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Hong-Guang Xie

Publications and source records attributed to Hong-Guang Xie.

18 recordsLinked to original sources

Variations in the alpha2A-adrenergic receptor gene and their functional effects.

BACKGROUND AND OBJECTIVES: The alpha2A-adrenergic receptor (ADRA2A) plays a central role in the regulation of systemic sympathetic activity and hence cardiovascular responses such as heart rate and blood pressure. The objectives of this study were to systematically search for variants in the ADRA2A gene, to define the gene's haplotype structure, and to examine potential functional effects of these variants. METHODS: We examined 5957 base pairs of contiguous sequence of ADRA2A (promoter, exonic, and 3'-flanking region) using polymerase chain reaction to amplify the genomic target, followed by bidirectional sequencing, in 135 healthy subjects (85 white and 50 black subjects). Haplotypes were inferred by use of an expectation-maximization algorithm. Primary (plasma norepinephrine concentration) and secondary (resting heart rate and blood pressure) phenotypes were compared among subjects grouped by individual polymorphisms and haplotypes. RESULTS: We identified 41 variants, including 24 novel variants. On the basis of 9 optimally selected markers, 11 haplotypes in 5 haplotype groups were inferred, representing approximately 99% of the cohort. Two uncommon variants in complete linkage disequilibrium (G>C at -1903 and C>G at -1607, identified in 3 black subjects) were associated with significantly increased plasma norepinephrine concentrations (376.7 +/- 6.1 pg/mL versus 218.4 +/- 95.0 pg/mL, P = .011). There was no other significant association between genetic variants or any of the haplotypes with phenotypes. CONCLUSION: We describe novel variants and the haplotype structure of the ADRA2A gene. Common genetic ADRA2A variants are not important determinants of baseline cardiovascular measures (plasma norepinephrine, heart rate, and blood pressure) in healthy volunteers.

Adult↗

Beta2-adrenoceptor genotype and function affect hemodynamic profile heterogeneity in postural tachycardia syndrome.

Previous studies suggest that the beta2-adrenoceptor functions abnormally in patients with postural tachycardia syndrome (POTS) and may contribute to their altered hemodynamic profile. To test the hypothesis that the beta2-adrenoceptor response is decreased in POTS, we studied: (1) the arterial vasodilation response to the beta agonist, isoproterenol, and (2) the distribution of common polymorphisms (codons 16 and 27) of the gene coding the receptor (beta2-AR) in a large population with POTS. We measured plasma catecholamines and monitored hemodynamics and changes in forearm and leg blood flow to incremental doses of intraarterial isoproterenol in 9 patients with POTS compared with 8 healthy subjects. For polymorphism assessment we collected DNA from 57 patients with POTS and compared with 67 age-sex matched healthy subjects. Circulating catecholamines were significantly higher in POTS subjects compared with controls. Intrabrachial and intrafemoral isoproterenol infusion elicited a dose-dependent increase in blood flow. In healthy subjects, blood flow increased (mean+/-SEM) 400+/-70% in the forearm and 170+/-40% in the leg, but only 280+/-60% in forearms and 120+/-20% in legs of patients with POTS (ANOVA for both P<0.001). The genotype and allele distributions for codons 16 and 27 beta2-AR variants were not different in the 2 groups. However, the blood pressure and plasma norepinephrine levels diverged in patients according to their genotype. Patients with Gly16Gly and patients with Glu27Glu had lower plasma catecholamines and higher supine and upright blood pressure, compared with other genotypes. Therefore, both decreased beta2-adrenoceptor-related vasodilation and beta2-AR polymorphisms may contribute to the hemodynamic diversity of patients with POTS.

Adrenergic beta-Agonists↗

Effects of individual ginsenosides, ginkgolides and flavonoids on CYP2C19 and CYP2D6 activity in human liver microsomes.

1. The effects of four individual ginsenosides (Rb1, Rb2, Rc and Rd), two ginkgolides (A and B) and one flavonoid (quercetin) on CYP2C19-dependent S-mephenytoin 4 cent-hydroxylation and CYP2D6-mediated bufuralol 1 cent-hydroxylation were evaluated in human liver microsomes. 2. Increasing concentrations of each test compound were added to microsomal incubation mixtures containing a well-characterized marker substrate (S-mephenytoin for CYP2C19 or bufuralol for CYP2D6) to determine their IC(50) values (compound concentration yielding 50% inhibition of a marker enzyme activity), which were estimated by graphical inspection. 3. For CYP2C19, the IC(50) values were 46, 46 and 62 micromol/L for ginsenoside Rd, quercetin and ginsenoside Rb2, respectively, whereas only ginsenoside Rd had an IC(50) value of 57 micromol/L for CYP2D6. 4. The data suggest that the tested compounds are not likely to inhibit the metabolism of the concurrent use of a given drug whose primary route of elimination is through CYP2C19 or CYP2D6.

Aryl Hydrocarbon Hydroxylases↗

Gene variants in noncoding regions and their possible consequences.

Human biodiversity or individual traits are not well explained by exonic mutations of all 20,000 known human genes. Accumulating evidence has demonstrated that not all noncoding regions are junk DNA sequences, and that some functionally important noncoding variants contribute significantly to altered gene expression, qualitatively or quantitatively. Thus, functional profiling or clinical relevance of noncoding variations should not be underestimated or ignored. To validate these concepts, some important examples are discussed further in this short review.

5' Untranslated Regions↗

Alpha2B adrenergic receptor 301-303 deletion polymorphism and vascular alpha2 adrenergic receptor response.

Postsynaptic alpha2B adrenergic receptors (ARs) mediate vasoconstriction. There is more than 1000-fold variability in vascular sensitivity to an alpha2-AR agonist. Genetic variability may contribute to such interindividual differences in sensitivity. A 301-303 deletion (del) polymorphism has been identified in the coding region of the alpha2B-AR gene and has functional effects in vitro. Thus, we examined the hypothesis that the del301-303 polymorphism contributes to variability in vascular alpha2-AR responses in vivo. Healthy subjects were recruited based on their alpha2B-AR genotype. Their vascular sensitivity was determined using a linear variable differential transformer following the infusion of increasing doses (range 0.01-1000 ng/min) of the alpha2-AR agonist, dexmedetomidine, into a dorsal hand vein. The dose that produced 50% (ED50) of maximum venoconstriction (Emax) was determined for each subject. Vascular response was compared among the three genotypes. Forty-nine subjects were studied [28 wild-type wt/wt, 13 wt/del, 8 del/del]. There was no difference in dexmedetomidine ED50 and Emax among the alpha2B-AR del301-303 genotypes. The ED50 was 1.39 ng/min [95% confidence interval (CI) 0.03-63.0 ng/min] in wt/wt subjects, 1.63 ng/min (95% CI 0.01-177.8 ng/min) in wt/del and 2.37 ng/min (95% CI 0.17-33.7 ng/min) in del/del (P=0.80). The average Emax was 75.4+/-14.9% in wt/wt, 75.7+/-21.3% in wt/del and 82.2+/-12.9% in del/del subjects (P=0.26). These findings suggest that the del301-303 polymorphism does not contribute significantly to interindividual in vivo variability in response to alpha2-AR activation in the hand vein.

Adrenergic alpha-Agonists↗

Variation in the alpha2B-adrenergic receptor gene (ADRA2B) and its relationship to vascular response in vivo.

The alpha2B-adrenergic receptor (ADRA2B) plays an important role in vasoconstriction and blood pressure regulation. One common variant in the ADRA2B gene (del 301--303) has been identified, and results in markedly decreased receptor desensitization in vitro but does not alter vascular sensitivity in vivo. Therefore, we fully characterized genetic variations in ADRA2B and related them to phenotype in vivo. We examined 5812 bp of contiguous sequence of ADRA2B (promoter, exonic, and 3'-untranslated region; 3'-UTR) using the polymerase chain reaction to amplify the genomic target followed by bidirectional sequencing (n=68). Haplotypes were inferred using an expectation maximization algorithm. Vasoconstriction in response to increasing doses of the highly selective alpha2-adrenergic receptor agonist, dexmedetomidine (0.01--1000 ng/min) was measured in the dorsal hand vein using a linear variable differential transformer. The dose that produced 50% (ED50) of maximum venoconstriction (Emax) was determined for each subject from the individual dose--response curves. ED50 and Emax were compared in subjects with and without variant alleles and haplotypes of interest. We identified 24 variable sites, 12 in the promoter region, five in the coding region (including two previously described as non-synonymous variants) and seven in the 3'-UTR region. Four haplotypes were inferred, representing approximately 95% of the cohort. One haplotype, characterized by two single nucleotide polymorphisms in the promoter region, and one in the 3'-UTR, occurred in seven of 38 African-Americans, and was associated with a lower Emax, 61.3% [95% confidence interval (CI) 39.5--83.0, n=7] compared to 78.1% (CI 73.8--82.5) in wild-types (n=61) (P=0.02). There was no association between the nine common variants and dexmedetomidine ED50. We have described novel variants and haplotypes of the ADRA2B gene. These do not alter sensitivity to a selective alpha2-adrenergic receptor agonist but some may decrease maximal venoconstriction in vivo.

Adolescent↗

No association of the Asp298 variant of the endothelial nitric oxide synthase gene with preeclampsia.

BACKGROUND: Preeclampsia, the most common serious complication of pregnancy, is characterized by vasoconstriction, dysfunction of the vascular endothelium, and hypertension. Unidentified genetic factors and impaired nitric oxide (NO)-mediated vasodilation are thought to contribute to the development of the syndrome. Polymorphisms of the endothelial nitric oxide synthase (eNOS) gene affect NO production and have been associated with hypertension and preeclampsia in a Japanese population. METHODS: We compared the frequency of the Glu298Asp eNOS polymorphism in 397 Hispanic and white normotensive pregnant control subjects with the gene frequencies in 64 women with preeclampsia (systolic blood pressure >140 mm Hg or diastolic blood pressure >90 mm Hg, on at least two occasions 6 hours apart, and proteinuria >0.3 g/L or a dipstick proteinuria reading of 2+). RESULTS: Preeclampsia was not associated with the presence of Asp at position 298 of eNOS. CONCLUSIONS: In contrast to the findings in Japanese women, preeclampsia was not associated with the Asp variant of eNOS in an American population.

Adult↗

Alpha 1A-adrenergic receptor polymorphism and vascular response.

OBJECTIVE: The alpha(1A)-adrenergic receptor is highly expressed in human vasculature including resistance arteries and veins, and its stimulation is primarily responsible for adrenergically mediated smooth muscle contraction. Variability in sensitivity to phenylephrine, an alpha(1A) adrenergic agonist, has a large genetic component. We examined the hypothesis that a common polymorphism of alpha(1A)-adrenergic receptor (Arg347Cys) affects in vivo response. METHODS: We measured vascular sensitivity to phenylephrine using the dorsal hand vein linear variable differential transformer technique and determined alpha(1A)-adrenergic receptor genotype in 74 healthy, nonsmoking adults (28 Arg/Arg, 30 Arg/Cys, and 16 Cys/Cys). RESULTS: Sensitivity to phenylephrine, expressed as the dose of phenylephrine resulting in 50% venoconstriction (Phe(50)), was not significantly different in subjects with the 3 alpha(1A) adrenergic receptor genotypes: Phe(50) geometric mean (95% confidence interval) was 513 ng/min (287-918 ng/min) for Arg/Arg, 431 ng/min (274-680 ng/min) for Arg/Cys, and 471 ng/min (197-1124 ng/min) for Cys/Cys (P =.90). CONCLUSION: We conclude that the Arg347Cys receptor polymorphism does not alter agonist-mediated venoconstriction in vivo.

Adrenergic alpha-1 Receptor Agonists↗

Beta2-adrenoceptor Thr164Ile polymorphism is associated with markedly decreased vasodilator and increased vasoconstrictor sensitivity in vivo.

BACKGROUND: The uncommon Thr164Ile polymorphism of the beta2-adrenoceptor is associated with profoundly altered responses to agonist in vitro; however its effects on vascular responses in vivo are not known. Altered adrenergic vascular sensitivity may contribute to the decreased survival observed in patients with congestive heart failure carrying the Ile164 allele. METHODS AND RESULTS: We used the linear variable differential transformer dorsal hand vein technique to compare vasodilation in response to the beta-adrenergic receptor agonist, isoproterenol, and vasoconstriction in response to the alpha-adrenergic receptor agonist, phenylephrine, in healthy homozygous (Thr164/Thr164) (n = 21) and heterozygous Thr164/Ile164 (n = 5) women. The dose of isoproterenol required to achieve 50% venodilation (geometric mean; 95% CI) was significantly higher in women with the Ile164 allele (82.5 ng/min; 17.3-394 ng/min) than those without (15.8 ng/min; 11-25 ng/min; P = 0.004). The maximum response to isoproterenol was not different (102 +/- 1% and 102 +/- 3%, respectively, P = 0.9). The dose of phenylephrine needed to induce 50% venoconstriction was significantly lower in women with the Ile164 allele (151 ng/min; 42-543 ng/min) than those without (540 ng/min; 350-835 ng/min; P = 0.02). CONCLUSIONS: The Thr164Ile polymorphism of the beta2-adrenergic receptor is associated with a five-fold reduction in sensitivity to beta2 receptor agonist-mediated vasodilation; vasoconstrictor sensitivity is increased. The overall effect of the Thr164Ile polymorphism is to shift the balance of adrenergic vascular tone toward vasoconstriction. This suggests a mechanistic explanation for the clinical observation of decreased survival in patients with congestive heart failure heterozygous for the Thr164Ile polymorphism.

Adrenergic alpha-1 Receptor Agonists↗

Genetic variability in CYP3A5 and its possible consequences.

The cytochrome P450 3A (CYP3A) subfamily members are the most abundant and important drug-metabolizing enzymes in humans, and wide interindividual variability in CYP3A expression and function is present. CYP3A4 alone cannot fully explain the observed constitutive variability because its genetic variants are relatively uncommon and have limited functional significance, whereas CYP3A5 expression in humans is highly variable and may be contributory. However, it is difficult to delineate the relative contribution of CYP3A4 and CYP3A5, and to differentiate their effects on drug metabolism as their protein structure, function and substrates are so similar. By contrast, molecular biology methods provide the ability to identify CYP3A4 and CYP3A5 genotypes with certainty. This review collates currently available data on CYP3A5 polymorphisms, provides information on the population frequency of each genetic variant in major ethnic groups, and describes in vitro and in vivo studies that have attempted to identify genotype-phenotype associations.

Animals↗

Nitric oxide production decreases after salt loading but is not related to blood pressure changes or nitric oxide-mediated vascular responses.

BACKGROUND: Nitric oxide production is a homeostatic mechanism that may regulate blood pressure during salt loading. Salt-sensitive hypertension in animal models and in humans is characterized by increased blood pressure and decreased nitric oxide production after salt loading. It is not known if this impaired nitric oxide production is the result of hypertension or is a mechanism contributing to the blood pressure response to salt. METHODS AND RESULTS: The effects of salt loading on blood pressure, nitric oxide-mediated vasodilation and nitric oxide production were measured in 25 normotensive subjects after 6 days on either a high (400 mmol/day) or low (10 mmol/day) sodium, low nitrate diet. Mean arterial pressure increased during the high-salt diet [4 +/- 1 mmHg (mean +/- SEM)] in 12 subjects and remained unchanged or decreased (-4 +/- 1 mmHg) in 13 subjects. Plasma nitrite and nitrate, a measure of nitric oxide production, decreased significantly from 39 +/- 3.3 micromol/l during the low-salt diet to 22.4 +/- 2.4 micromol/l during the high-salt diet (P = 0.0001). However, changes in mean arterial pressure from low- to high-salt diet did not correlate with changes in plasma nitrite and nitrate (r = 0.14, P = 0.51). Forearm blood flow increased significantly (P <0.0001) in response to mental stress, a nitric oxide-mediated response, but was not affected by sodium intake (from 7.8 +/- 0.9 to 11.2 +/- 1.4 ml/min per 100 ml during low salt versus 8.5 +/- 1.2 to 10.4 +/- 1.3 ml/min per 100 ml during high salt,P = 0.3). CONCLUSIONS: Salt loading results in a decrease in nitric oxide production in both salt-sensitive and salt-resistant normotensive subjects, which is independent of changes in blood pressure and does not affect the nitric oxide-mediated vascular response to mental stress. In contrast to salt-resistant animal models, salt loading in healthy subjects does not increase nitric oxide production. Therefore, the increased blood pressure response to salt loading may occur through mechanisms other than nitric oxide, or salt-sensitive individuals are more sensitive to the reduced nitric oxide production that occurs after salt loading in both salt-sensitive and salt-resistant subjects.

Adult↗

G-protein beta(3) subunit 825 C/T polymorphism is associated with weight gain during pregnancy.

A common polymorphism (C825T) of the gene encoding the G-protein beta(3) subunit has been associated with obesity. We examined the hypothesis that this polymorphism affected weight gain during pregnancy. Two hundred and ninety-four women with uncomplicated term deliveries of singleton pregnancies were genotyped. Women homozygous for the T allele (TT) gained significantly more weight than women carrying the C allele (CC and CT groups) (P = 0.006) and had a significantly higher pre-pregnancy body mass index (P = 0.02). The C825T polymorphism of the G-protein beta(3) subunit gene, known to be associated with obesity, is a determinant of weight gain during pregnancy.

Adult↗

CYP2C9 allelic variants: ethnic distribution and functional significance.

Cytochrome P-450 (CYP) 2C9 CYP2C9 is a polymorphically expressed enzyme responsible for the metabolism of several clinically important drugs, some with a low therapeutic index. This review summarizes the structure-function relationship of the CYP2C9 promoter and coding regions, known polymorphisms, the functional significance of various CYP2C9 alleles in vitro and in vivo, and their population frequencies. In addition, possible molecular mechanisms underlying ethnic variability in the metabolism of CYP2C9 substrate drugs are discussed.

Aryl Hydrocarbon Hydroxylases↗

Polymorphisms in beta-adrenergic receptor genes in the acquired long QT syndrome.

INTRODUCTION: Sympathetic activation is a trigger for life-threatening arrhythmias in many patients with the congenital long QT syndrome (LQTS), and an increase in heart rate has been reported just prior to torsades de pointes in patients with drug-associated (acquired) LQTS (aLQTS). We compared the frequencies of five recognized nonsynonymous coding region polymorphisms in genes encoding the beta1-adrenergic and beta2-adrenergic receptors (AR) in 93 patients with aLQTS and 3 control groups: an ethically diverse set of individuals from middle Tennessee (n = 71), a subset of the Polymorphism Discovery Resource obtained from National Human Genome Research Institute (n = 89), and patients who tolerated QT-prolonging drugs without aLQTS (non-aLQTS group; n = 66). METHODS AND RESULTS: Polymerase chain reaction-restriction fragment length polymorphism was used to screen for Ser49Gly and Gly389Arg (beta1-AR) and Thr164Ile (beta2-AR). For Arg16Gly and Gln27Glu, polymorphic sites 33 nucleotides apart in the beta2-AR, single-stranded conformational polymorphism was used to distinguish among the 4 possible haplotypes and 10 possible genotypes. Allele frequencies were similar among the 4 groups at the 2 beta1-AR sites. The uncommon Ile164 variant in beta2-AR was slightly more frequent in patients (3.2%) than in any of the 3 control groups (0.6% to 2.3%). At the 16-27 neighboring sites in the beta2-AR, one haplotype (Arg16/Glu27) was not detected, as in previous studies; hence, only 6 genotypes were present. There were fewer Gly16/Gln27 homozygotes in the non-aLQTS group (1.5%) than in two other control groups or the aLQTS group (8.5% to 10%). CONCLUSION: None of the five common nonsynonymous coding region polymorphisms in the beta-AR genes predict drug-associated torsades de pointes, although the Gly16/Gln27 haplotype may be a risk factor.

Female↗

beta2-Adrenergic receptor genotype and preterm delivery.

OBJECTIVE: Our purpose was to determine whether the functional genetic polymorphisms of the beta(2)-adrenergic receptor (beta(2)AR) that result in changes in amino acid residues 16 and 27 are associated with preterm delivery. STUDY DESIGN: A case-control study comparing the distribution of beta(2)AR genotype between 251 Hispanic women delivered at term and 28 Hispanic women delivered preterm. Preterm delivery was defined as spontaneous onset of labor resulting in delivery before 37 weeks of gestation, in a singleton pregnancy, with no apparent etiology for preterm labor and delivery. Genomic DNA was isolated from peripheral blood, and beta( 2)AR alleles were identified by established techniques. RESULTS: Only one woman (4%) with preterm labor was homozygous for Arg16 versus 79 (31%) in the control group (P =.01, odds ratio 0.08). There was no association of preterm labor with genotype at position 27. CONCLUSION: Our data demonstrate that homozygosity for Arg16, which in vitro is associated with decreased down-regulation of the beta(2)AR, protects from preterm delivery.

Adult↗