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N N Couropmitree

Publications and source records attributed to N N Couropmitree.

5 recordsLinked to original sources

Evidence for the GluR6 gene associated with younger onset age of Huntington's disease.

Huntington's disease (HD) is attributed to a triplet CAG repeat mutation, and about half of the variation in onset age can be explained by the size of the repeat expansion. Recently, a TAA repeat polymorphism in close linkage to the kainate receptor, GluR6, was reported related to onset age in HD. We examined this polymorphism in 258 unrelated HD-affected persons (172 from a clinic sample and 86 from a postmortem series). This study confirms that the 155 allele is associated with younger onset age of HD and suggests that it is in linkage disequilibrium with a variant of the GluR6 gene or another gene in this region.

Adolescent↗

Genetic associations in age-related hearing thresholds.

OBJECTIVE: To determine the inheritance of age-related hearing loss. DESIGN: Cohort study comparing aggregation of hearing levels in genetically unrelated people (spouse pairs) and in genetically related people (sibling pairs, parent-child pairs). SETTING: Framingham Heart Study biennial Examination 15 (1973-1975) and Framingham Offspring Study Examination 6 (1995-1998). SUBJECTS: Members of the Framingham cohorts with hearing tests and with a relative in the Framingham hearing study. MAIN OUTCOME MEASURES: Audiometric pure-tone thresholds at 250 to 8000 Hz were obtained and pure-tone average (PTA) hearing thresholds were calculated for the middle (0.5-2 kHz), high (4-8 kHz), and low (0.25-1 kHz) frequencies for each ear. The shape of the audiogram was categorized as either normal, abrupt high-frequency loss (sensory phenotype) or flat loss (strial phenotype). Correlations were made using the Familial Correlations program of the Statistical Analysis for Genetic Epidemiology software system. The level of significance was P = .01. RESULTS: Hearing threshold levels did not aggregate in spouses. Significant aggregation was noted in siblings and parent-child pairings for PTA at low, middle, and high frequencies. Sisters but not brothers had significant aggregation of each PTA measure. Mother-daughter and mother-son pairs but not father-son pairs had significant aggregation of hearing levels. For the sensory phenotype, there was significant aggregation in all related pairs except for father-child pairs. For the strial phenotype, there was significant aggregation of hearing levels in the related female pairs but not in the related male pairs. CONCLUSIONS: A clear familial aggregation occurs for age-related hearing levels, sensory presbycusis phenotypes, and strial presbycusis phenotypes. The aggregations are stronger in women than in men. The heritability estimate was greater for the strial phenotypes than for the sensory phenotypes. The data support a genetic effect on the inheritance of presbycusis in women and a mixed, genetically acquired cause in men.

Aged↗

Stratification techniques to explore genotype environment interactions.

Linkage analysis was performed on the GAW11 Problem 2 data set using stratification to explore the effects of the environmental risk factors and the differences between mild and severe phenotypes. Analysis of the four study populations stratified by the two risk factors identified regions on chromosomes 3 and 5 with significant evidence for linkage. Other loci were sought by removing families consistent with linkage to the chromosome 3 locus. Our studies identified a locus on chromosome 3 (markers 43-46) associated with the mild phenotype in the presence of risk factor 1 and with the severe phenotype independent of risk factor 1. This suggests that distinct allelic variants at the chromosome 3 locus may cause different forms of disease. The locus identified on chromosome 5 (markers 36-39) was linked to the severe phenotype, but exposure to factor 1 or 2 may have a protective effect. The regions on chromosomes 3 and 5 appeared to have independent roles in disease etiology. Evidence for two loci on chromosome 1 linked to the mild form was found. The methods successfully identified linkages and interaction consistent with the generating model.

Environment↗

Evidence for a Mendelian gene in a segregation analysis of generalized radiographic osteoarthritis: the Framingham Study.

OBJECTIVE: To investigate the inheritance of generalized osteoarthritis (OA). METHODS: OA was identified on hand and knee radiographs obtained from members of the Framingham Study cohort (the parents) in 1967-1970 and 1992-1993, and from their adult children in the Framingham Offspring Study in 1993-1994. All hand and knee radiographs evaluated for OA were graded using the Kellgren and Lawrence (K/L) scale. A measure of generalized OA was defined as the count of the number of hand and knee joints affected, as determined by the proportion of joints with a K/L grade > or =2. The OA count, treated as a continuous variable, was adjusted for age, body mass index, and a measure of physical activity for each joint area (hand or knee). Calculations were made separately for each generation and each sex, and correlations were analyzed against the standardized residual of OA. Segregation analysis was used to test whether OA aggregated in families, and if its transmission fit a Mendelian pattern. RESULTS: A total of 337 nuclear families with 2 parents and at least 1 biologic offspring were studied. In parents, the mean age was 61.2 years at the time of hand radiographs and 72.8 years at the time of knee radiographs, which were mostly obtained at a later examination. The mean age at the time of radiographs in offspring was 53.9 years. Using standardized residuals, parent-offspring and sibling-sibling correlations ranged from 0.115 to 0.306. In segregation analyses, models testing the hypotheses of no familial aggregation, no familial transmission, or a Mendelian gene alone were all rejected (P < 0.001 for each of these models). The best-fitting models were mixed models with a Mendelian mode of inheritance and a residual multifactorial component. The Mendelian recessive model provided the best fit. CONCLUSION: These analyses support a significant genetic contribution to OA, with evidence for a major recessive gene and a multifactorial component, representing either polygenic or environmental factors.

Adult↗

Segregation analysis of pulmonary function among families in the Framingham Study.

Familial aggregation of cross-sectional pulmonary function was examined in 5,003 subjects from 1,408 families participating in the Framingham Study. Subjects, who were members of either the Original Cohort (recruited from 1948 to 1952) or the Offspring Cohort (recruited from 1971 to 1974), underwent spirometry at a mean age of 53 yr. The effects of age, height, weight, and smoking status on FEV1 were evaluated through linear-regression analysis, with separate models for men and women in each cohort. The gender- and cohort-specific standardized residual FEV1 from these models was used as the phenotypic variable in familial correlation and segregation analyses to assess inheritance patterns. In models that assumed no major gene determining FEV1, correlation of pulmonary function was greater for mothers and offspring than for fathers and offspring (p[mo] = 0.190, p[fo] = 0.112; p = 0.06), and sibling correlation exceeded parent-offspring correlation (p[sib] = 0.225; p < 0.01). By comparison with a general model, in which transmission probabilities and residual familial correlations are arbitrary, models that imposed a Mendelian gene were rejected (p < 0.001). A model with no parent-offspring transmission of a major factor, but with residual familial correlation, provided as good a fit as the general model, suggesting that environmental and/or polygenic genetic influences determine FEV1.

Body Height↗