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老年人中与高血压相关的硫化氢相关硫醇代谢和营养遗传学。

Hydrogen sulphide-related thiol metabolism and nutrigenetics in relation to hypertension in an elderly population.

机构信息

School of Environmental and Life Sciences, University of Newcastle, PO Box 127, Brush Rd, Ourimbah, NSW, 2258, Australia,

出版信息

Genes Nutr. 2013 Mar;8(2):221-9. doi: 10.1007/s12263-012-0317-3. Epub 2012 Aug 21.

Abstract

Hydrogen sulphide (H(2)S) is a gaseous signalling molecule that regulates blood flow and pressure. It is synthesised from cysteine via cystathionine β-synthase and cystathionine γ-lyase. We examined whether thiol precursors of H(2)S, transsulphuration pathway gene variants (CBS-844ins68 and CTH-G1364T) and key B-vitamin cofactors might be critical determinants of hypertension in an elderly Australian population. An elderly Australian retirement village population (n = 228; age 65-96 years, 91 males and 137 females) was assessed for the prevalence of two transsulphuration pathway-related variant genes associated with cysteine synthesis and hence H(2)S production. Thiols were determined by HPLC, genotypes by PCR and dietary intake by food frequency questionnaire. Homocysteine levels were statistically higher in the hypertensive phenotype (p = 0.0399), but there was no difference for cysteine or glutathione. Using nominal logistic regression, cysteine, CTH-G1364T genotype, dietary synthetic folate and vitamin B(6) predicted clinical phenotype (determined as above/below 140/90 mm Hg) and then only in female subjects (p = 0.0239, 0.0178, 0.0249 and 0.0371, respectively). Least-squares regression supports cysteine being highly inversely predictive of diastolic blood pressure: p and r (2) values <0.0001 and 0.082; 0.0409 and 0.046; and <0.0001 and 0.113 for all subjects, males and females, respectively. Additionally, CTH-G1364T genotype predicts diastolic blood pressure in males (p = 0.0217; r (2) = 0.083), but contrasts with observations for females. Overall, analyses, including stepwise regression, suggest cysteine, dietary natural and synthetic folate, vitamins B(6) and B(12), and both genetic variants (CTH-C1364T and CBS-844ins68) are all aetiologically relevant in the regulation of blood pressure. Hydrogen sulphide is a vasorelaxant gasotransmitter with characteristics similar to nitric oxide. Cysteine and the G1364T and 844ins68 variants of the cystathionine γ-lyase and cystathionine β-synthase genes, respectively, are the biological determinants of H(2)S synthesis, and all three are shown here to influence the hypertensive phenotype. Additionally, B-vitamin cofactors for these three enzymes may also be important determinants of blood pressure.

摘要

硫化氢(H₂S)是一种调节血流和血压的气态信号分子。它是由半胱氨酸通过胱硫醚β-合酶和胱硫醚γ-裂解酶合成的。我们研究了 H₂S 的硫醇前体、转硫途径基因变异(CBS-844ins68 和 CTH-G1364T)和关键的 B 族维生素辅因子是否可能是老年澳大利亚人群高血压的关键决定因素。对一个老年澳大利亚退休村人群(n=228;年龄 65-96 岁,男性 91 名,女性 137 名)进行了评估,以确定与半胱氨酸合成和 H₂S 产生相关的两种转硫途径相关变异基因的患病率。通过高效液相色谱法测定硫醇,通过聚合酶链反应测定基因型,通过食物频率问卷测定膳食摄入量。高血压表型的同型半胱氨酸水平显著升高(p=0.0399),但半胱氨酸或谷胱甘肽无差异。使用名义逻辑回归,胱氨酸、CTH-G1364T 基因型、膳食合成叶酸和维生素 B₆预测临床表型(如上所述/低于 140/90mmHg),仅在女性中(p=0.0239、0.0178、0.0249 和 0.0371)。最小二乘法回归支持胱氨酸与舒张压呈高度负相关:p 和 r²值均<0.0001 和 0.082;0.0409 和 0.046;<0.0001 和 0.113 适用于所有受试者、男性和女性。此外,CTH-G1364T 基因型可预测男性的舒张压(p=0.0217;r²=0.083),但与女性的观察结果相反。总体而言,包括逐步回归在内的分析表明,胱氨酸、膳食天然和合成叶酸、维生素 B₆ 和 B₁₂ 以及两种遗传变异(CTH-C1364T 和 CBS-844ins68)都是血压调节的病因学相关因素。硫化氢是一种具有类似一氧化氮特征的血管舒张性气体递质。半胱氨酸和胱硫醚 γ-裂解酶和胱硫醚 β-合酶基因的 G1364T 和 844ins68 变体分别是 H₂S 合成的生物学决定因素,这里所有三个都表明它们影响高血压表型。此外,这三种酶的 B 族维生素辅因子也可能是血压的重要决定因素。

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