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Biomedical subjects

J Walston

Publications and source records attributed to J Walston.

At least 19 recordsLinked to original sources

Frailty in older adults: evidence for a phenotype.

BACKGROUND: Frailty is considered highly prevalent in old age and to confer high risk for falls, disability, hospitalization, and mortality. Frailty has been considered synonymous with disability, comorbidity, and other characteristics, but it is recognized that it may have a biologic basis and be a distinct clinical syndrome. A standardized definition has not yet been established. METHODS: To develop and operationalize a phenotype of frailty in older adults and assess concurrent and predictive validity, the study used data from the Cardiovascular Health Study. Participants were 5,317 men and women 65 years and older (4,735 from an original cohort recruited in 1989-90 and 582 from an African American cohort recruited in 1992-93). Both cohorts received almost identical baseline evaluations and 7 and 4 years of follow-up, respectively, with annual examinations and surveillance for outcomes including incident disease, hospitalization, falls, disability, and mortality. RESULTS: Frailty was defined as a clinical syndrome in which three or more of the following criteria were present: unintentional weight loss (10 lbs in past year), self-reported exhaustion, weakness (grip strength), slow walking speed, and low physical activity. The overall prevalence of frailty in this community-dwelling population was 6.9%; it increased with age and was greater in women than men. Four-year incidence was 7.2%. Frailty was associated with being African American, having lower education and income, poorer health, and having higher rates of comorbid chronic diseases and disability. There was overlap, but not concordance, in the cooccurrence of frailty, comorbidity, and disability. This frailty phenotype was independently predictive (over 3 years) of incident falls, worsening mobility or ADL disability, hospitalization, and death, with hazard ratios ranging from 1.82 to 4.46, unadjusted, and 1.29-2.24, adjusted for a number of health, disease, and social characteristics predictive of 5-year mortality. Intermediate frailty status, as indicated by the presence of one or two criteria, showed intermediate risk of these outcomes as well as increased risk of becoming frail over 3-4 years of follow-up (odds ratios for incident frailty = 4.51 unadjusted and 2.63 adjusted for covariates, compared to those with no frailty criteria at baseline). CONCLUSIONS: This study provides a potential standardized definition for frailty in community-dwelling older adults and offers concurrent and predictive validity for the definition. It also finds that there is an intermediate stage identifying those at high risk of frailty. Finally, it provides evidence that frailty is not synonymous with either comorbidity or disability, but comorbidity is an etiologic risk factor for, and disability is an outcome of, frailty. This provides a potential basis for clinical assessment for those who are frail or at risk, and for future research to develop interventions for frailty based on a standardized ascertainment of frailty.

Aged↗

Insulin response to glucose is lower in individuals homozygous for the Arg 64 variant of the beta-3-adrenergic receptor.

Type 2 diabetes mellitus (type 2 DM) is a polygenic disorder with a variable phenotype that includes both insulin resistance and insulin secretory dysfunction. The Arg 64 beta-3-adrenergic receptor variant allele is associated with an earlier age of onset of type 2 DM. The purpose of this study was to examine the in vivo pathophysiology of this variant allele to determine its contribution to the components of glucose metabolism. We used the frequently sampled iv glucose tolerance tests, minimal model analysis, and analysis of covariance to examine age- and fat-mass-adjusted differences among genotypes. The results demonstrate that individuals homozygous for the Arg 64 allele secrete significantly less insulin in response to a glucose infusion (562+/-116 vs. 962+/-94 pmol/microL), have the highest fasting glucose levels (100.4+/-1.9 vs. 92.48+/-1.60 mg/dL), and have lower glucose effectiveness (0.014+/-0.003 vs. 0.019+/-0.002 min(-1)), compared with those homozygous for the Trp 64 allele. This first report of decreased acute insulin release and lower glucose effectiveness in the Arg 64 genotype may help explain the earlier onset of type 2 DM observed in several populations of individuals with the Arg64 beta-3-adrenergic receptor variant allele.

Adult↗

Frailty and the older man.

Frailty is a wasting syndrome of advanced age that leaves a person vulnerable to falls, functional decline, morbidity, and mortality. The cause of this syndrome is complex but likely has a biologic basis. Studies by the authors' research group have validated a phenotype of frailty [table: see text] and have established a gender difference in prevalence with women twice as likely to develop the syndrome as men. Using a biologic model that includes sarcopenia, neuroendocrine decline, and immune dysfunction as potential causes, several physiologic gender differences may explain these differing levels of frailty. First, higher baseline levels of muscle mass may protect men from reaching a threshold of weakness and muscle mass loss that may put them into a category of frailty. Specific neuroendocrine and hormonal factors that may make men less likely to develop frailty than women include testosterone and GH, which may provide advantages in muscle mass maintenance, and cortisol, which is likely less dysregulated in older men as compared to older women. There is also evidence of immune system dimorphism that is, in part, responsive to sex steroids, perhaps making men more vulnerable to sepsis and infection and women more vulnerable to chronic inflammatory conditions and muscle mass loss. The net effect of the hormonal dysregulation and immune system dysfunction is an accelerated loss of muscle mass. There is also evidence that lower levels of activity and lower caloric intake in women as compared to men may also influence the phenotype of frailty and make women more vulnerable then men to the syndrome.

Black or African American↗

Tumor necrosis factor-alpha-238 and -308 polymorphisms do not associated with traits related to obesity and insulin resistance.

Tumor necrosis factor-alpha (TNF-alpha) is expressed primarily in adipocytes, and elevated levels of this cytokine have been linked to obesity and insulin resistance. The purpose of this investigation was to test whether the TNF-alpha-308 polymorphism (previously linked to insulin resistance and increased leptin levels) and the TNF-alpha-238 polymorphism (linked to decreased insulin resistance) were associated with insulin resistance or obesity-related traits in 424 subjects self-referred to the Johns Hopkins Weight Management Center (JHWMC). There were no differences in allele frequencies of either polymorphism by obesity category in the JHWMC and a lean control group. Despite previous smaller studies that have linked insulin resistance and the 308 allele, we found no such relationship in the JHWMC population. Instead, homozygotes for this allele had a significantly lower BMI than their counterparts without the polymorphism. In addition, we found no relationship between the 238 polymorphism and BMI, fasting glucose, or log of fasting insulin.

Adult↗

The beta3-adrenergic receptor in the obesity and diabetes prone rhesus monkey is very similar to human and contains arginine at codon 64.

The beta3-adrenergic receptor (ADRbeta3) is a seven-membrane spanning, G-protein linked receptor expressed in brown adipose tissue in rodents, and visceral adipose tissue in humans. Stimulation of the receptor by norepinephrine leads to lipolysis and thermogenesis. In rodent models of obesity and diabetes, administration of beta3-agonists results in weight loss and improved glucose tolerance. Studies indicate that the pharmacological properties of the ADRbeta3 differ markedly between rodents and humans, making generalizations of rodent studies to humans difficult. We hypothesized that the obesity and diabetes prone rhesus monkey (Macaca mulatta) would provide an excellent animal model to study the role of the ADRbeta3 in the development of obesity and diabetes as well as for assessment of the therapeutic efficacy of beta3-agonists. We sequenced the entire coding region of the rhesus ADRbeta3 gene. Like humans, the rhesus ADRbeta3 has two exons. There is 89% amino acid (aa) identity between human and rhesus compared to 82% aa identity between human and mouse. A single base deletion results in divergence of the intracellular carboxy terminus accounting for 26 of the 45 aa changes and 10 additional aa. Of the 15 rhesus monkeys studied, all were homozygous for Arg64. In humans, Arg64 (rather than Trp) is associated with increased body mass index, insulin resistance, and an earlier onset of type II diabetes mellitus. We conclude that the rhesus ADRbeta3 is more similar to the human ADRbeta3 than to the rodent ADRbeta3 suggesting that this primate model may be more appropriate for physiologic and therapeutic studies of the ADRbeta3 axis, and that Arg64 may influence susceptibility in this species to obesity, insulin resistance, and type II diabetes.

Amino Acid Sequence↗

TRP64ARG beta 3-adrenergic receptor and obesity in Mexican Americans.

The beta 3-adrenergic receptor (beta 3AR) is expressed in visceral fat and is a regulator of resting metabolic rate, thermogenesis, and lipolysis. We genotyped 61 unrelated Mexican Americans for a variant in the beta 3AR gene (codon 64 TGGTrp-->CGGArg; TRP64ARG). The allele frequency was 0.13. The TRP64ARG variant was significantly associated with an earlier age of onset of non-insulin-dependent diabetes mellitus (41.3 +/- 4.6 years vs 55.6 +/- 2.6 years; P < 0.02) and in non-diabetics, with elevated 2-h insulin levels during an oral glucose tolerance test (810 +/- 120 pmol/l vs 384 +/- 6 pmol/l; P < 0.005). Non-diabetic subjects with the variant allele tended to have higher body mass indices (BMI), waist-to-hip ratios, and diastolic blood pressures. The study group was expanded to include 421 related subjects from 31 families in the San Antonio Family Diabetes Study. Using a measured genotype analysis approach to estimate genotype-specific means for each trait, those who were homozygous for the TRP64ARG variant had significantly higher 2-h insulin levels (P = 0.036) and trends towards higher BMI compared to the other two genotypes. We detected no associations of these traits in the TRP64ARG heterozygotes in the larger group. We conclude that the TRP64ARG beta 3AR variant is a susceptibility gene for several features of the insulin resistance syndrome in Mexican Americans. Since its effects are modest, study design (e.g., subject selection, genetic background, and statistical analyses) may influence which traits are associated with this variant and whether or not the effect is detectable in heterozygotes.

Arginine↗

Molecular scanning of beta-3-adrenergic receptor gene in total congenital lipoatrophic diabetes mellitus.

Total congenital lipoatrophic diabetes is characterized by absence of subcutaneous adipose tissue, hypertriglyceridemia, and insulin resistance. We hypothesized that mutations in the beta-3-adrenergic receptor (beta 3AR) gene might result in the lipoatrophic phenotype by preventing triglyceride storage in adipocytes; thereby, resulting in secondary insulin resistance. We screened the beta 3AR gene in 7 subjects with total congenital lipoatropic diabetes. We found a heterozygous substitution of a guanine to cytosine at position -153 (G-153C) in the 5'-untranslated region of 3 African-American lipoatrophic siblings and 1 sibling without lipoatrophy but with insulin resistance. To determine whether the base change was related to the lipoatrophic phenotype, we genotyped 69 African-Americans without lipoatrophy and found the G-153C substitution in 2 control subjects (allele frequency = 0.01). No other single-stranded polymorphism variants were found in any of the 7 lipoatrophic subjects. Direct sequencing of both alleles of 1 lipoatrophic subject demonstrated a thymidine insertion at position -300 in both alleles. All lipoatrophic subjects along with 20 African-American control subjects were homozygous for the base insertion, suggesting an error in the published sequence. In conclusion, mutations in the beta 3AR gene do not appear to be involved in the development of congenital total lipoatrophy.

Alleles↗

Molecular scanning for mutations in the beta 3-adrenergic receptor gene in Nauruans with obesity and noninsulin-dependent diabetes mellitus.

We recently identified a mutation in the human beta 3-adrenergic receptor (beta 3AR) gene (codon 64 TGGTrp -> CGGArg; TRP64ARG) that associates with features of the insulin resistance syndrome and an earlier onset of noninsulin-dependent diabetes mellitus (NIDDM). We scanned the beta 3AR gene for mutations by single stranded conformational polymorphism analysis in 20 Nauruans with obesity and NIDDM. No mutations were identified. Sixty-five Nauruan subjects were genotyped for the TRP64ARG beta 3AR. All subjects were homozygous for the normal allele. We genotyped Samoans and Asians for the TRP64ARG beta 3AR. Seven of 52 Samoans were heterozygous for the mutant arginine allele (allele frequency, 0.07). Of these, 5 were diabetic and 2 were nondiabetic (by Fisher's exact test, P = 0.4). There were trends toward increased body mass indices, waist to hip ratios, and 2-h insulin levels during oral glucose tolerance tests in Samoans with the mutation; however, the limited number of subjects available for study precluded rigorous statistical analysis. The TRP64ARG beta 3AR was also detected in Chinese, Chinese Americans, and subjects from the Indian subcontinent. In conclusion, the TRP64ARG beta 3AR mutation or any other mutation in the beta 3AR gene is not a major contributor to genetic susceptibility to NIDDM and obesity likely in Nauruans.

Adult↗

A mutation in the beta 3-adrenergic receptor gene is associated with obesity and hyperinsulinemia in Japanese subjects.

The Trp 64 Arg mutation in the beta 3-adrenergic receptor (beta 3AR) gene was investigated in 350 Japanese subjects. This mutation was not associated with non-insulin-dependent diabetes mellitus (NIDDM). In 191 subjects without NIDDM, body mass index (BMI) was significantly higher in subjects homozygous for this mutation than in those homozygous for the normal allele (24.7 +/- 1.4 vs 22.1 +/- 0.2 kg/m2, p = 0.009). Moreover, the frequency of the mutant allele in obese subjects (BMI > 26.4) was significantly higher than that in non-obese subjects (BMI < 22) (0.37 vs 0.15, p = 0.009). The presence of this mutation was also accompanied by significantly higher fasting (p = 0.000) and 2 hrs (p = 0.018) serum insulin levels during an oral glucose tolerance test. The beta 3AR may be one of the loci contributing to obesity and hyperinsulinemia/insulin resistance in Japanese subjects.

Adult↗

Time of onset of non-insulin-dependent diabetes mellitus and genetic variation in the beta 3-adrenergic-receptor gene.

BACKGROUND: The beta 3-adrenergic receptor is expressed in visceral adipose tissue and is thought to contribute to the regulation of the resting metabolic rate and lipolysis. METHODS: To investigate whether mutations in the gene for the beta 3-adrenergic receptor predispose patients to obesity and non-insulin-dependent diabetes mellitus (NIDDM), we studied this gene in 10 Pima Indians by analysis of single-stranded conformational polymorphisms and dideoxy sequence analysis. Association studies were performed in 642 Pima subjects (390 with NIDDM and 252 without NIDDM). RESULTS: A missense mutation was identified in the gene for the beta 3-adrenergic receptor that results in the replacement of tryptophan by arginine (Trp64Arg) in the first intracellular loop of the receptor. This mutation was detected with allelic frequencies of 0.31 in Pima Indians, 0.13 in 62 Mexican Americans, 0.12 in 49 blacks, and 0.08 in 48 whites in the United States. Among Pimas, the frequency of the Trp64Arg mutation was similar in nondiabetic and diabetic subjects. However, in subjects homozygous for the mutation the mean (+/- SD) age at the onset of NIDDM was significantly lower (36 +/- 10 years) than in Trp64Arg heterozygotes (40 +/- 10 years) or normal homozygotes (41 +/- 11 years; P = 0.02). Furthermore, subjects with the mutation tended to have a lower adjusted resting metabolic rate (P = 0.14 by analysis of covariance). CONCLUSIONS: Pima subjects homozygous for the Trp64Arg beta 3-adrenergic-receptor mutation have an earlier onset of NIDDM and tend to have a lower resting metabolic rate. This mutation may accelerate the onset of NIDDM by altering the balance of energy metabolism in visceral adipose tissue.

Adult↗

Association of a polymorphism in the beta 3-adrenergic-receptor gene with features of the insulin resistance syndrome in Finns.

BACKGROUND: Because visceral obesity predicts insulin resistance, we studied whether alterations in the gene encoding for the beta 3-adrenergic receptor in visceral fat are associated with insulin resistance. METHODS: We studied the frequency of a cytosine-to-thymidine mutation that results in the replacement of tryptophan by arginine at position 64 (Trp64Arg) of the beta 3-adrenergic receptor by restriction-enzyme digestion with BstOl in 335 subjects from western Finland, 207 of whom were nondiabetic and 128 of whom had non-insulin-dependent diabetes mellitus (NIDDM). We also determined the frequency of the mutation in 156 subjects from southern Finland. Sensitivity to insulin was measured by the hyperinsulinemic-euglycemic clamp technique in 66 randomly selected nondiabetic subjects. RESULTS: In the subjects from western Finland, the frequency of the mutated allele was similar in the nondiabetic subjects and the subjects with NIDDM (12 vs. 11 percent). The mean age of the subjects at the onset of diabetes was lower among those with the mutation than those without it (56 vs. 61 years, P = 0.04). Among the nondiabetic subjects, those with the mutation had a higher ratio of waist to hip circumference (P = 0.02), a greater increase in the serum insulin response after the oral administration of glucose (P = 0.05), a higher diastolic blood pressure (82 vs. 78 mm Hg, P = 0.01), and a lower rate of glucose disposal during the clamp study (5.3 vs. 6.5 mg [29 vs. 36 mumol] per kilogram of body weight per minute; P = 0.04) than the subjects without the mutated allele. In an analysis of sibling pairs, the siblings with the mutation generally had higher waist:hip ratios (P = 0.05) and higher responses of blood glucose and serum insulin after the oral administration of glucose than their siblings without the mutation (P = 0.02 and P = 0.005, respectively). CONCLUSIONS: The Trp64Arg allele of the beta 3-adrenergic receptor is associated with abdominal obesity and resistance to insulin and may contribute to the early onset of NIDDM:

Age of Onset↗

Lack of IRS-1 codon 513 and 972 polymorphism in Pima Indians.

Insulin receptor substrate-1 (IRS-1), an endogenous substrate for the insulin receptor tyrosine kinase, mediates many or all of the metabolic actions of insulin. Recently, polymorphism at codons 513 and 972 of the IRS-1 gene resulting in 2 amino acid substitutions that were associated with type II diabetes were found in a Caucasian population. Using allele specific oligonucleotide (ASO) hybridization, we screened 242 diabetic and 190 nondiabetic Pima Indians, a population with a very high prevalence of type II diabetes. Neither of the two mutations was present in either diabetic or nondiabetic subjects. We conclude that polymorphism at codons 513 and 972 of the IRS-1 gene observed in certain Caucasian populations is very rare or absent in Pima Indians.

Adult↗

Molecular scanning of the beta-3-adrenergic receptor gene in Pima Indians and Caucasians.

BACKGROUND: The beta-3-adrenergic receptor (beta3AR) stimulates lipolysis and thermogenesis in adipocytes. The Trp64Arg beta3AR variant is associated in some, but not all, studies with an earlier onset of Type 2 diabetes mellitus and features of the insulin resistance syndrome. Functional studies as to the role of the Trp64Arg variant have been inconclusive. Earlier studies screened the beta3AR gene in only ten obese, diabetic Pima Indians. Potentially another yet to be identified polymorphism in the beta3AR gene in linkage disequilibrium with the Trp64Arg polymorphism could explain the findings in the association and functional studies. METHODS: We scanned the beta3AR gene in 20 diabetic Pima subjects and 20 Caucasian subjects using single stranded conformational polymorphism (SSCP) analysis. Variants were sequenced using dideoxy sequence analysis and further characterized using allele specific oligonucleotide hybridization (ASO) and RNA template specific-polymerase chain reaction (RS-PCR) assays. RESULTS: We found a guanine to thymidine substitution in the first intron, 14 bases from the splice donor site in both groups. In virtually all subjects, only two haplotypes were detected, Trp64/g1856 and Arg64/t1856, indicating that the g1856t polymorphism is in linkage disequilibrium with the Trp64Arg polymorphism. The g1856t substitution introduces a new consensus splice donor site which, if used, would encode a truncated protein. RNA levels of the two beta3AR alleles were approximately equal in omental adipose tissue of heterozygotes. No aberrantly spliced beta3AR mRNA was detected, indicating that the new consensus splice donor site is not used in vivo. CONCLUSION: The g1856t polymorphism is in linkage disequilibrium with the Trp64Arg variant, but does not appear to have a functional role.

Amino Acid Substitution↗