Barr Marianne, MacKenzie Scott M, Friel Elaine C, Holloway Christine D, Wilkinson Donna M, Brain Nick J R, Ingram Mary C, Fraser Robert, Brown Morris, Samani Nilesh J, Caulfield Mark, Munroe Patricia B, Farrall Martin, Webster John, Clayton David, Dominiczak Anna F, Connell John M C, Davies Eleanor
British Heart Foundation Glasgow Cardiovascular Research Centre, University of Glasgow, UK.
Hypertension. 2007 Jan;49(1):113-9. doi: 10.1161/01.HYP.0000249904.93940.7a. Epub 2006 Oct 30.
The -344 C/T and intron 2 conversion variants in the CYP11B2 gene, encoding aldosterone synthase, have been associated with markers of impaired 11beta-hydroxylase activity. We hypothesize that this association is because of variations in the adjacent 11beta-hydroxylase gene (CYP11B1) and arises through linkage disequilibrium between CYP11B1 and CYP11B2. The pattern of variation across the entire CYP11B locus was determined by sequencing 26 normotensive subjects stratified by and homozygous for the -344 and intron conversion variants. Eighty-three variants associated with -344 and intron conversion were identified. Haplotype analysis revealed 4 common haplotypes, accounting for 68% of chromosomes, confirming strong linkage disequilibrium across the region. Two novel CYP11B1 polymorphisms upstream of the coding region (-1889 G/T and -1859 A/G) were identified as contributing to the common haplotypes. Given the potential for such mutations to affect transcriptional regulation of CYP11B1, these were analyzed further. A total of 512 hypertensive subjects from the British Genetics of Hypertension Study population were genotyped for these polymorphisms. A significant association was identified between the -1889 polymorphism and urinary tetrahydrodeoxycortisol/total cortisol metabolite ratio, indicating reduced 11beta-hydroxylase efficiency. A similar pattern was observed for the -1859 polymorphism, but this did not achieve statistical significance. Functional studies in vitro using luciferase reporter gene constructs show that these polymorphisms significantly alter the transcriptional response of CYP11B1 to stimulation by adrenocorticotropic hormone or forskolin. This study strongly suggests that the impaired 11beta-hydroxylase efficiency associated previously with the CYP11B2 -344 and intron conversion variants is because of linkage with these newly identified polymorphisms in CYP11B1.
编码醛固酮合成酶的CYP11B2基因中的-344 C/T和内含子2转换变异,已与11β-羟化酶活性受损的标志物相关联。我们推测这种关联是由于相邻的11β-羟化酶基因(CYP11B1)的变异,并通过CYP11B1与CYP11B2之间的连锁不平衡产生。通过对26名血压正常的受试者进行测序,这些受试者根据-344和内含子转换变异进行分层且为纯合子,从而确定了整个CYP11B基因座的变异模式。鉴定出83个与-344和内含子转换相关的变异。单倍型分析揭示了4种常见单倍型,占染色体的68%,证实了该区域存在强连锁不平衡。编码区上游的两个新的CYP11B1多态性(-1889 G/T和-1859 A/G)被确定为对常见单倍型有贡献。鉴于此类突变可能影响CYP11B1的转录调控,对其进行了进一步分析。对来自英国高血压遗传学研究人群的512名高血压受试者进行了这些多态性的基因分型。在-1889多态性与尿四氢脱氧皮质醇/总皮质醇代谢物比率之间发现了显著关联,表明11β-羟化酶效率降低。-1859多态性也观察到类似模式,但未达到统计学显著性。使用荧光素酶报告基因构建体进行的体外功能研究表明,这些多态性显著改变了CYP11B1对促肾上腺皮质激素或福斯高林刺激的转录反应。这项研究强烈表明,先前与CYP11B2 -344和内含子转换变异相关的11β-羟化酶效率受损是由于与CYP11B1中这些新鉴定的多态性连锁。