that trivariate multipoint linkage analyses have utility in the further characterization of chromosomal regions potentially containing genes influencing the phenotypes being examined. Based on a comparison of the number of LOD scores achieving statistical significance, our results suggest that the microsatellite- and Illumina SNP-based genotypes have similar utility for detecting genomic regions of interest.

Chromosome Mapping↗