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W Siffert

Publications and source records attributed to W Siffert.

At least 19 recordsLinked to original sources

The C allele of the GNB3 C825T polymorphism of the G protein beta3-subunit is associated with an increased risk for the development of oncocytic thyroid tumours.

Carriers of the C allele of the common C825T polymorphism in the GNB3 gene of the G protein have been associated with the development of follicular thyroid adenomas. Since the C allele of this polymorphism is related to a lower signalling capacity, it was speculated whether the C825T polymorphism may play a particular role in oncocytic thyroid tumours, which are recognized for their reduced ability to synthesize thyroid-specific proteins and hormones, although they possess an intact thyroid-stimulating hormone receptor-adenylyl cyclase system. Using pyrosequencing, both the genotype distribution and the allele frequency of the C825T polymorphism were investigated in a series of 104 patients with oncocytic thyroid tumours of follicular cell origin [58 adenomas, 41 follicular thyroid carcinomas (FTCs), and five papillary thyroid carcinomas (PTCs)]; the results were compared with those obtained from 321 age and gender-matched healthy blood donors and a series of 327 non-oncocytic thyroid tumours of follicular cell origin (119 adenomas, 80 FTCs, and 186 PTCs). Analysis of the genotype distribution (comparing oncocytic with non-oncocytic tumours of the present series) revealed a significantly increased odds ratio (OR) for CC versus TT (OR = 4.22; p = 0.011) and CC versus CT (OR = 1.62; p = 0.049) carriers to develop an oncocytic thyroid tumour; ORs to develop an oncocytic thyroid tumour were also increased comparing the genotype distribution between the group of oncocytic tumours and healthy controls for CC versus TT (OR = 3.73; p = 0.017) and CC versus all T carriers (OR = 1.56; p = 0.034). Oncocytic thyroid tumours as a group showed a statistically significant increase of the C-allele frequency when compared with all non-oncocytic tumours (p = 0.0039) as well as healthy blood donors (p = 0.017). The results strongly suggest that the C allele of the GNB3 C825T polymorphism of the G protein beta3-subunit is associated with an increased risk for the development of oncocytic thyroid tumours. This polymorphism may thus be considered a (co)factor favouring the development of oncocytic thyroid tumours, although the biological mechanism(s) underlying this association remain obscure.

Adenoma↗

Sildenafil affects olfactory function.

PURPOSE: Sildenafil is the first member of a new class of oral drugs effective for erectile dysfunction. However, approximately 20% of patients complain about nasal congestion after sildenafil administration. MATERIALS AND METHODS: Because nasal airflow and olfaction are closely linked, the sense of smell was evaluated in 20 young, healthy volunteers after the administration of 50 and 100 mg sildenafil, and placebo in a double-blinded, crossover study. Olfactory function was evaluated using a standardized and validated test (Sniffin' Sticks). To investigate a possible impact of G-protein beta3 subunit C825T polymorphism on the effect of sildenafil on olfaction the genotype of all subjects was determined. RESULTS: The effect of sildenafil on olfaction was only present at a dose of 100 mg but not at a dose of 50 mg sildenafil. The genotypes TT, CC and TC of the G-protein beta3 C825T polymorphism had no impact on the change in olfactory function. CONCLUSIONS: Higher sildenafil doses may produce decreased olfactory sensitivity.

Cross-Over Studies↗

ACE I/D but not AGT (-6)A/G polymorphism is a risk factor for mortality in ARDS.

The intrapulmonary renin-angiotensin system via tissue concentration of angiotensin II or bradykinin may have multiple effects on pulmonary pathophysiology. Therefore, it was investigated whether the presence of the D allele of the angiotensin-converting enzyme (ACE) insertion/deletion (I/D) polymorphism or the A allele of angiotensinogen (AGT) promoter polymorphism (-6)A/G are independent risk factors for 30-day survival in acute respiratory distress syndrome (ARDS) patients. In a prospective study, adults (Germans of Caucasian ethnicity) with ARDS (n = 84) were recruited from the current authors' intensive care unit and genotyped for the ACE I/D and the AGT (-6)A/G polymorphisms, as were 200 healthy Caucasian controls. Mortality was increased in the ACE DD genotype compared with the I allele, and the ACE I/D polymorphism was an independent prognostic factor for 30-day survival. Patients with a homozygous DD genotype were at highest risk for death (hazard ratio 5.7; 95% confidence interval 1.7-19.2) compared with the II genotype. In contrast, the AGT (-6)A/G polymorphism was neither associated with an increased risk for development of ARDS nor with outcome. In patients with acute respiratory distress syndrome, the angiotensin-converting enzyme insertion/deletion polymorphism but not the angiotensinogen (-6)A/G promoter polymorphism is an independent risk factor with a pronounced effect on 30-day survival.

Adult↗

GNB3 C825T polymorphism and response to anti-retroviral combination therapy in HIV-1-infected patients--a pilot study.

METHODS: Analyses were based on a cohort of 55 HIV infected patients whose treatment was changed due to therapy failure. Viral load, CD4+ and CD8+ cell counts were determined before therapy and after 8 weeks and 16-32 weeks, respectively. GNB3 genotyping was performed using Pyrosequencing. Chemotaxis of purified CD4+ cells was quantified in a Boyden chamber using stromal cell-derived factor 1alpha (SDF-1alpha) as a stimulus. RESULTS: Age gender, route of infection, treatment, and baseline values for viral load and CD4+ and CD8+ cell counts were not associated with GNB3 genotypes (10 TT, 24 TC, 21CC). After 8 weeks of treatment viral load was lowest in TT genotypes (log copies/ml: TT: 1.88 +/- 0.32; TC: 2.49 +/- 0.24; CC: 3.06 +/- 0.22; p = 0.039) and this trend tended to persist until final visit. Unexpectedly, TT genotypes had lowest CD4+ cell counts at final visit (TT: 165.3 +/- 34.0; TC: 414.4 +/- 72.1; CC: 441.5 +/-70.9; p = 0.047). SDF-1alpha-stimulated chemotaxis was reduced in CD4+ cells from HIV-1-infected patients compared to healthy controls. Still cells from TT genotypes displayed strongest chemotaxis. CONCLUSIONS: This pilot study suggests that the GNB3 C825T polymorphism is associated with short-term success of HAART treatment in HIV-1-infected patients.

Adult↗

Relevance of the NOS3 T-786C and G894T variants for cholinergic and adrenergic coronary vasomotor responses in man.

OBJECTIVE: We investigated the impact of the -786C allele at the promoter and the 894T allele in exon 7 of the gene encoding the endothelial nitric oxide synthase (NOS3) on coronary vasomotor responses to exogenous and endogenous stimuli. METHODS: In 47 individuals undergoing coronary angiography for chest pain, but without significant stenosis in the left anterior descending artery (LAD), nitroglycerine and acetylcholine were infused intracoronarily, and a cold pressor test (CPT) was performed. Coronary blood flow (CBF) in the LAD was calculated from quantitative coronary angiography and intracoronary Doppler measurements. Aortic and coronary sinus lactate levels were determined in 18 individuals. To analyze the impact of NOS3 genotypes, a logistic regression model was used. RESULTS: In response to acetylcholine (p = 0.002) and CPT (p = 0.015) CBF reduction was associated with homocygosity for the -786C allele. Myocardial lactate uptake was reversed into net lactate production in CC homocygotes. No independent effects of the G894T polymorphism were observed in the present study. Haplotype analysis revealed a significant linkage disequilibrium between both polymorphisms (p < 0.001). CONCLUSIONS: Our findings suggest a pathophysiologically relevant role for the T-786C polymorphism in human coronary vasomotion. The observed linkage disequilibrium between both NOS3 genotypes deserves further research in future studies.

Acetylcholine↗

The T-allele of the C825T polymorphism is associated with higher arterial stiffness in young healthy males.

Arterial stiffening is the major cause of increasing systolic blood pressure in arterial hypertension. Increased arterial stiffness is one major mechanism responsible for morbidity and mortality in hypertension. A C825T polymorphism was identified in the gene encoding the G-protein beta3 subunit (GNB3), and an association of the T-allele with hypertension was demonstrated in several studies. In order to identify a pathogenetic link between hypertension and arterial stiffness, we compared two indices of arterial stiffness, pulse wave velocity (PWV) and augmentation index, in young, healthy men with and without the 825T-allele under resting conditions. PWV was determined from pressure tracing over carotid and femoral arteries in 99 subjects (CC: n=43; CT&TT: n=56). Augmentation index was derived in 72 subjects (CC: n=30; CT&TT: n=42) by pulse wave analysis using radial applanation tonometry. Carriers of the 825T-allele exhibited a significantly higher PWV compared to subjects with the CC genotype (6.0+/-0.1 m/s (TC&TT) vs 5.7+/-0.1 m/s (CC); P=0.0251). There was also a significant difference (P = 0.0448) in augmentation index between carriers of the T-allele (CT&TT: 3.4+/-2.9%) and controls with the CC -genotype (-5.0+/-4.1 %). There was no difference in any other anthropometric (age, height, weight, body mass index) or haemodynamic (heart rate, peripheral and central blood pressure). In summary, the C825T polymorphism is associated with higher arterial stiffness in young, healthy males. Arterial stiffening may pathogenetically contribute to the development of hypertension in carriers of the T-allele.

Adult↗

Methylenetetrahydrofolate reductase (MTHFR) gene 677C>T and 1298A>C polymorphisms are associated with differential apoptosis of leukemic B cells in vitro and disease progression in chronic lymphocytic leukemia.

Methylenetetrahydrofolate reductase (MTHFR) regulates the metabolism of folate and methionine, essential components of DNA synthesis and methylation. We investigated whether the two genetic MTHFR polymorphisms (677C>T and 1298A>C) are associated with an increased risk for chronic lymphocytic leukemia (CLL) or may predict disease progression. Moreover, we measured potential genotype effects on apoptosis of B-CLL cells.Allele frequencies and genotype distributions for both polymorphisms were not significantly different in 111 patients vs 92 healthy controls. While progression-free survival (PFS) was not significantly different in individuals with CLL including all stages, in patients with Binet stage A PFS was significantly longer in patients displaying the MTHFR 677CC (P=0.043) and the MTHFR 1298A/C or CC genotypes (P=0.019). In a multivariate analysis, MTHFR haplotype (677CC plus 1298CC or A/C) was the best independent prognostic factor for PFS compared with other known prognostic factors. Spontaneous apoptosis of B-CLL cells in vitro was significantly increased in the favorable risk group with MTHFR 677CC and MTHFR 1298AC, which may constitute the cellular basis of the observed associations. While MTHFR polymorphisms do not affect the risk for B-CLL, they may be independent prognostic markers that influence the PFS in patients with early-stage B-CLL.

Apoptosis↗

Genetics of human coronary vasomotion.

While the number of genetic polymorphisms associated with cardiovascular diseases rapidly increases, the functional implications of such gene alterations are often poorly understood. Moreover, findings from genetic association studies are often contradictory, which limits the common acceptance of a role of these genetic variants in human disease. One effective approach towards a better understanding of the pathophysiologic relevance of a gene variant is the description of its impact on dynamic or functional phenotypes such as coronary vasomotor responses to exogenous or endogenous stimuli. This brief review focuses on the impact of variants in genes of the renin-angiotensin system, the alpha2-adrenoceptor gene, and the G protein beta3 subunit gene on coronary vasomotor responses.

Adult↗

Genetics of human arterial hypertension.

Arterial hypertension is one of the major cardiovascular risk factors in Western countries. Besides some well established, but rather rare forms of secondary hypertension, essential hypertension is the most common diagnosis. The hereditary nature of this disease has been well established in many familial studies. The quantitative contribution of genetic factors to blood pressure variance is estimated to be about 30%, however, the genetic background of essential hypertension is complex and currently not fully understood. Besides few monogenetic forms of Mendelian transmitted hypertension, current efforts are usually directed at the identification of single contributing genetic factors. This review is thought to highlight current strategies towards a better understanding of the genetic background of essential hypertension with particular respect to genetic variants of the renin-angiotensin system, of signaling pathways such as heterotrimeric G-proteins and alpha-adducin. Moreover, genetic association studies often fail to replicate findings from previous studies. This may be in part due to the polygenetic nature of the disease. Another potential reason may be the diversity of the investigated populations. The current results of genetic analyses of essential hypertension highlight, thus, the need for a more differentiated approach to the understanding of complex, polygenetic traits implementing gene-gene-, and gene-environment interactions or distinguished functional testing of thoroughly phenotyped cohorts under standardised environmental conditions.

Alleles↗

Glucose and lipid metabolism in young lean normotensive males with the G protein beta3 825T-allele.

The 825T-allele of the C825T polymorphism in GNB3, the gene for the G protein beta3 subunit, has been reported to be associated with essential hypertension and obesity. Expression of Gbeta3s, the gene product of GNB3 associated with the GNB3 825T-allele, causes increased signal transduction which may contribute to pathogenetic mechanisms ultimately resulting in hypertension and obesity. Given the known involvement of heterotrimeric G proteins in insulin secretion and insulin action on the cellular level, we analysed insulin sensitivity in each 15 young lean normotensive males with TC- and CC-genotypes, respectively. Blood glucose and serum insulin samples were taken during a standard oral glucose tolerance test. Insulin-stimulated glucose disposal was analysed by euglycemic-hyperinsulinemic clamp. Both groups did not differ with regard to the time-courses for glucose or insulin concentrations in the oral glucose tolerance test. Furthermore, insulin-stimulated glucose disposal was virtually independent of genotype. The TC-genotype is not associated with a primary defect in insulin secretion or sensitivity suggesting that obesity and hypertension in carriers of 825T do not likely result from primary alterations in glucose and insulin homeostasis. However, GNB3 825T-associated obesity may predispose to insulin resistance, an issue which remains to be investigated. Furthermore, fasting cholesterol was significantly higher in TC compared to CC genotype (4.71 versus 3.96 mmol/l; p = 0.007) suggesting that enhanced G protein signalling might be associated with alterations of cholesterol metabolism.

Adult↗

Effects of the G-protein beta3 subunit 825T allele on adipogenesis and lipolysis in cultured human preadipocytes and adipocytes.

The recently discovered C825T polymorphism of the G-protein beta 3 subunit has been reported to be associated with the development of hypertension and obesity. The aim of our study was to investigate the relationship between the C825T polymorphism and functional aspects of human adipose cells, particularly with regard to adipose differentiation and lipolysis. Adipose tissue samples were collected from 65 women with a BMI ranging from 19.7 to 39.7 kg/m 2 undergoing surgical mammary reduction. The stromal cells were allowed to undergo differentiation in primary culture using adipogenic media of defined composition. No significant difference was observed between the CC carriers and the carriers of the T allele under all adipogenic conditions with differentiation capacity related to the genotype. In a subgroup of patients (n = 20), lipolysis in isolated fat cells was determined by measurement of glycerol in the culture medium upon catecholamine exposure. Glycerol release after 10(-7) mmol/l isoproterenol was significantly higher in fat cells from the 10 CC carriers than in adipocytes from the T allele carriers when expressed as percentage of basal glycerol release (increase above baseline: CC: 809 +/- 174 %, T allele carriers: 247 +/- 88 %, p = 0.01), while basal glycerol concentrations were no different according to genotype after controlling for either age or BMI. In conclusion, this study provides the first evidence that the GNB3 825T allele is associated with an impairment of the beta-adrenergic control of lipolysis.

Adipocytes↗

The G protein beta3 subunit 825T allele is a genetic marker for enhanced T cell response.

The G protein beta3 subunit (GNB3) 825T allele is predictive of enhanced Gi protein activation. Studying the influence of C825T allele status on cellular in vitro immune responses towards recall antigens and interleukin-2 stimulation we observed a 2-4-fold, significantly increased proliferation in homozygous 825T (TT) vs. C825 allele (CC) carriers. Furthermore, lymphocyte chemotaxis and CD4(+) T cell counts of individuals with TT+TC genotypes were significantly enhanced compared to the CC genotype. In summary, it appears that C825T allele status is highly predictive of immunocompetence and could be a candidate gene in disorders associated with inadequate immune response.

Alleles↗

Molecular genetics of G proteins and atherosclerosis risk.

Using a classical candidate gene approach, we have described a common C825T polymorphism in the gene GNB3 which encodes the ubiquitously expressed beta3 subunit of heterotrimeric G proteins. The 825T allele is associated with alternative splicing of the gene and the formation of a truncated but functionally active beta3 subunit which is referred to as Gbeta3s. Expression of the splice variant results in an enhanced G protein activation on stimulation of G protein-coupled receptors. Carriers of the 825T allele show an increased risk for hypertension and left ventricular hypertrophy. Homo- and heterozygous 825T allele carriers respond with a stronger decrease in blood pressure to therapy with a thiazide diuretic than homozygous 825C allele carriers. Moreover, 825T allele carriers appear to have an increased risk for obesity which appears sensible given the established role of G protein signaling in adipogenesis. The highest frequencies of the 825T allele are found in ethnicities with the highest lifestyle-dependent risk for obesity, e.g., black Africans and East Asians. This suggests that the 825T allele fulfills the criteria of a thrifty genotype.

Arteriosclerosis↗

G protein beta3 subunit gene 825T allele is associated with increased left ventricular mass in young subjects with mild hypertension.

BACKGROUND: A nucleotide substitution (C-->T) at position 825 of the gene GNB3 encoding the beta3 subunit of heterotrimeric G proteins is associated with alternative splicing and enhanced signal transduction. There is accumulating evidence from different populations that the 825T allele is associated with increased prevalence of hypertension, obesity, and left ventricular hypertrophy. However, it is unclear to what extent the 825T allele has a direct influence on left ventricular structure, independently of the effects of pressure and body mass index. Therefore we explored whether the GNB3 825T allele is associated with increased left ventricular mass index in a selected and homogeneous group of young, never treated, mild hypertensives. PROCEDURES: Young subjects (n = 207, aged 18 to 45 years) were genotyped at the GNB3 825 locus. In each patient, 24-h ambulatory blood pressure (BP) measurement and two-dimensional guided M-mode echocardiography combined with Doppler sonography were performed. RESULTS: The genotype distribution among patients was in Hardy-Weinberg equilibrium. Patients carrying the 825T allele had an increased left ventricular mass index (95.1 +/- 1.5 v 89.7 +/- 1.5 g/m2; P = .01) in comparison to those with CC genotype. The association between left ventricular mass index and 825T allele was independent of gender, age, BP, heart rate, alcohol intake, and physical activity. CONCLUSIONS: In young patients with mild hypertension without heart disease the 825T allele is associated with an increased left ventricular mass index. These hypothesis-generating data suggest that GNB3 825T allele may be considered as one genetic marker predisposing to an increase in left ventricular mass in hypertensives, and justifies larger studies.

Adult↗

Human G protein beta3 subunit variant does not alter hypercarbic or hypoxic ventilatory response.

Hypercarbic respiratory drive is mainly determined by PCO(2) and pH with activity of the intracellular Na+/H+ exchanger (NHE) playing an important role in maintaining intracellular pH and respiratory drive. Because NHE activity varies with genetically different G-protein beta3 subunits (GNB3) (C/T polymorphism at nucleotide position 825) different genotypes might alter respiratory regulation. To test the hypothesis that short-term ventilatory responses vary with different GNB3 healthy volunteers with different genotypes (CC, TC, TT) were exposed to either hyperoxic hypercarbia (n=33) or to isocapnic hypoxia (n=31), respectively. There was no difference between CC, TC, and TT genotypes in hypercarbic and hypoxic respiratory drive when assessed as the ratio of minute ventilation over endexpiratory PCO(2) changes (DeltaV.E/DeltaPETCO(2)), maximal tolerable PETCO(2), and ratio of changes in ventilation over arterial haemoglobin desaturation (DeltaV.E/DeltaSO(2)), respectively. Thus, short-term hypercarbic and hypoxic ventilatory drive do not differ between individuals with genotypes encoding different GNB3. Whilst respiratory control may still be influenced by G-protein aberration, other mechanisms seem to have a more important role in controlling ventilation.

Genotype↗