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男性中二氢睾酮、雌二醇与白细胞端粒长度的流行病学及孟德尔随机化研究

Epidemiological and Mendelian Randomization Studies of Dihydrotestosterone and Estradiol and Leukocyte Telomere Length in Men.

作者信息

Yeap Bu B, Knuiman Matthew W, Divitini Mark L, Hui Jennie, Arscott Gillian M, Handelsman David J, McLennan Susan V, Twigg Stephen M, McQuillan Brendan, Hung Joseph, Beilby John P

机构信息

School of Medicine and Pharmacology (B.B.Y., B.M., J.Hun.), School of Population Health (M.W.K., M.L.D.), and School of Pathology and Laboratory Medicine (J.P.B.), University of Western Australia, Crawley, Western Australia 6009, Australia; PathWest Laboratory Medicine (J.Hui., G.M.A., J.P.B.) and Department of Cardiovascular Medicine (B.M., J.Hun.), Sir Charles Gairdner Hospital, Nedlands, Western Australia 6009, Australia; Department of Endocrinology and Diabetes (B.B.Y.), Fiona Stanley Hospital, Murdoch, Western Australia 6150, Australia; ANZAC Research Institute (D.J.H.), Sydney, New South Wales 2138, Australia; and Department Endocrinology (S.V.M., S.M.T.), University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

J Clin Endocrinol Metab. 2016 Mar;101(3):1299-306. doi: 10.1210/jc.2015-4139. Epub 2016 Jan 20.

Abstract

CONTEXT

Advancing age is accompanied by an accumulation of ill health and shortening of chromosomal telomeres signifying biological aging. T is metabolized to DHT by 5α-reductase (SRD5A2) and to estradiol (E2) by aromatase (CYP19A1). Telomerase preserves telomeres, and T and E2 regulate telomerase expression and activity in vitro.

OBJECTIVE

The objective of the study was to establish whether circulating T or its metabolites, DHT or E2, and single-nucleotide polymorphisms in SRD5A2 or CYP19A1 associate with leucocyte telomere length (LTL) in men.

PARTICIPANTS AND METHODS

Early-morning serum T, DHT, and E2 were assayed using mass spectrometry, and SRD5A2 and CYP19A1 single-nucleotide polymorphisms and LTL analyzed by PCR in 980 men from the Western Australian Busselton Health Survey who participated in the study. LTL was expressed as the T/S ratio.

RESULTS

Men were aged (mean ± SD) 53.7 ± 15.6 years. LTL decreased linearly with age, from the T/S ratio of 1.89 ± 0.41 at younger than 30 years to 1.50 ± 0.49 at 70 to younger than 80 years (r = -0.225, P < .0001). After adjustment for age, DHT and E2 were positively correlated with LTL (DHT, r = 0.069, P = .030; E2, r = 0.068, P = .034). The SRD5A2 rs9282858 polymorphism was associated with serum DHT but not with LTL. Three dominant alleles of CYP19A1 were each associated with lower serum E2 and shorter LTL: rs2899470 T (E2, 59.3 vs 68.6 pmol/L, P < .0001; T/S ratio, 1.54 vs 1.62, P = .045), rs10046 C (60.5 vs 68.1 pmol/L, P = .0005, 1.54 vs 1.62, P = .035), and rs700518 A (59.9 vs 68.9 pmol/L, P < .0001, 1.54 vs 1.63, P = .020). A single-copy haplotype C/T/I/A/T rs10046/rs2899470/rs11575899/rs700518/rs17703883 (52% prevalence) was associated with both lower E2 and shorter LTL.

CONCLUSIONS

In men, serum DHT and E2 correlate with LTL independently of age. Aromatase gene polymorphisms include three dominant alleles that are associated with both lower serum E2 and shorter LTL. E2 influences telomere length in vivo, thus warranting further studies to examine whether hormonal interventions might slow biological aging in men.

摘要

背景

随着年龄的增长,健康问题不断累积,染色体端粒缩短,这标志着生物衰老。睾酮(T)通过5α-还原酶(SRD5A2)代谢为双氢睾酮(DHT),通过芳香化酶(CYP19A1)代谢为雌二醇(E2)。端粒酶可维持端粒,并且T和E2在体外调节端粒酶的表达和活性。

目的

本研究旨在确定循环中的T或其代谢产物DHT或E2,以及SRD5A2或CYP19A1中的单核苷酸多态性是否与男性白细胞端粒长度(LTL)相关。

参与者与方法

在参与研究的西澳大利亚巴瑟尔顿健康调查的980名男性中,采用质谱法检测清晨血清中的T、DHT和E2,并通过聚合酶链反应分析SRD5A2和CYP19A1的单核苷酸多态性以及LTL。LTL以T/S比值表示。

结果

男性年龄(均值±标准差)为53.7±15.6岁。LTL随年龄呈线性下降,从30岁以下的T/S比值1.89±0.41降至70至80岁以下的1.50±0.49(r=-0.225,P<.0001)。在调整年龄后,DHT和E2与LTL呈正相关(DHT,r=0.069,P=.030;E2,r=0.068,P=.034)。SRD5A2 rs9282858多态性与血清DHT相关,但与LTL无关。CYP19A1的三个显性等位基因均与较低的血清E2和较短的LTL相关:rs2899470 T(E2,59.3对68.6 pmol/L,P<.0001;T/S比值,1.54对1.62,P=.045),rs10046 C(60.5对68.1 pmol/L,P=.0005,1.54对1.62,P=.035),以及rs700518 A(59.9对68.9 pmol/L,P<.0001,1.54对1.63,P=.020)。单拷贝单倍型C/T/I/A/T rs10046/rs2899470/rs11575899/rs700518/rs17703883(患病率52%)与较低的E2和较短的LTL均相关。

结论

在男性中,血清DHT和E2与LTL相关,且独立于年龄。芳香化酶基因多态性包括三个显性等位基因,它们与较低的血清E2和较短的LTL均相关。E2在体内影响端粒长度,因此有必要进一步研究以探讨激素干预是否可能减缓男性的生物衰老。

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