Chauvet Cristina, Ménard Annie, Tremblay Johanne, Xiao Chunjie, Shi Yanfen, L'Heureux Nathalie, Cardin Sophie, Tardif Jean-Claude, Nattel Stanley, Deng Alan Y
Research Centre, Centre hospitalier de l'Université de Montréal, Université de Montréal, Montréal, Québec, Canada.
Hypertens Res. 2009 Jul;32(7):631-7. doi: 10.1038/hr.2009.70. Epub 2009 May 22.
Animal models emulating essential hypertension are an informative means by which to elucidate the physiological mechanisms and gene-gene interactions underlying blood pressure (BP) regulation. We have localized earlier quantitative trait loci (QTLs) for BP on Chromosome (Chr) 2 of Dahl salt-sensitive (DSS) rats, but their chromosome delineations were too large for gene identification. To advance toward positional cloning of these QTLs, we constructed congenic strains that systematically dissect a Chr 2 segment with no overlaps. BP and cardiac functions were measured by telemetry and echocardiography. Six QTLs were delimited, each independently influencing BP. The intervals lodging two of them harbor 10-15 genes and undefined loci. These six QTLs can be grouped into two epistatic modules distinguishable by cardiac pathways/cascades. None of the genes known to exert physiological effects on BP in the segments harboring the six QTLs are leading candidates, as their protein products are the same in DSS rats and similar to those in their Milan normotensive counterparts. Specifically, the lack of an amino-acid alteration, coupled with a lack of difference in the alpha1-Na-K-ATPase activity, excluded ATPase, Na+/K+-transporting, alpha-1 polypeptide as a candidate gene for C2QTL6. The identification of the six QTLs will likely develop into a novel diagnostic and/or therapeutic target for essential hypertension and hypertension-associated diseases.
模拟原发性高血压的动物模型是一种有助于阐明血压(BP)调节潜在生理机制和基因-基因相互作用的信息手段。我们之前已将Dahl盐敏感(DSS)大鼠2号染色体(Chr)上的血压数量性状基因座(QTL)定位,但它们的染色体定位范围太大,无法进行基因鉴定。为了推进这些QTL的定位克隆,我们构建了同源近交系,系统地剖析了2号染色体上无重叠的片段。通过遥测和超声心动图测量血压和心脏功能。确定了6个QTL,每个QTL独立影响血压。其中两个QTL所在区间包含10 - 15个基因和未定义的基因座。这6个QTL可分为两个上位性模块,可通过心脏途径/级联反应区分。在包含这6个QTL的片段中,已知对血压有生理影响的基因都不是主要候选基因,因为它们的蛋白质产物在DSS大鼠中与米兰正常血压大鼠相似。具体而言,缺乏氨基酸改变以及α1 - Na - K - ATP酶活性无差异,排除了ATP酶、钠/钾转运、α - 1多肽作为C2QTL6的候选基因。这6个QTL的鉴定可能会成为原发性高血压及高血压相关疾病新的诊断和/或治疗靶点。