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结合小鼠和人类遗传学方法鉴定UBP1基因座为关键血压决定因素。

Identification of the UBP1 locus as a critical blood pressure determinant using a combination of mouse and human genetics.

作者信息

Koutnikova Hana, Laakso Markku, Lu Lu, Combe Roy, Paananen Jussi, Kuulasmaa Teemu, Kuusisto Johanna, Häring Hans-Ulrich, Hansen Torben, Pedersen Oluf, Smith Ulf, Hanefeld Markolf, Williams Robert W, Auwerx Johan

机构信息

Institut Clinique de la Souris, Illkirch, France.

出版信息

PLoS Genet. 2009 Aug;5(8):e1000591. doi: 10.1371/journal.pgen.1000591. Epub 2009 Aug 7.

Abstract

Hypertension is a major health problem of largely unknown genetic origins. To identify new genes responsible for hypertension, genetic analysis of recombinant inbred strains of mice followed by human association studies might prove powerful and was exploited in our current study. Using a set of 27 recombinant BXD strains of mice we identified a quantitative trait locus (QTL) for blood pressure (BP) on distal chromosome 9. The association analysis of markers encompassing the syntenic region on human chromosome 3 gave in an additive genetic model the strongest association for rs17030583 C/T and rs2291897 G/A, located within the UBP1 locus, with systolic and diastolic BP (rs17030583: 1.3+/-0.4 mmHg p<0.001, 0.8+/-0.3 mmHg p = 0.006, respectively and rs2291897: 1.5+/-0.4 mmHg p<0.001, 0.8+/-0.3 mmHg p = 0.003, respectively) in three separate studies. Our study, which underscores the marked complementarities of mouse and human genetic approaches, identifies the UBP1 locus as a critical blood pressure determinant. UBP1 plays a role in cholesterol and steroid metabolism via the transcriptional activation of CYP11A, the rate-limiting enzyme in pregnenolone and aldosterone biosynthesis. We suggest that UBP1 and its functional partners are components of a network controlling blood pressure.

摘要

高血压是一个主要的健康问题,其遗传起源大多未知。为了鉴定导致高血压的新基因,对小鼠重组近交系进行遗传分析,随后开展人类关联研究可能会被证明是有效的,并且在我们当前的研究中得到了应用。利用一组27个小鼠重组BXD品系,我们在9号染色体远端鉴定出一个血压(BP)数量性状基因座(QTL)。对人类3号染色体上同区域内标记的关联分析表明,在加性遗传模型中,位于UBP1基因座内的rs17030583 C/T和rs2291897 G/A与收缩压和舒张压关联最强(rs17030583:分别为1.3±0.4 mmHg,p<0.001;0.8±0.3 mmHg,p = 0.006;rs2291897:分别为1.5±0.4 mmHg,p<0.001;0.8±0.3 mmHg,p = 0.003),这是在三项独立研究中得出的结果。我们的研究强调了小鼠和人类遗传方法的显著互补性,鉴定出UBP1基因座是一个关键的血压决定因素。UBP1通过转录激活CYP11A发挥作用,CYP11A是孕烯醇酮和醛固酮生物合成中的限速酶,在胆固醇和类固醇代谢中起作用。我们认为UBP1及其功能伙伴是控制血压网络的组成部分。

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