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S Humphries

Publications and source records attributed to S Humphries.

At least 55 records · Page 3Linked to original sources

The acute rise in plasma fibrinogen concentration with exercise is influenced by the G-453-A polymorphism of the beta-fibrinogen gene.

We have investigated the effects of chronic physical training and acute intensive exercise on plasma fibrinogen levels and the relationship of these responses to beta-fibrinogen G-453-A polymorphism genotype. One hundred fifty-six male British Army recruits were studied at the start of their 10-week basic training, which emphasizes physical fitness. Cohorts were restudied between 0.5 and 5 days after a major 2-day strenuous military exercise (ME) undertaken in their final week of training. Changes in fibrinogen concentration were adjusted for the effects of age, body mass index, and smoking history. Compared with baseline values, fibrinogen concentrations were significantly lower (11.9%, P=.04) at day 5 after ME, consistent with the beneficial effect of training. However, they were higher on days 1 through 3 after ME (suggesting an "acute-phase" response to strenuous exercise) and were maximal on days 1 and 2 (27.2%, P<.001 and 37.1%, P<.001 respectively). Fibrinogen genotype was available in 149 individuals. As expected from previous studies, men with one or more fibrinogen gene A-453 alleles had plasma fibrinogen concentration slightly but significantly higher at baseline (4.5%, P=.11). During the acute-phase response (days 2 and 3), however, the degree of rise was strongly related to the presence of the A allele, being 26.7+/-5.4% (mean+/-SE), 36.5+/-11.0%, and 89.2+/-30.7 for the GG, GA, and AA genotypes, respectively (P=.01). These results confirm that chronic exercise training lowers plasma fibrinogen levels, that intensive exercise generates an acute-phase rise in levels, and that this acute response is strongly influenced by the G/A polymorphism of the beta-fibrinogen gene.

Adolescent↗

Low plasma levels of factor VIIc and antigen are more strongly associated with the 10 base pair promoter (-323) insertion than the glutamine 353 variant.

In a group of 705 healthy middle-aged men, we have examined the relationship between plasma levels of Factor VII (FVII) c and Factor VII antigen (FVIIag) and two polymorphisms in the FVII gene. One polymorphism alters arginine at position 353 to glutamine (R/Q), and the other is the result of a 10 base pair (bp) insertion in the promoter region at position -323 from the start of translation (0/10bp). The frequency for the Q allele was 0.105 (95% CI 0.09-0.12) and for the 10bp allele was 0.117 (95% CI 0.10-0.13). Men who were carriers of either of the rare alleles had levels of FVIIc and FVIIag that were approximately 20% lower than non-carriers, and both of these effects were highly statistically significant (p < 0.0001). Strong allelic association was observed between the two polymorphisms, with R and 0 bp being on the same chromosome in 96% of cases, and Q and 10 bp being on the same chromosome in 90% of cases where this could be determined unambiguously (Delta = 0.92, chi 2 = 1206, p < 0.0001). This strong allelic association created three major genotype groups which were found to have significantly different levels of FVIIc (p < 0.001). In the 547 men homozygous for both common alleles (R/R & 0/0), mean (SD) FVIIc was 101 (29) as compared with 85 (30) in the 20 men with the genotype R/R & 0/10 and 81 (23) in the 126 men with the genotype R/Q & 0/10, suggesting a larger lowering effect associated with the 10 bp allele (16%) compared to the Q allele (an additional 4%). The lowering effect on FVII associated with the 10 bp allele remained statistically significant after adjusting for the effect of the Q allele (p = 0.004 for FVIIc and p = 0.06 for FVIIag), but the effect associated with the Q allele was no longer significant after adjusting for the 10 bp allele, suggesting that the strongest effect on levels of FVIIc was associated with the 0/10 bp genotype. In the sample overall, plasma FVIIc was associated positively with serum triglyceride concentration and the slope of this relationship was significantly greater in those with the genotype R/R compared to the other groups combined (0.12 versus 0.02, p = 0.008) with differences of similar size seen in the 0/0 compared to 0/10 + 10/10 groups. However, using the combined genotype, the slope of this relationship in the R/R & 0/10 group was 0.38 and was significantly steeper (p = 0.01) than in the other two groups who did not differ in this respect (slopes 0.11 and 0.08). This effect was seen on four subsequent annual examinations, and was also evident in the relationship between FVIIag and triglyceride concentration (p = 0.003 for difference between groups measured at baseline only). These data suggest that part of the previously described effects on FVIIc levels associated with the R/Q polymorphism may be explained by genetic variation in the promoter region of the FVII gene.

Antigens↗

Effect of the StuI polymorphism in the LDL receptor gene (Ala 370 to Thr) on lipid levels in healthy individuals.

We have examined the effect on plasma lipid levels of a single base change in exon 8 of the LDL receptor gene that causes an amino acid change Ala 370 to Thr in a sample of 318 Icelandic individuals selected at random from the general population. The change destroys a StuI restriction site and was detected by digestion of pooled samples in groups of 5. The frequency of the loss of the cutting site was 0.05 (95% CI = 0.014-0.054). In men, those with the Thr allele (n = 18) had 8.3% higher total cholesterol, 11.8% higher LDL cholesterol and 10.3% higher apolipoprotein B than those with the common Ala allele, whereas in women those with the Thr allele (n = 12) had levels lower by 7.4%, 13.3% and 10.1% respectively. These differences reached statistical significance only in the men (p < 0.05). Functional analysis of CHO cells transfected with constructs of the LDL receptor cDNA carrying the Ala370 and Thr370 alleles showed that within the limits of the assays there was no difference in function of the LDL receptor protein as measured by uptake and degradation of LDL. The data raise the possibility that amino acid substitutions that could affect LDL receptor function below the limits of detection by conventional assays, may have an effect on plasma lipid levels in the general population.

Adolescent↗

Genetic determination of coagulation factor VIIc levels among healthy middle-aged women.

A recent study (1) reported variation among men in clotting factor VIIc levels is associated with a genetic polymorphism detected by the restriction enzyme Msp I. The present study determined the Msp I genotype (Arg353, Gln353 alleles) for 189 women (mean age 53) who were subjects in the Healthy Women Study, a population study of CHD risk factor change at menopause. Women with the Arg/Arg genotype (n = 147) had an 16% higher (geometric) mean FVIIc level than those with the Arg/Gln (n = 41) genotype (1.21 vs 1.04 U/ml, p < 0.01), while the one subject with the Gln/Gln genotype had an FVIIc level of 1.00 U/ml. These results are consistent with those previously found in healthy men (1). In addition, women carrying the Gln allele did not exhibit the elevation in FVIIc with menopause and use of hormone therapy found among those with the Arg allele, suggesting that genotype may modify the observed rise in factor VIIc at menopause. Possibly because of the small sample size this interaction did not reach conventional levels of statistical significance. Results of multiple linear regression analyses controlling for age, hormone use, obesity, (ln) triglyceride levels, and family history of CHD found FVIIc levels to be significantly (p < 0.001) related to genotype. Thus, genotype appears to be a major determinant of FVIIc levels among women.

Adult↗

Apolipoprotein E phenotype and lipoprotein(a) in familial hypercholesterolaemia: implication for lipoprotein(a) metabolism.

The mechanisms regulating plasma levels of lipoprotein(a) [Lp(a)] are largely unknown. A two- to three-fold increase in Lp(a) levels in patients with familial hypercholesterolaemia (FH) has implied that LDL receptor activity may be an important factor in determining plasma Lp(a) levels, as it is in determining low-density lipoprotein (LDL) cholesterol concentration. Common apolipoprotein E (apoE) variants also affect plasma LDL cholesterol levels. We therefore examined the effect of the common apoE variants on plasma Lp(a) levels in 149 patients with heterozygous FH. Patients with the apoE2 allele (n = 11) had significantly higher plasma levels of LDL cholesterol compared to those with a apoE3E3 phenotype, while patients with the apoE4 isoform had similar levels. However, there was a significant effect of the apoE2 allele in lowering Lp(a) levels, compared to the apoE3E3 group. The median Lp(a) concentration in patients possessing an apoE2 isoform was 13.1 mg/dl below the median, while in those with an apoE4 allele the median Lp(a) levels were 4.13 mg/dl higher. There was a marked inverse correlation between plasma Lp(a) and LDL cholesterol concentration in the FH patients carrying the apoE2 allele. Our data imply that difference in Lp(a) levels observed between FH patients with different apoE isoforms does not result from altered clearance of Lp(a) via the LDL receptor pathway, and suggest that apoE mediated hepatic up-take, or conversion, of remnant particles may be determining Lp(a) production rate.

Adult↗

Genetic determinants of arterial thrombosis.

This chapter describes examples of genetic variation determining plasma levels of three independent risk factors for arterial thrombotic disease, namely fibrinogen, coagulation factor VII and plasminogen activator inhibitor type 1, together with a discussion of the underlying molecular mechanisms. In each case, the data suggest that there is interaction between genotype and environment in determination of the relevant plasma level, providing a possible explanation for the differential response of different individuals to their environment.

Afibrinogenemia↗

Association between genetic variation at the APO AI-CIII-AIV gene cluster and familial combined hyperlipidaemia.

By using chemical cleavage mismatch analysis and the single strand conformation polymorphism technique, DNA fragments of the apo CIII gene, including the 5' flanking region and all the exons, were screened for sequence changes underlying the observed association between familial combined hyperlipidaemia (FCHL) and the apo AI-CIII-AIV gene cluster in affected individuals from eight FCHL families. A C1100-T transition in the wobble position of codon 14 in exon 3 and a T3206-G transversion in the non-translated region of exon 4 were identified, occurring in four and all probands, respectively. Using these variants and the G-75-A transition in the apo AI promoter, co-segregation of the gene cluster with hyperlipidaemia could be excluded in all eight families (lod score - infinity at theta = 0). No support for co-segregation was obtained using the affected pedigree member method of linkage analysis (overall T = -0.77 for f(p) = 1 [symbol: see text] p). The frequencies of T1100 and G3206 in a group of 55 patients with combined hyperlipidaemia were 0.35 and 0.52, respectively, which were significantly higher compared to 360 controls (0.21, p < 0.01 and 0.35, p < 0.005 respectively). In patients homozygous for the T1100 allele, levels of plasma triglyceride were 2.5-fold higher (868 mg/dl) than those homozygous for the C1100 allele (337 mg/dl), while patients heterozygous for the polymorphism had intermediate values (443 mg/dl) (p < 0.01). A similar association was seen in controls (p < 0.04). The three polymorphisms studied were in strong linkage disequilibrium in both the group of CHL patients and the unrelated individuals. This study confirms the association between common variation in the gene cluster and differences in plasma lipid levels in the general population and in patients with combined hyperlipidaemia, but fails to confirm co-segregation with FCHL, suggesting the role of other genetic or environmental factors in the aetiology of FCHL.

Adult↗

Elevated levels of factor VII activity in the postprandial state: effect of the factor VII Arg-Gln polymorphism.

A genetic polymorphism (Arg/Gln353) of coagulation factor VII was recently identified and shown to be associated with differences in basal factor VII coagulant activity. Postprandial lipaemia seems to exert an acute but evanescent effect on the activity of factor VII, and the influence of the Arg/Gln353 polymorphism on factor VII activation during postprandial lipaemia was therefore studied in male post-infarction patients [age 48.8 +/- 3.3 years (mean +/- SD)] with Arg/Arg (n = 23) and Arg/Gln (n = 8) genotypes. Factor VII antigen (VIIag) and activity along with plasma lipoproteins were determined before and after intake of a mixed meal-type of oral fat load. Patients with the Arg/Gln genotype had basal VIIag and activated factor VII (VIIa) levels 75% and 48%, respectively, of those of patients homozygous for the Arg allele. In absolute terms, VIIa increased more in homozygotes for the Arg allele (delta 0-6 h VIIa 1.76 +/- 1.48 ng/ml) than in heterozygotes (0.60 +/- 0.27 ng/ml) in response to fat intake, but the percentage increase in VIIa molecules did not differ significantly between subjects with Arg/Arg and Arg/Gln genotypes (37 +/- 32% versus 27 +/- 15%). This suggests that the influence of the Arg/Gln polymorphism on factor VII activity is mainly accounted for by differences in the basal factor VII protein level between genotypes. Since most of our lives are spent in the postprandial state, possession of the factor VII-Gln353 allele is likely to confer protection against coronary heart disease by reducing the amount of VIIa produced in response to fat intake.

Arginine↗

The role of beta-fibrinogen genotype in determining plasma fibrinogen levels in young survivors of myocardial infarction and healthy controls from Sweden.

Beta-fibrinogen G/A-455 polymorphism genotype was determined in 123 young survivors of myocardial infarction and 86 healthy controls from Sweden. Frequency of the A-455 allele was 0.25 (95% Confidence Interval 0.21-0.29) in both patients and controls, significantly higher than that reported previously (0.19, 95% CI 0.16-0.22) in 292 men from the UK. Mean plasma fibrinogen level was significantly higher in patients (3.6 g/l) than in controls (3.1 g/l), with p < 0.001. Genotype was significantly associated with (adjusted) plasma fibrinogen level in controls (p = 0.003). This effect was confined to the smokers (n = 50) where mean fibrinogen level was significantly (p = 0.001) higher in G/A-455 and A/A-455 individuals (3.5 g/l) compared with G/G-455 homozygotes (2.9 g/l). There was a significant interaction between smoking status and genotype in determining plasma fibrinogen levels in the controls. These data provide independent confirmation of the association between beta-fibrinogen G/A-455 genotype and plasma fibrinogen levels previously observed in healthy men from the UK.

Adult↗

The two allele sequences of a common polymorphism in the promoter of the plasminogen activator inhibitor-1 (PAI-1) gene respond differently to interleukin-1 in HepG2 cells.

We have detected a common (allele frequency 0.53/0.47) single base pair insertion/deletion polymorphism 675 base pairs upstream from the start of transcription of the plasminogen activator inhibitor-1 (PAI-1) gene, using the chemical cleavage mismatch analysis. "Band shift assays" suggest that the allele with the single base pair insertion contains an additional protein binding site which is not present in the del allele. Competition experiments confirmed that the binding was specific to the sequence of the ins allele and suggest that proteins bound to this site may be NF-kB-like proteins. Analysis of chloramphenicol acetyltransferase (CAT) mRNA produced by constructs containing the PAI-1 promoter (-805 to +83) showed that the deletion allele produced six times more mRNA than the insertion allele in response to interleukin-1 (p < 0.001). In a sample of 107 young patients with previous myocardial infarction and 95 healthy population-based subjects, the del allele was associated with increased PAI-1 levels, 21% higher than the sample mean in the del homozygotes (p < 0.05). This study also suggested that individuals homozygous for the del allele may have an altered response to the acute phase stimulus. Taken together these results suggest that the insertion/deletion polymorphism in the PAI-1 promoter is of functional importance in regulating the expression of the PAI-1 gene.

Adult↗